Q3: Consider evaluation of different temperatures of solar photovoltaic/thermal system (PVT) as shown in Figure 1(a). The following set of differential equations represent energy balance equations to be solve using matrices and eigenvalues dTglass = -0.75Tglass + 0.75TpyT (1) dt - 1.18Tglass – 22TpyT + 237wax (2) dt dTwax 12Tglass + 18TpyT – 19 Twax (3) dt Where, Totass , TpyT, and Twax, are temperatures illustrated in Figure 1(b). At time t-0 the initial conditions are Tglass = 35 , Tpyr = 33, and Twax = 31 °C. Cold suppty In frem water Tank Glass PVT Eapann Nane PCMPVI Callector Wax Tubes Storg Tank Nanofluid Heat Exchanger Tepe Contaleer Teeket Pump for drain

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Q3: Consider evaluation of different temperatures of solar photovoltaic/thermal system
(PVT) as shown in Figure 1(a). The following set of differential equations represent
energy balance equations to be solve using matrices and eigenvalues
dTglass
= -0.75Tglass + 0.75TPVT
(1)
dt
- 1.18Tglass – 22TpyT + 237wax
(2)
dt
dTwax
12Tglass + 18TpyT – 19 Twax
(3)
dt
Where, Tptass, TPVT, and Twax, are temperatures illustrated in Figure 1(b). At time t-0 the initial
conditions are Tglass = 35 , Tpyr = 33, and Twax = 31 °C.
Cold sappty
In frem water
Tank
Glass
PVT
Enpann
Nane-PCMPVT Collector
Wax
Tubes
Sterg Tank
Mat
Nanofluid
Heat Exchanger
Tepe
Contalner
Tuek et
Pump
for drain
Transcribed Image Text:Q3: Consider evaluation of different temperatures of solar photovoltaic/thermal system (PVT) as shown in Figure 1(a). The following set of differential equations represent energy balance equations to be solve using matrices and eigenvalues dTglass = -0.75Tglass + 0.75TPVT (1) dt - 1.18Tglass – 22TpyT + 237wax (2) dt dTwax 12Tglass + 18TpyT – 19 Twax (3) dt Where, Tptass, TPVT, and Twax, are temperatures illustrated in Figure 1(b). At time t-0 the initial conditions are Tglass = 35 , Tpyr = 33, and Twax = 31 °C. Cold sappty In frem water Tank Glass PVT Enpann Nane-PCMPVT Collector Wax Tubes Sterg Tank Mat Nanofluid Heat Exchanger Tepe Contalner Tuek et Pump for drain
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