Energy and exergy-based workingfluid selection for organic Rankine cycle recovering waste heat from high temperature solid oxide fuel cell and gas turbine hybrid systems Hanfei Tuo This paper performed a comparative analysis of organic Rankine cycle (ORC) using different working fluids, in order to recover waste heat from a solid oxide fuel
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A generator is driven by the engine and provides power for on-site electrical consumption. Approximately 92% of the energy produced as heat and electricity is utilized. In a fuel cell
The agent uses a mini-batch of experience randomly sampled from the buffer to update the actor and critic network at each learning process. photovoltaic system; WT: wind turbine; GT: gas turbine; CFP: coal Basi
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Response 22: Here, the calculation of carbon emissions of GHSP and CHP systems is as follows: (1) (2) Where ACE=Annual carbon emission, AEU=Annual electricity use, CI=Carbon intensity, AGU=Annual gas use, EG=Electricity generation. We also added this in Page 12 Lines 375-378, and in Appendix C, Page 19
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Diesel CHP systems deliver such high efficiencies because of the way they store and use the wasted heat energy from the engine. There are essentially two key areas where the heat energy is collected; from the exhaust gases via the exhaust manifold, and via the water cooling jacket. Using a temperature controlled heat store, coupled with plate