feat: updating data and code
This commit is contained in:
parent
6f4c89a756
commit
911c61c00a
30
.idea/inspectionProfiles/Project_Default.xml
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30
.idea/inspectionProfiles/Project_Default.xml
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@ -0,0 +1,30 @@
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<component name="InspectionProjectProfileManager">
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<profile version="1.0">
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||||||
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<option name="myName" value="Project Default" />
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||||||
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<inspection_tool class="PyCompatibilityInspection" enabled="true" level="WARNING" enabled_by_default="true">
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||||||
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<option name="ourVersions">
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||||||
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<value>
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||||||
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<list size="2">
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<item index="0" class="java.lang.String" itemvalue="3.10" />
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<item index="1" class="java.lang.String" itemvalue="3.9" />
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</list>
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</value>
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</option>
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||||||
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</inspection_tool>
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||||||
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<inspection_tool class="PyPep8Inspection" enabled="true" level="WEAK WARNING" enabled_by_default="true">
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||||||
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<option name="ignoredErrors">
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||||||
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<list>
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||||||
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<option value="E111" />
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</list>
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</option>
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</inspection_tool>
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||||||
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<inspection_tool class="PyUnresolvedReferencesInspection" enabled="true" level="WARNING" enabled_by_default="true">
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<option name="ignoredIdentifiers">
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<list>
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<option value="list.__getitem__" />
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<option value="hub.catalog_factories.data_models.cost.capital_cost.CapitalCost.__getitem__" />
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</list>
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</option>
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</inspection_tool>
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</profile>
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</component>
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6
.idea/inspectionProfiles/profiles_settings.xml
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6
.idea/inspectionProfiles/profiles_settings.xml
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@ -0,0 +1,6 @@
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<component name="InspectionProjectProfileManager">
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<settings>
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<option name="USE_PROJECT_PROFILE" value="false" />
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<version value="1.0" />
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</settings>
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</component>
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4
.idea/misc.xml
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4
.idea/misc.xml
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@ -0,0 +1,4 @@
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="ProjectRootManager" version="2" project-jdk-name="Python 3.10" project-jdk-type="Python SDK" />
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</project>
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6
.idea/vcs.xml
Normal file
6
.idea/vcs.xml
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@ -0,0 +1,6 @@
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="VcsDirectoryMappings">
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<mapping directory="" vcs="Git" />
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</component>
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</project>
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217
.idea/workspace.xml
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217
.idea/workspace.xml
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@ -0,0 +1,217 @@
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="AutoImportSettings">
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<option name="autoReloadType" value="SELECTIVE" />
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</component>
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||||||
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<component name="ChangeListManager">
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||||||
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<list default="true" id="cbcaba17-0c3f-4a51-922a-b8f43230a2de" name="Changes" comment="">
