Salt dissolving type temperature regulating device and method for applying same
A temperature regulating device and temperature regulating device technology, applied in household refrigeration devices, applications, household appliances, etc., can solve problems such as inability to refrigerate immediately, inability to adjust the temperature below zero, troublesome operation and maintenance, etc., to achieve low working noise and smooth movement Fewer parts and long service life
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Embodiment 1
[0064] Embodiment one car salt dissolving air conditioner:
[0065] Almost every car needs air conditioning. Existing car air conditioners are all traditional vapor compression air conditioners. Its work needs to be driven by the car engine, or a dedicated refrigeration engine needs to be added, which consumes extra energy, increases fuel consumption, and increases noise. Also increased exhaust emissions. The automobile engine converts the chemical energy contained in gasoline and diesel into heat energy and then into the kinetic energy required by the automobile. However, due to the limitation of the Carnot cycle of the heat engine and the influence of the unstable operation of the automobile, the average thermal power conversion efficiency of the engine is only About 15% to 20%, that is to say, a considerable part (30 to 40%) of the heat generated by fuel is lost through vehicle exhaust emissions, so at the generator exhaust outlet, the temperature can reach above 300°C. S...
Embodiment 3
[0081] A considerable portion of the total electricity generated in the world today is used for conventional vapor compression air conditioners. From the perspective of energy utilization efficiency, this utilization method is very uneconomical, because it has gone through multiple conversion processes such as thermal energy→mechanical energy→electrical energy→mechanical energy→thermal energy, and the utilization efficiency gradually decreases, especially the first conversion process thermal energy→ Mechanical energy, as mentioned above, is limited by the Carnot cycle of the heat engine, and its thermal power conversion efficiency is only about 40%, so the overall conversion efficiency is very low.
[0082] In today's large-scale commercial power generation methods, hydropower accounts for only a small part, while thermal power and nuclear power account for the majority. They all heat water to generate superheated steam, and then use superheated steam to drive gas turbine gener...
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