3 ms·
Even in this revised scenario it's not clear if you were able to get ahead. Because you are converting heat to mechanical work and back to heat in the heat pump
by pi-e-sigma 3y ago
Even in this revised scenario it's not clear if you were able to get ahead. Because you are converting heat to mechanical work and back to heat in the heat pump so you are subject to Carnot limit _twice_
- kragen 3y agoyes, but the second time it works backwards: for each joule of mechanical work you put in, you pump 10.1 joules of heat. this is called the 'coefficient of performance' of a heat pump and it is almost always more than 1, even with the losses present in any real system. values of 2 or 3 are typical, though some mass-produced systems reach 6. sometimes this is quoted as an 'efficiency' of 200% or 300% or 600% which is of course impossible, but it's as if you had 200% efficiency. that's why using heat pumps saves energy