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<change beforePath="$PROJECT_DIR$/06-25_07-07.csv" beforeDir="false" afterPath="$PROJECT_DIR$/06-25_07-07.csv" afterDir="false" />
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<change beforePath="$PROJECT_DIR$/daily_plots.py" beforeDir="false" afterPath="$PROJECT_DIR$/daily_plots.py" afterDir="false" />
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<change beforePath="$PROJECT_DIR$/double_y.py" beforeDir="false" afterPath="$PROJECT_DIR$/double_y.py" afterDir="false" />
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<change beforePath="$PROJECT_DIR$/double_y_daily.py" beforeDir="false" afterPath="$PROJECT_DIR$/double_y_daily.py" afterDir="false" />
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<change beforePath="$PROJECT_DIR$/main.py" beforeDir="false" afterPath="$PROJECT_DIR$/main.py" afterDir="false" />
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<change beforePath="$PROJECT_DIR$/q_calculation.py" beforeDir="false" afterPath="$PROJECT_DIR$/q_calculation.py" afterDir="false" />
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</list>
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<option name="SHOW_DIALOG" value="false" />
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<option name="HIGHLIGHT_CONFLICTS" value="true" />
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<option name="HIGHLIGHT_NON_ACTIVE_CHANGELIST" value="false" />
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<option name="LAST_RESOLUTION" value="IGNORE" />
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</component>
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<component name="FileTemplateManagerImpl">
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<option name="RECENT_TEMPLATES">
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<list>
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<option value="Python Script" />
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</list>
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</option>
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</component>
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<component name="Git.Settings">
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<option name="RECENT_GIT_ROOT_PATH" value="$PROJECT_DIR$" />
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</component>
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<component name="ProjectColorInfo">{
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"associatedIndex": 6
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}</component>
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<component name="ProjectId" id="2ivCK1nyVSOdtcPAWVfcjcoZlp8" />
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<component name="ProjectViewState">
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<option name="hideEmptyMiddlePackages" value="true" />
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<option name="showLibraryContents" value="true" />
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</component>
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<component name="PropertiesComponent">{
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"keyToString": {
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"RunOnceActivity.OpenProjectViewOnStart": "true",
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"RunOnceActivity.ShowReadmeOnStart": "true",
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"WebServerToolWindowFactoryState": "false",
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"last_opened_file_path": "C:/Users/umroot/PycharmProjects/coniston",
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"node.js.detected.package.eslint": "true",
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"node.js.detected.package.tslint": "true",
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"node.js.selected.package.eslint": "(autodetect)",
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"node.js.selected.package.tslint": "(autodetect)",
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"settings.editor.selected.configurable": "com.jetbrains.python.configuration.PyActiveSdkModuleConfigurable",
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"vue.rearranger.settings.migration": "true"
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}
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}</component>
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<component name="RecentsManager">
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<key name="CopyFile.RECENT_KEYS">
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<recent name="C:\Users\umroot\PycharmProjects\coniston" />
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</key>
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<key name="MoveFile.RECENT_KEYS">
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<recent name="C:\Users\umroot\PycharmProjects\coniston\Results\daily_without_q" />
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<recent name="C:\Users\umroot\PycharmProjects\coniston\Results\daily_with_q" />
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<recent name="C:\Users\umroot\PycharmProjects\coniston\Results" />
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</key>
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</component>
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<component name="RunManager" selected="Python.q_calculation">
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<configuration name="daily_plots" type="PythonConfigurationType" factoryName="Python" temporary="true" nameIsGenerated="true">
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<module name="coniston" />
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<option name="INTERPRETER_OPTIONS" value="" />
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<option name="PARENT_ENVS" value="true" />
