首页> 外文会议>The 2002 International Solar Energy Conference, Jun 15-20, 2002, Reno, Nevada >A NOVEL COMBINED POWER AND COOLING THERMODYNAMIC CYCLE FOR LOW TEMPERATURE HEAT SOURCES - PART I: THEORETICAL INVESTIGATION
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A NOVEL COMBINED POWER AND COOLING THERMODYNAMIC CYCLE FOR LOW TEMPERATURE HEAT SOURCES - PART I: THEORETICAL INVESTIGATION

机译:低温热源的新型组合功率和冷却​​热循环-第一部分:理论研究

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A combined thermal power and cooling cycle proposed by Goswami is under intensive investigation, both theoretically and experimentally. The proposed cycle combines the Rankine and absorption refrigeration cycles, producing refrigeration while power is the primary goal. A binary ammonia-water mixture is used as the working fluid. This cycle can be used as a bottoming cycle using waste heat from a conventional power cycle or an independent cycle using low temperature sources such as geothermal and solar energy. Initial parametric studies of the cycle showed the potential for the cycle to be optimized for first or second law efficiency, as well as work or cooling output. For a solar heat source, optimization of the second law efficiency is most appropriate, since the spent heat source fluid is recycled through the solar collectors. The optimization results verified that the cycle could be optimized using the Generalized Reduced Gradient method. Theoretical results were extended to include realistic irreversibilities in the cycle, in preparation for the experimental study.
机译:在理论和实验上,Goswami提出的热电和制冷循环的组合正在深入研究中。拟议的循环结合了朗肯制冷和吸收式制冷循环,以制冷为动力,而动力是主要目标。二元氨水混合物用作工作流体。此循环可用作使用常规功率循环产生的余热的底部循环,也可以用作使用低温能源(例如地热和太阳能)的独立循环。对循环的初始参数研究表明,有可能针对第一定律或第二定律效率以及工作或冷却输出优化循环。对于太阳能热源,最优化第二定律效率是最合适的,因为废热源流体会通过太阳能收集器进行循环利用。优化结果验证了可以使用广义减少梯度法优化循环。为实验研究做准备,将理论结果扩展到包括周期中的实际不可逆性。

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