Initial Master Project Commit
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.gitignore
vendored
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.gitignore
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Thesis/
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Data/meteoswiss_current_data.zip
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Data/meteoswiss_current_data.zip
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Data/meteoswiss_stations_meta.zip
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Data/meteoswiss_stations_meta.zip
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Simulink/PolydomeCARNOT.prj
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Simulink/PolydomeCARNOT.prj
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<?xml version="1.0" encoding="UTF-8"?>
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<MATLABProject xmlns="http://www.mathworks.com/MATLABProjectFile" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" version="1.0"/>
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Simulink/main.m
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Simulink/main.m
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clear all
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close all
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clc
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%%%%%%%%%%%%%%%%%%%%%%%
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%% Set the model parameters
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% Large side windows
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window_size = [2.5 25];
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window_roof_size = [5 5];
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surface_part = 0.1;
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U = 1.8; % heat transfer coefficient [W/m2K]
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g = 0.7; % total solar energy transmittance
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v_g = 0.65; % transmittance in visible range of the sunlight
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% Roof
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wall_size = [25 25];
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roof_position = [0 0 0];
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% The roof is supposed to be made of [5cm wood, 10cm insulation, 5cm wood]
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node_thickness = [0.05 0.10 0.05]; % Data from 03.03 email with Manuel
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% Data from https://simulationresearch.lbl.gov/modelica/releases/latest/help
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% /Buildings_HeatTransfer_Data_Solids.html#Buildings.HeatTransfer.Data.Solids.Plywood
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node_conductivity = [0.12 0.03 0.12];
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node_capacity = [1210 1200 1210];
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node_density = [540 40 540];
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% Floor
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ceiling_size = [25 25];
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% The floor is supposed to be made of []
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layer_thickness = [0.05 0.10 0.20];
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layer_conductivity = [0.12 0.03 1.4];
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layer_capacity = [1210 1200 840];
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layer_density = [540 40 2240];
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%% Set the run parameters
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air_exchange_rate = 2.0;
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power = 0;
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Te = 60*60*24*365;
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sim("polydome_model_1")
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Simulink/polydome_model_1.slx
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Simulink/polydome_model_1.slx
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research-notes
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research-notes
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Info on windows (transmittance, U-factor, etc.)
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https://www.commercialwindows.org/vt.php
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