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<envs>
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<env name="PYTHONUNBUFFERED" value="1" />
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</envs>
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<option name="SDK_HOME" value="" />
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<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
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<option name="IS_MODULE_SDK" value="true" />
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<option name="ADD_CONTENT_ROOTS" value="true" />
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<option name="ADD_SOURCE_ROOTS" value="true" />
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<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
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<option name="SCRIPT_NAME" value="$PROJECT_DIR$/daily_plots.py" />
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<option name="PARAMETERS" value="" />
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<option name="SHOW_COMMAND_LINE" value="false" />
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<option name="EMULATE_TERMINAL" value="false" />
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<option name="MODULE_MODE" value="false" />
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<option name="REDIRECT_INPUT" value="false" />
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<option name="INPUT_FILE" value="" />
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<method v="2" />
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</configuration>
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<configuration name="double_y" type="PythonConfigurationType" factoryName="Python" temporary="true" nameIsGenerated="true">
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<module name="coniston" />
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<option name="INTERPRETER_OPTIONS" value="" />
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<option name="PARENT_ENVS" value="true" />
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<envs>
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<env name="PYTHONUNBUFFERED" value="1" />
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</envs>
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<option name="SDK_HOME" value="" />
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<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
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<option name="IS_MODULE_SDK" value="true" />
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<option name="ADD_CONTENT_ROOTS" value="true" />
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<option name="ADD_SOURCE_ROOTS" value="true" />
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<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
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<option name="SCRIPT_NAME" value="$PROJECT_DIR$/double_y.py" />
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<option name="PARAMETERS" value="" />
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<option name="SHOW_COMMAND_LINE" value="false" />
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<option name="EMULATE_TERMINAL" value="false" />
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<option name="MODULE_MODE" value="false" />
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<option name="REDIRECT_INPUT" value="false" />
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<option name="INPUT_FILE" value="" />
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<method v="2" />
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</configuration>
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<configuration name="double_y_daily" type="PythonConfigurationType" factoryName="Python" temporary="true" nameIsGenerated="true">
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<module name="coniston" />
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<option name="INTERPRETER_OPTIONS" value="" />
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<option name="PARENT_ENVS" value="true" />
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<envs>
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<env name="PYTHONUNBUFFERED" value="1" />
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</envs>
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<option name="SDK_HOME" value="" />
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<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
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<option name="IS_MODULE_SDK" value="true" />
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<option name="ADD_CONTENT_ROOTS" value="true" />
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<option name="ADD_SOURCE_ROOTS" value="true" />
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<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
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<option name="SCRIPT_NAME" value="$PROJECT_DIR$/double_y_daily.py" />
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<option name="PARAMETERS" value="" />
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<option name="SHOW_COMMAND_LINE" value="false" />
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<option name="EMULATE_TERMINAL" value="false" />
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<option name="MODULE_MODE" value="false" />
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<option name="REDIRECT_INPUT" value="false" />
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<option name="INPUT_FILE" value="" />
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<method v="2" />
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</configuration>
