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A NEW MULTIDIMENSIONAL GRAPH FOR THE EINSTEIN REFRIGERATION CYCLE

机译:爱因斯坦制冷循环的新多维图

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摘要

An analysis of the exergy use in an Einstein refrigeration cycle is presented. The analysis is performed through the use of a new graphical multidimensional representation of the cycle. The Einstein refrigeration cycle works with ammonia, butane and water. These compounds are present in the cycle as several ammonia-water and ammonia-butane mixtures that have different compositions. In essence, the cycle transfers ammonia from an ammonia-water mixture to an ammonia-butane mixture in a series of processes and then it transfers ammonia back again to an ammonia-water mixture in another series of processes. The ammonia transfers involve heat absorptions and heat rejections that have as an effect the transfer of heat from a low temperature reservoir to a high temperature reservoir. The aforementioned multidimensional graph was built with equilibrium data of the ammonia-water and ammonia-butane binary systems for a 4 bar pressure and a 240 K to 350 K temperature range. The graphical representation is multidimensional because it shows in one graph values of concentration, temperature, enthalpy, entropy and exergy for ammonia-water mixtures and ammonia-butane mixtures. The thermodynamic states of all the process currents present in the cycle are showed in the graph, as well as are the different thermodynamic processes of the cycle. The exergy destruction rate of each device is clearly represented. The usefulness of this graph is similar to that of the T-s graph for a Rankine cycle.
机译:提出了爱因斯坦制冷循环中的火用分析。通过使用循环的新的图形化多维表示来执行分析。爱因斯坦制冷循环使用氨,丁烷和水。这些化合物以几种具有不同组成的氨水和氨丁烷混合物的形式存在于循环中。本质上,该循环在一系列过程中将氨从氨水混合物转移到氨丁烷混合物中,然后又在另一一系列过程中将氨再次转移回氨水混合物中。氨的转移涉及吸热和排热,其结果是将热量从低温储库转移到高温储库。上述多维图是在4 bar压力和240 K至350 K温度范围内,用氨水和氨丁烷二元系统的平衡数据建立的。该图形表示是多维的,因为它在一幅图中显示了氨水混合物和氨丁烷混合物的浓度,温度,焓,熵和火用值。图中显示了循环中存在的所有过程电流的热力学状态,以及循环中不同的热力学过程。每个设备的火用破坏率都清楚地表示出来。该图的有效性类似于朗肯循环的T-s图。

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