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The hot side temperature (40 °C) was controlled by a resistive heater, and the cold side temperature (25 °C) was controlled by a recirculation water chiller.
On the other side, temperature showed an inverse relationship with the solubility of CO2.
Cold side temperature was controlled by a recirculation water chiller under T cold of 25 °C, and the hot side temperature was controlled by a resistive heater under T hot of 40 °C.
Crucial design parameters including thermoelectric leg length L, space ti, hot side temperature Th within 1073 1223 K and cold side temperature Tc within 573 773 K were evaluated for their impact on the unicouple performance.
The results showed that the thermal efficiency increased and then decreased with the hot side temperature increase.
The electrical power output obtained is close to 1 W with a cold side temperature below 40 °C.
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On the Atlantic side, temperatures in the warmest month average 77 °F (25 °C), but cold-month averages vary from 63 °F (17 °C) in the north (Asunción, Paraguay) to 50 °F (10 °C) in Buenos Aires.
Two different hot side temperatures, Thot=1173 K and Thot=1023 K, are tested.
Effects of airflow rates through the heating side and cooling side, temperatures of heating side and cooling side on the performance were investigated.
Post-test examination showed significant degradation of the N-type (MGS) legs at the higher hot side temperatures.
As a result, HD 209458b's dayside surface temperature never dips below 1000˚C, while its night side temperatures are hundreds of degrees cooler.
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