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<configuration name="main" type="PythonConfigurationType" factoryName="Python" temporary="true" nameIsGenerated="true">
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<module name="coniston" />
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<option name="INTERPRETER_OPTIONS" value="" />
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<option name="PARENT_ENVS" value="true" />
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<envs>
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<env name="PYTHONUNBUFFERED" value="1" />
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</envs>
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<option name="SDK_HOME" value="" />
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<option name="SDK_NAME" value="Python 3.10" />
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<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
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<option name="IS_MODULE_SDK" value="false" />
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<option name="ADD_CONTENT_ROOTS" value="true" />
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<option name="ADD_SOURCE_ROOTS" value="true" />
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<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
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<option name="SCRIPT_NAME" value="$PROJECT_DIR$/main.py" />
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<option name="PARAMETERS" value="" />
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<option name="SHOW_COMMAND_LINE" value="false" />
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<option name="EMULATE_TERMINAL" value="false" />
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<option name="MODULE_MODE" value="false" />
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<option name="REDIRECT_INPUT" value="false" />
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<option name="INPUT_FILE" value="" />
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<method v="2" />
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</configuration>
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<configuration name="q_calculation" type="PythonConfigurationType" factoryName="Python" temporary="true" nameIsGenerated="true">
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<module name="coniston" />
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<option name="INTERPRETER_OPTIONS" value="" />
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<option name="PARENT_ENVS" value="true" />
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<envs>
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<env name="PYTHONUNBUFFERED" value="1" />
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</envs>
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<option name="SDK_HOME" value="" />
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<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
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<option name="IS_MODULE_SDK" value="true" />
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<option name="ADD_CONTENT_ROOTS" value="true" />
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<option name="ADD_SOURCE_ROOTS" value="true" />
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<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
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<option name="SCRIPT_NAME" value="$PROJECT_DIR$/q_calculation.py" />
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<option name="PARAMETERS" value="" />
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<option name="SHOW_COMMAND_LINE" value="false" />
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<option name="EMULATE_TERMINAL" value="false" />
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<option name="MODULE_MODE" value="false" />
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<option name="REDIRECT_INPUT" value="false" />
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<option name="INPUT_FILE" value="" />
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<method v="2" />
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</configuration>
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<list>
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<item itemvalue="Python.daily_plots" />
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<item itemvalue="Python.double_y" />
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<item itemvalue="Python.double_y_daily" />
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<item itemvalue="Python.main" />
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<item itemvalue="Python.q_calculation" />
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</list>
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<recent_temporary>
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<list>
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<item itemvalue="Python.q_calculation" />
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<item itemvalue="Python.double_y_daily" />
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<item itemvalue="Python.double_y" />
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<item itemvalue="Python.daily_plots" />
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<item itemvalue="Python.main" />
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</list>
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</recent_temporary>
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</component>
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<component name="SpellCheckerSettings" RuntimeDictionaries="0" Folders="0" CustomDictionaries="0" DefaultDictionary="application-level" UseSingleDictionary="true" transferred="true" />
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<component name="TaskManager">
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<task active="true" id="Default" summary="Default task">
