Answer:
The thermal efficiency of the power cycle is 5 %.
Step-by-step explanation:
Given that,
Surface temperature = 25°C
Under water temperature = 80°C
Output power = 12 kW
Rate = 14400 kJ/min = 240 kJ/sec
Suppose we need to find the thermal efficiency of the power cycle
We need to calculate the thermal efficiency
Using formula of the thermal efficiency

Where, Q₁ = heat input
We know that,



Now put the value of Q and W in to the formula of efficiency



Hence, The thermal efficiency of the power cycle is 5 %.