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sononicola committed Dec 22, 2020
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1,207 changes: 775 additions & 432 deletions ThermBuildings.ipynb

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422 changes: 422 additions & 0 deletions confronto.tex

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23 changes: 23 additions & 0 deletions tabella-dinamica-0a.tex
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\begin{table}
\centering
\caption{Parete solo mattone pieno}
\begin{tabular}{lrrrrrrr}
\toprule
Strati & Spessori & Densità & Calore specifico & Massa superficiale & Profondità di Penetrazione & xi & Capacità termica & Diffusività termica x 10-7 & Effusività termcia \\
\midrule
Mattone pieno & 1,0 & 1700,0 & 940,0 & 1700,0 & 0,116 & 8,631 & 1598,0 & 4,88 & 1116,4 \\
\bottomrule
\end{tabular}
\end{table}

\begin{flushleft}
\begin{align*}
\text{Massa superficiale totale} \, M_s &= \SI{1700.0}{\kilo\gram\per\metre\squared}\\
\text{Sfasamento} \, \Delta\tau &= \SI{8.43}{\hour}\\
\text{Fattore di attenuazione} \, fd &= \SI{0.002}{}\\
\text{Trasmittanza termica periodica} \, Y_{12} &= \SI{0.001}{\watt\per\metre\squared\per\kelvin}\\
\text{Ammettanza termica interna} \, Y_{11} &= \SI{4.601}{\watt\per\metre\squared\per\kelvin}\\
\text{Ammettanza termica esterna} \, Y_{22} &= \SI{7.338}{\watt\per\metre\squared\per\kelvin}\\
\text{Capacità termica periodica interna} \, k_1 &= \SI{63.28}{\kilo\joule\per\metre\squared\per\kelvin}\\
\end{align*}
\end{flushleft}
23 changes: 23 additions & 0 deletions tabella-dinamica-0b.tex
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\begin{table}
\centering
\caption{Parete solo isolante}
\begin{tabular}{lrrrrrrr}
\toprule
Strati & Spessori & Densità & Calore specifico & Massa superficiale & Profondità di Penetrazione & xi & Capacità termica & Diffusività termica x 10-7 & Effusività termcia \\
\midrule
Isolante VentirockDuo & 0,12 & 70,0 & 1030,0 & 8,4 & 0,116 & 1,039 & 8,7 & 4,85 & 50,2 \\
\bottomrule
\end{tabular}
\end{table}

\begin{flushleft}
\begin{align*}
\text{Massa superficiale totale} \, M_s &= \SI{8.4}{\kilo\gram\per\metre\squared}\\
\text{Sfasamento} \, \Delta\tau &= \SI{1.49}{\hour}\\
\text{Fattore di attenuazione} \, fd &= \SI{0.97}{}\\
\text{Trasmittanza termica periodica} \, Y_{12} &= \SI{0.27}{\watt\per\metre\squared\per\kelvin}\\
\text{Ammettanza termica interna} \, Y_{11} &= \SI{0.364}{\watt\per\metre\squared\per\kelvin}\\
\text{Ammettanza termica esterna} \, Y_{22} &= \SI{0.373}{\watt\per\metre\squared\per\kelvin}\\
\text{Capacità termica periodica interna} \, k_1 &= \SI{4.1}{\kilo\joule\per\metre\squared\per\kelvin}\\
\end{align*}
\end{flushleft}
26 changes: 26 additions & 0 deletions tabella-dinamica-1a.tex
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\begin{table}
\centering
\caption{Parete in laterizio con isolante interno}
\begin{tabular}{lrrrrrrr}
\toprule
Strati & Spessori & Densità & Calore specifico & Massa superficiale & Profondità di Penetrazione & xi & Capacità termica & Diffusività termica x 10-7 & Effusività termcia \\
\midrule
Intonaco & 0,015 & 1500,0 & 1000,0 & 22,5 & 0,105 & 0,143 & 22,5 & 4,00 & 948,7 \\
Isolante VentirockDuo & 0,120 & 70,0 & 1030,0 & 8,4 & 0,116 & 1,039 & 8,7 & 4,85 & 50,2 \\
Laterizio semipieno & 0,200 & 1000,0 & 840,0 & 200,0 & 0,132 & 1,518 & 168,0 & 6,31 & 667,2 \\
Intonaco & 0,015 & 1800,0 & 1000,0 & 27,0 & 0,117 & 0,128 & 27,0 & 5,00 & 1272,8 \\
\bottomrule
\end{tabular}
\end{table}

\begin{flushleft}
\begin{align*}
\text{Massa superficiale totale} \, M_s &= \SI{257.9}{\kilo\gram\per\metre\squared}\\
\text{Sfasamento} \, \Delta\tau &= \SI{9.09}{\hour}\\
\text{Fattore di attenuazione} \, fd &= \SI{0.352}{}\\
\text{Trasmittanza termica periodica} \, Y_{12} &= \SI{0.088}{\watt\per\metre\squared\per\kelvin}\\
\text{Ammettanza termica interna} \, Y_{11} &= \SI{1.744}{\watt\per\metre\squared\per\kelvin}\\
\text{Ammettanza termica esterna} \, Y_{22} &= \SI{5.991}{\watt\per\metre\squared\per\kelvin}\\
\text{Capacità termica periodica interna} \, k_1 &= \SI{25.09}{\kilo\joule\per\metre\squared\per\kelvin}\\
\end{align*}
\end{flushleft}
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