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<changelist id="cbcaba17-0c3f-4a51-922a-b8f43230a2de" name="Changes" comment="" />
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<created>1720361595188</created>
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<option name="number" value="Default" />
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<option name="presentableId" value="Default" />
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<updated>1720361595188</updated>
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<workItem from="1720361596557" duration="3109000" />
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<workItem from="1720365722622" duration="6392000" />
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<workItem from="1720392697194" duration="308000" />
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<workItem from="1720393018556" duration="1214000" />
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<workItem from="1720445287607" duration="4414000" />
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</task>
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<servers />
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</component>
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<component name="TypeScriptGeneratedFilesManager">
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||||||
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<option name="version" value="3" />
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</component>
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<component name="com.intellij.coverage.CoverageDataManagerImpl">
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<SUITE FILE_PATH="coverage/coniston$q_calculation.coverage" NAME="q_calculation Coverage Results" MODIFIED="1720450086726" SOURCE_PROVIDER="com.intellij.coverage.DefaultCoverageFileProvider" RUNNER="coverage.py" COVERAGE_BY_TEST_ENABLED="true" COVERAGE_TRACING_ENABLED="false" WORKING_DIRECTORY="$PROJECT_DIR$" />
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<SUITE FILE_PATH="coverage/coniston$daily_plots.coverage" NAME="daily_plots Coverage Results" MODIFIED="1720448816558" SOURCE_PROVIDER="com.intellij.coverage.DefaultCoverageFileProvider" RUNNER="coverage.py" COVERAGE_BY_TEST_ENABLED="true" COVERAGE_TRACING_ENABLED="false" WORKING_DIRECTORY="$PROJECT_DIR$" />
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<SUITE FILE_PATH="coverage/coniston$main.coverage" NAME="main Coverage Results" MODIFIED="1720448683526" SOURCE_PROVIDER="com.intellij.coverage.DefaultCoverageFileProvider" RUNNER="coverage.py" COVERAGE_BY_TEST_ENABLED="true" COVERAGE_TRACING_ENABLED="false" WORKING_DIRECTORY="$PROJECT_DIR$" />
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<SUITE FILE_PATH="coverage/coniston$double_y.coverage" NAME="double_y Coverage Results" MODIFIED="1720449672911" SOURCE_PROVIDER="com.intellij.coverage.DefaultCoverageFileProvider" RUNNER="coverage.py" COVERAGE_BY_TEST_ENABLED="true" COVERAGE_TRACING_ENABLED="false" WORKING_DIRECTORY="$PROJECT_DIR$" />
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<SUITE FILE_PATH="coverage/coniston$double_y_daily.coverage" NAME="double_y_daily Coverage Results" MODIFIED="1720449760978" SOURCE_PROVIDER="com.intellij.coverage.DefaultCoverageFileProvider" RUNNER="coverage.py" COVERAGE_BY_TEST_ENABLED="true" COVERAGE_TRACING_ENABLED="false" WORKING_DIRECTORY="$PROJECT_DIR$" />
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</component>
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||||||
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</project>
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303
06-25_07-07.csv
303
06-25_07-07.csv
@ -3434,3 +3434,306 @@ Date/Time (UTC),Date/Time (--4:0:0),Sewer Water In,Sewer Water Out,Return Air,Su
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7/7/2024 11:42,7/7/2024 7:42,63.66987,63.713048,70.103429,70.103429
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7/7/2024 11:42,7/7/2024 7:42,63.66987,63.713048,70.103429,70.103429
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7/7/2024 11:47,7/7/2024 7:47,63.626692,64.015296,69.973894,70.31932
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7/7/2024 11:47,7/7/2024 7:47,63.626692,64.015296,69.973894,70.31932
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7/7/2024 11:52,7/7/2024 7:52,63.713048,64.360722,70.103429,69.973894
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7/7/2024 11:52,7/7/2024 7:52,63.713048,64.360722,70.103429,69.973894
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7/7/2024 11:54,7/7/2024 7:54,63.410801,64.490257,70.017072,69.930716
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7/7/2024 11:59,7/7/2024 7:59,63.540335,64.058474,70.146607,70.017072
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|
7/8/2024 12:59,7/8/2024 8:59,64.447079,64.706148,70.535211,70.362498
|
||||||
|
7/8/2024 13:04,7/8/2024 9:04,64.447079,64.749326,70.751102,70.751102
|
||||||
|
|
@ -29,13 +29,13 @@ for day in pd.Index(data.index.date).unique():
|
|||||||
fig = go.Figure()
|
fig = go.Figure()
|
||||||
|
|
||||||
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
||||||
line=dict(shape='spline', color='blue', width=4, dash='solid')))
|
line=dict(shape='spline', color='blue', width=2, dash='solid')))
|
||||||
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
||||||
line=dict(shape='spline', color='red', width=4, dash='solid')))
|
line=dict(shape='spline', color='red', width=2, dash='solid')))
|
||||||
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Return Air Smooth'], mode='lines', name='Return Air',
|
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Return Air Smooth'], mode='lines', name='Return Air',
|
||||||
line=dict(shape='spline', color='orange', width=4, dash='solid')))
|
line=dict(shape='spline', color='orange', width=2, dash='solid')))
|
||||||
