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VORTEX TUBE HEAT BOOSTER TO IMPROVE PERFORMANCE OF HEAT DRIVEN COOLING CYCLES

机译:涡旋管热助力器以提高热驱动冷却循环的性能

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Increasing energy costs justify research on how to improve utilization of low-grade energy that is abundantly available as solar energy or as waste heat from many thermodynamic processes. One option is to directly generate cooling through absorption/adsorption or vapor jet ejector cycles. As in the case of power generation cycles, cooling cycle efficiencies would increase if the heat input were available at higher temperature. This paper assesses the feasibility of a novel idea that uses a vortex tube to increase the available temperature levels of low-grade heat sources. The desired temperature increase is achieved by sending a stream of vapor that was heated by the waste heat source through a vortex tube, which further elevates the temperature used in a heat driven ejector cooling cycle. Simulation results show that COP can be increased by 12% with the use of the vortex tube heat booster when the cycle is operating with low entrainment ratio at conditions where baseline performance and COP are low.
机译:提高能源成本证明了如何改善高档能量的利用,这些能源是从许多热力学过程中大量提供的低级能量的利用。一种选择是直接通过吸收/吸附或蒸汽喷射喷射器循环产生冷却。如在发电循环的情况下,如果在较高温度下提供热量输入,则冷却循环效率会增加。本文评估了一种使用涡旋管来增加低级热源的可用温度水平的新颖思想的可行性。通过向通过涡流管发送由废热源加热的蒸汽流来实现所需的温度升高,这进一步提升了热驱动喷射器冷却循环中使用的温度。仿真结果表明,当循环在基线性能和Cop低的条件下,使用涡旋管热助力器时,COP可以增加12%。

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