Answer:
a) Ql=33120000 kJ
b) COP = 5.6
c) COPreversible= 29.3
Step-by-step explanation:
a) of the attached figure we have:
HP is heat pump, W is the work supplied, Th is the higher temperature, Tl is the low temperature, Ql is heat supplied and Qh is the heat rejected. The worj is:
W=Qh-Ql
Ql=Qh-W
where W=2000 kWh
Qh=120000 kJ/h
![Q_(l)=14days((24 h)/(1 day))((120000 kJ)/(1 h))-2000 kWh((3600 s)/(1 h))=33120000 kJ](https://img.qammunity.org/2021/formulas/engineering/college/m9jjpuuiykupzqyu29pg9s6cv4lowxbjx9.png)
b) The coefficient of performance is:
![COP=(Q_(h) )/(W)=(120000 kJ/h*14((24 h)/(1 day)) )/(2000 kWh((3600 s)/(1 h)) ) = 5.6](https://img.qammunity.org/2021/formulas/engineering/college/de5r43ix6r8phmcq4iban95aghu2esbvgq.png)
c) The coefficient of performance of a reversible heat pump is:
![COP_(reversible)=(T_(h) )/(T_(h)-T_(l) )](https://img.qammunity.org/2021/formulas/engineering/college/j861rpeuucqkjgtgzq8qs1o0oiy4oei8cs.png)
Th=20+273=293 K
Tl=10+273=283K
Replacing:
![COP_(reversible)=(293)/(293-283)=29.3](https://img.qammunity.org/2021/formulas/engineering/college/lr0ku3t06sroibo372di5a55z4rlkoicwu.png)