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
fig.add_trace(go.Scatter(x=day_data.index, y=day_data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
||||||
line=dict(shape='spline', color='green', width=4, dash='solid')))
|
line=dict(shape='spline', color='green', width=2, dash='solid')))
|
||||||
|
|
||||||
fig.update_layout(
|
fig.update_layout(
|
||||||
title=dict(
|
title=dict(
|
||||||
@ -60,6 +60,6 @@ for day in pd.Index(data.index.date).unique():
|
|||||||
)
|
)
|
||||||
|
|
||||||
# Save the plot (requires kaleido package)
|
# Save the plot (requires kaleido package)
|
||||||
fig.write_image(f'plotly_plot_{day}.png')
|
fig.write_image(f'temperature_variations_without_Q_{day}.png')
|
||||||
|
|
||||||
|
|
||||||
|
54
double_y.py
54
double_y.py
@ -1,44 +1,64 @@
|
|||||||
import pandas as pd
|
import pandas as pd
|
||||||
import plotly.graph_objects as go
|
|
||||||
from plotly.subplots import make_subplots
|
|
||||||
|
|
||||||
# Load the data (assuming you've already loaded and processed it as shown)
|
# Load the data
|
||||||
data = pd.read_csv('06-25_07-07.csv')
|
data = pd.read_csv('06-25_07-07.csv')
|
||||||
|
|
||||||
# Calculation of Q (BTU / lb)
|
|
||||||
data['Q (BTU/lb)'] = data['Sewer Water Out'] - data['Sewer Water In']
|
|
||||||
|
|
||||||
# Convert 'Date/Time (--4:0:0)' column to datetime
|
# Convert 'Date/Time (--4:0:0)' column to datetime
|
||||||
data['Date/Time (--4:0:0)'] = pd.to_datetime(data['Date/Time (--4:0:0)'])
|
data['Date/Time (--4:0:0)'] = pd.to_datetime(data['Date/Time (--4:0:0)'])
|
||||||
|
|
||||||
|
# Calculate the time difference between consecutive points in minutes
|
||||||
|
data['Time Diff (min)'] = data['Date/Time (--4:0:0)'].diff().dt.total_seconds() / 60
|
||||||
|
|
||||||
|
# Set flow rate and specific heat capacity
|
||||||
|
flow_rate_gpm = 10
|
||||||
|
density_water = 62.4 # lbm/ft^3
|
||||||
|
flow_rate_lbm_min = flow_rate_gpm * 0.133681 * density_water # Convert GPM to lbm/min
|
||||||
|
|
||||||
|
# Calculate Q (BTU)
|
||||||
|
cp_water = 1 # BTU/lbm°F
|
||||||
|
data['Delta T (F)'] = data['Sewer Water Out'] - data['Sewer Water In']
|
||||||
|
data['Q (BTU)'] = flow_rate_lbm_min * cp_water * data['Delta T (F)'] * data['Time Diff (min)']
|
||||||
|
|
||||||
# Apply a smoothing function (moving average)
|
# Apply a smoothing function (moving average)
|
||||||
window_size = 10
|
window_size = 10
|
||||||
data['Sewer Water In Smooth'] = data['Sewer Water In'].rolling(window=window_size, center=True).mean()
|
data['Sewer Water In Smooth'] = data['Sewer Water In'].rolling(window=window_size, center=True).mean()
|
||||||
data['Sewer Water Out Smooth'] = data['Sewer Water Out'].rolling(window=window_size, center=True).mean()
|
data['Sewer Water Out Smooth'] = data['Sewer Water Out'].rolling(window=window_size, center=True).mean()
|
||||||
data['Return Air Smooth'] = data['Return Air'].rolling(window=window_size, center=True).mean()
|
data['Return Air Smooth'] = data['Return Air'].rolling(window=window_size, center=True).mean()
|
||||||
data['Supply Air Smooth'] = data['Supply Air'].rolling(window=window_size, center=True).mean()
|
data['Supply Air Smooth'] = data['Supply Air'].rolling(window=window_size, center=True).mean()
|
||||||
data['Q Smooth'] = data['Q (BTU/lb)'].rolling(window=window_size, center=True).mean()
|
data['Q Smooth'] = data['Q (BTU)'].rolling(window=window_size, center=True).mean()
|
||||||
|
|
||||||
|
# Plotting the data
|
||||||
|
import plotly.graph_objects as go
|
||||||
|
from plotly.subplots import make_subplots
|
||||||
|
|
||||||
fig = make_subplots(rows=1, cols=1, shared_xaxes=True, vertical_spacing=0.1,
|
fig = make_subplots(rows=1, cols=1, shared_xaxes=True, vertical_spacing=0.1,
|
||||||
subplot_titles=(f'Temperature Variations and Transferred Heat from 25/06/2024-07/07/2024',),
|
subplot_titles=('Temperature Variations and Transferred Heat from 25/06/2024-08/07/2024',),
|
||||||
specs=[[{"secondary_y": True}]])
|
specs=[[{"secondary_y": True}]])
|
||||||
|
|
||||||
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
||||||
line=dict(shape='spline', color='blue', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='blue', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
||||||
line=dict(shape='spline', color='red', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='red', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Return Air Smooth'], mode='lines', name='Return Air',
|
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Return Air Smooth'], mode='lines', name='Return Air',
|
||||||
line=dict(shape='spline', color='orange', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='orange', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
||||||
line=dict(shape='spline', color='green', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='green', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Q Smooth'], mode='lines', name='Transferred Heat (BTU/lb)',
|
fig.add_trace(go.Scatter(x=data['Date/Time (--4:0:0)'], y=data['Q Smooth'], mode='lines', name='Transferred Heat (BTU)',
|
||||||
line=dict(shape='spline', color='purple', width=4, dash='solid')), secondary_y=True)
|
line=dict(shape='spline', color='purple', width=2, dash='solid')), secondary_y=True)
|
||||||
# Update layout
|
|
||||||
|
# Update layout with secondary y-axis title
|
||||||
fig.update_layout(
|
fig.update_layout(
|
||||||
xaxis_title='Date/Time',
|
xaxis_title='Date/Time',
|
||||||
yaxis_title='Temperature (F)',
|
yaxis_title='Temperature (F)',
|
||||||
|
yaxis2_title='Transferred Heat (BTU)',
|
||||||
legend_title_text='Legend',
|
legend_title_text='Legend',
|
||||||
font=dict(size=14),
|
font=dict(size=14),
|
||||||
width=1400,
|
width=1400,
|
||||||
height=800
|
height=800
|
||||||
)
|
)
|
||||||
|
|
||||||
# Save the plot (requires kaleido package)
|
# Save the plot (requires kaleido package)
|
||||||
fig.write_image('plotly_plot_with_q.png')
|
fig.write_image('temperature_variations_with_q.png')
|
||||||
|
|
||||||
|
