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IEA Solar Heating and Cooling Programm - NachhaltigWirtschaften.at

IEA Solar Heating and Cooling Programm - NachhaltigWirtschaften.at

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<strong>IEA</strong> SHC Task 38 <strong>Solar</strong> Air Conditioning <strong>and</strong> Refriger<strong>at</strong>ion Subtask C2-A, November 9, 2009<br />

Mc kJK -1 82.2 Cumul<strong>at</strong>ed he<strong>at</strong> capacity of gener<strong>at</strong>or , internal<br />

28 (<br />

p<br />

) G, int<br />

Mc kJK -1 81.9 Cumul<strong>at</strong>ed he<strong>at</strong> capacity of absorber , internal<br />

29 (<br />

p<br />

) A, int<br />

30 η<br />

SHX - 0.9 Efficiency of solution he<strong>at</strong> exchanger<br />

31 cp w<br />

32 cp v<br />

33 cp sol,s<br />

kJkg -1 K -<br />

1<br />

4.19 Specific he<strong>at</strong> capacity of liquid w<strong>at</strong>er<br />

kJkg -1 K -<br />

1<br />

1.86 Specific he<strong>at</strong> capacity of w<strong>at</strong>er vapour<br />

kJkg -1 K -<br />

1<br />

3.8 Specific he<strong>at</strong> capacity of strong solution<br />

34 ρ<br />

sol, s kgm³ -1 1600 Density of strong solution<br />

35 ∆t s 1 Time increment of simul<strong>at</strong>ion<br />

References<br />

[1] Kohlenbach P, Ziegler F. A dynamic simul<strong>at</strong>ion model for transient absorption chiller<br />

performance. Part I: The model. Int J Refriger<strong>at</strong>ion 2007,<br />

page 93

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