# Display the plot
|
||||||
|
fig.show()
|
@ -2,22 +2,32 @@ import pandas as pd
|
|||||||
import plotly.graph_objects as go
|
import plotly.graph_objects as go
|
||||||
from plotly.subplots import make_subplots
|
from plotly.subplots import make_subplots
|
||||||
|
|
||||||
# Load the data (assuming you've already loaded and processed it as shown)
|
# Load the data
|
||||||
data = pd.read_csv('06-25_07-07.csv')
|
data = pd.read_csv('06-25_07-07.csv')
|
||||||
|
|
||||||
# Calculation of Q (BTU / lb)
|
|
||||||
data['Q (BTU/lb)'] = data['Sewer Water Out'] - data['Sewer Water In']
|
|
||||||
|
|
||||||
# Convert 'Date/Time (--4:0:0)' column to datetime
|
# Convert 'Date/Time (--4:0:0)' column to datetime
|
||||||
data['Date/Time (--4:0:0)'] = pd.to_datetime(data['Date/Time (--4:0:0)'])
|
data['Date/Time (--4:0:0)'] = pd.to_datetime(data['Date/Time (--4:0:0)'])
|
||||||
|
|
||||||
|
# Calculate the time difference between consecutive points in minutes
|
||||||
|
data['Time Diff (min)'] = data['Date/Time (--4:0:0)'].diff().dt.total_seconds() / 60
|
||||||
|
|
||||||
|
# Set flow rate and specific heat capacity
|
||||||
|
flow_rate_gpm = 10
|
||||||
|
density_water = 62.4 # lbm/ft^3
|
||||||
|
flow_rate_lbm_min = flow_rate_gpm * 0.133681 * density_water # Convert GPM to lbm/min
|
||||||
|
|
||||||
|
# Calculate Q (BTU)
|
||||||
|
cp_water = 1 # BTU/lbm°F
|
||||||
|
data['Delta T (F)'] = data['Sewer Water Out'] - data['Sewer Water In']
|
||||||
|
data['Q (BTU)'] = flow_rate_lbm_min * cp_water * data['Delta T (F)'] * data['Time Diff (min)']
|
||||||
|
|
||||||
# Apply a smoothing function (moving average)
|
# Apply a smoothing function (moving average)
|
||||||
window_size = 10
|
window_size = 10
|
||||||
data['Sewer Water In Smooth'] = data['Sewer Water In'].rolling(window=window_size, center=True).mean()
|
data['Sewer Water In Smooth'] = data['Sewer Water In'].rolling(window=window_size, center=True).mean()
|
||||||
data['Sewer Water Out Smooth'] = data['Sewer Water Out'].rolling(window=window_size, center=True).mean()
|
data['Sewer Water Out Smooth'] = data['Sewer Water Out'].rolling(window=window_size, center=True).mean()
|
||||||
data['Return Air Smooth'] = data['Return Air'].rolling(window=window_size, center=True).mean()
|
data['Return Air Smooth'] = data['Return Air'].rolling(window=window_size, center=True).mean()
|
||||||
data['Supply Air Smooth'] = data['Supply Air'].rolling(window=window_size, center=True).mean()
|
data['Supply Air Smooth'] = data['Supply Air'].rolling(window=window_size, center=True).mean()
|
||||||
data['Q Smooth'] = data['Q (BTU/lb)'].rolling(window=window_size, center=True).mean()
|
data['Q Smooth'] = data['Q (BTU)'].rolling(window=window_size, center=True).mean()
|
||||||
|
|
||||||
# Iterate through each calendar day and create separate plots
|
# Iterate through each calendar day and create separate plots
|
||||||
for day in pd.Index(data['Date/Time (--4:0:0)'].dt.date).unique():
|
for day in pd.Index(data['Date/Time (--4:0:0)'].dt.date).unique():
|
||||||
@ -31,20 +41,21 @@ for day in pd.Index(data['Date/Time (--4:0:0)'].dt.date).unique():
|
|||||||
|
|
||||||
# Add traces for each line with spline smoothing and increased visibility
|
# Add traces for each line with spline smoothing and increased visibility
|
||||||
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
||||||
line=dict(shape='spline', color='blue', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='blue', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
||||||
line=dict(shape='spline', color='red', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='red', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Return Air Smooth'], mode='lines', name='Return Air',
|
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Return Air Smooth'], mode='lines', name='Return Air',
|
||||||
line=dict(shape='spline', color='orange', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='orange', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
||||||
line=dict(shape='spline', color='green', width=4, dash='solid')), secondary_y=False)
|
line=dict(shape='spline', color='green', width=2, dash='solid')), secondary_y=False)
|
||||||
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Q Smooth'], mode='lines', name='Transferred Heat (BTU/lb)',
|
fig.add_trace(go.Scatter(x=day_data['Date/Time (--4:0:0)'], y=day_data['Q Smooth'], mode='lines', name='Transferred Heat (BTU/lb)',
|
||||||
line=dict(shape='spline', color='purple', width=4, dash='solid')), secondary_y=True)
|
line=dict(shape='spline', color='purple', width=2, dash='solid')), secondary_y=True)
|
||||||
|
|
||||||
# Update layout
|
# Update layout
|
||||||
fig.update_layout(
|
fig.update_layout(
|
||||||
xaxis_title='Date/Time',
|
xaxis_title='Date/Time',
|
||||||
yaxis_title='Temperature (F)',
|
yaxis_title='Temperature (F)',
|
||||||
|
yaxis2_title='Transferred Heat (BTU/lb)',
|
||||||
legend_title_text='Legend',
|
legend_title_text='Legend',
|
||||||
font=dict(size=14),
|
font=dict(size=14),
|
||||||
width=1400,
|
width=1400,
|
||||||
@ -52,4 +63,4 @@ for day in pd.Index(data['Date/Time (--4:0:0)'].dt.date).unique():
|
|||||||
)
|
)
|
||||||
|
|
||||||
# Save the plot (requires kaleido package)
|
# Save the plot (requires kaleido package)
|
||||||
fig.write_image(f'plotly_plot_{day}.png')
|
fig.write_image(f'temperature_variations_with_q_{day}.png')
|
12
main.py
12
main.py
@ -21,13 +21,13 @@ fig = go.Figure()
|
|||||||
|
|
||||||
# Add traces for each line with spline smoothing and increased visibility
|
# Add traces for each line with spline smoothing and increased visibility
|
||||||
fig.add_trace(go.Scatter(x=data.index, y=data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
fig.add_trace(go.Scatter(x=data.index, y=data['Sewer Water In Smooth'], mode='lines', name='Sewer Water In',
|
||||||
line=dict(shape='spline', color='blue', width=4, dash='solid')))
|
line=dict(shape='spline', color='blue', width=2, dash='solid')))
|
||||||
fig.add_trace(go.Scatter(x=data.index, y=data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
fig.add_trace(go.Scatter(x=data.index, y=data['Sewer Water Out Smooth'], mode='lines', name='Sewer Water Out',
|
||||||
line=dict(shape='spline', color='red', width=4, dash='solid')))
|
line=dict(shape='spline', color='red', width=2, dash='solid')))
|
||||||
fig.add_trace(go.Scatter(x=data.index, y=data['Return Air Smooth'], mode='lines', name='Return Air',
|
fig.add_trace(go.Scatter(x=data.index, y=data['Return Air Smooth'], mode='lines', name='Return Air',
|
||||||
line=dict(shape='spline', color='orange', width=4, dash='solid')))
|
line=dict(shape='spline', color='orange', width=2, dash='solid')))
|
||||||
fig.add_trace(go.Scatter(x=data.index, y=data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
fig.add_trace(go.Scatter(x=data.index, y=data['Supply Air Smooth'], mode='lines', name='Supply Air',
|
||||||
line=dict(shape='spline', color='green', width=4, dash='solid')))
|
line=dict(shape='spline', color='green', width=2, dash='solid')))
|
||||||
|
|
||||||
# Add shading to separate days
|
# Add shading to separate days
|
||||||
for i in range((data.index[-1] - data.index[0]).days + 1):
|
for i in range((data.index[-1] - data.index[0]).days + 1):
|
||||||
@ -43,7 +43,7 @@ for i in range((data.index[-1] - data.index[0]).days + 1):
|
|||||||
# Update layout for better styling and to set figure size
|
# Update layout for better styling and to set figure size
|
||||||
fig.update_layout(
|
fig.update_layout(
|
||||||
title=dict(
|
title=dict(
|
||||||
text='Temperature Variations from 25/06/2024-07/07/2024',
|
text='Temperature Variations from 25/06/2024-08/07/2024',
|
||||||
font=dict(size=20, family='Arial', color='black', weight='bold')
|
font=dict(size=20, family='Arial', color='black', weight='bold')
|
||||||
),
|
),
|
||||||
xaxis_title=dict(
|
xaxis_title=dict(
|
||||||
@ -64,7 +64,7 @@ fig.update_layout(
|
|||||||
)
|
)
|
||||||
|
|
||||||
# Save the plot (requires kaleido package)
|
# Save the plot (requires kaleido package)
|
||||||
fig.write_image('plotly_plot.png')
|
fig.write_image('temperatures without Q.png')
|
||||||
|
|
||||||
# Display the plot
|
# Display the plot
|
||||||
fig.show()
|
fig.show()
|
||||||
|
@ -1,29 +1,38 @@
|
|||||||
import pandas as pd
|
import pandas as pd
|
||||||
import plotly.graph_objects as go
|
import plotly.graph_objects as go
|
||||||
|
|
||||||
# Load the data (assuming you've already loaded and processed it as shown)
|
# Load the data
|
||||||
data = pd.read_csv('06-25_07-07.csv')
|
data = pd.read_csv('06-25_07-07.csv')
|
||||||
# Calculation of Q (BTU / lb)
|
|
||||||
t_sewer_in = data['Sewer Water In'].to_list()
|
|
||||||
t_sewer_out = data['Sewer Water Out'].to_list() # corrected column name
|
|
||||||
q = [t_sewer_out[i] - t_sewer_in[i] for i in range(len(t_sewer_out))]
|
|
||||||
data['Q (BTU/lb)'] = q
|
|
||||||
# Convert 'Date/Time (--4:0:0)' column to datetime
|
# Convert 'Date/Time (--4:0:0)' column to datetime
|
||||||
data['Date/Time (--4:0:0)'] = pd.to_datetime(data['Date/Time (--4:0:0)'])
|
data['Date/Time (--4:0:0)'] = pd.to_datetime(data['Date/Time (--4:0:0)'])
|
||||||
|
|
||||||
|
# Calculate the time difference between consecutive points in minutes
|
||||||
|
data['Time Diff (min)'] = data['Date/Time (--4:0:0)'].diff().dt.total_seconds() / 60
|
||||||
|
|
||||||
|
# Set flow rate and specific heat capacity
|
||||||
|
flow_rate_gpm = 10
|
||||||
|
density_water = 62.4 # lbm/ft^3
|
||||||
|
flow_rate_lbm_min = flow_rate_gpm * 0.133681 * density_water # Convert GPM to lbm/min
|
||||||
|
|
||||||
|
# Calculate Q (BTU)
|
||||||
|
cp_water = 1 # BTU/lbm°F
|
||||||
|
data['Delta T (F)'] = data['Sewer Water Out'] - data['Sewer Water In']
|
||||||
|
data['Q (BTU)'] = flow_rate_lbm_min * cp_water * data['Delta T (F)'] * data['Time Diff (min)']
|
||||||
|
|
||||||
# Set the datetime column as the index
|
# Set the datetime column as the index
|
||||||
data.set_index('Date/Time (--4:0:0)', inplace=True)
|
data.set_index('Date/Time (--4:0:0)', inplace=True)
|
||||||
|
|
||||||
# Apply a smoothing function (moving average)
|
# Apply a smoothing function (moving average)
|
||||||
window_size = 10
|
window_size = 10
|
||||||
data['Q Smooth'] = data['Q (BTU/lb)'].rolling(window=window_size, center=True).mean()
|
data['Q Smooth'] = data['Q (BTU)'].rolling(window=window_size, center=True).mean()
|
||||||
# Ensure index is a datetime index for ease of filtering
|
# Ensure index is a datetime index for ease of filtering
|
||||||
data.index = pd.to_datetime(data.index)
|
data.index = pd.to_datetime(data.index)
|
||||||
# Create the plot
|
# Create the plot
|
||||||
fig = go.Figure()
|
fig = go.Figure()
|
||||||
# Add traces for each line with spline smoothing and increased visibility
|
# Add traces for each line with spline smoothing and increased visibility
|
||||||
fig.add_trace(go.Scatter(x=data.index, y=data['Q Smooth'], mode='lines', name='Transferred Heat (BTU/lb)',
|
fig.add_trace(go.Scatter(x=data.index, y=data['Q Smooth'], mode='lines', name='Transferred Heat (BTU/lb)',
|
||||||
line=dict(shape='spline', color='blue', width=4, dash='solid')))
|
line=dict(shape='spline', color='blue', width=2, dash='solid')))
|
||||||
|
|
||||||
# Add shading to separate days
|
# Add shading to separate days
|
||||||
for i in range((data.index[-1] - data.index[0]).days + 1):
|
for i in range((data.index[-1] - data.index[0]).days + 1):
|
||||||
@ -47,7 +56,7 @@ fig.update_layout(
|
|||||||
font=dict(size=18, family='Arial', color='black', weight='bold')
|
font=dict(size=18, family='Arial', color='black', weight='bold')
|
||||||
),
|
),
|
||||||
yaxis_title=dict(
|
yaxis_title=dict(
|
||||||
text='Energy (BTU/lb)',
|
text='Energy (BTU)',
|
||||||
font=dict(size=18, family='Arial', color='black', weight='bold')
|
font=dict(size=18, family='Arial', color='black', weight='bold')
|
||||||
),
|
),
|
||||||
legend=dict(
|
legend=dict(
|
||||||
|
Loading…
Reference in New Issue
Block a user