双氧水射流压缩机制冷循环的开发与研究

Ya.Ye. Trokoz, P. Barabash, P. Kudelya, O.B. Golubev
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引用次数: 0

摘要

背景目前,在蒸汽喷射制冷机(SERM)的循环中使用的是单剂喷射压缩机,其工作体是水。尽管SERM的效率较低,但与使用机械压缩机的制冷机相比,SERM具有许多优势:低成本、易于制造和可靠性。SERM的使用在很大程度上受到这些装置无法达到0°C以下温度的限制。这一限制可以通过使用生物试剂(水-氟利昂)喷射压缩机(BAJC)应用一种全新的蒸汽压缩循环来克服。目的。本文的目的是通过实验确认制冷机在使用生物试剂/水-氟里昂喷射压缩机的蒸汽压缩环路上运行的可操作性。确定实验制冷机的效率,并找到喷气式压缩机的最佳几何特性。方法。建立了一个实验台来研究使用BAJC的制冷设备。根据所开发的方法确定了制冷机的效率e。后果根据BAJC的喷射系数q的变化来获得冷却机系数e的实验值。最大机器系数值emax=1,3÷1,4对应于喷射系数q opt≈опа0,25q 0,25,这也实现了BAJC结论的最大效率h≈max 0,35÷0,45。使用生物制剂(水-氟利昂)喷射压缩机在蒸汽压缩循环中运行的制冷机组的效率已经通过实验得到证实。为了在降低蒸发器沸点的方向上扩大循环的温度谱(tboilt−≤кип20°C),计划使用盐水溶液作为冷却剂对实验室工作台进行现代化改造。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and research of refrigeration cycle with biagent jet compressor
Background. Currently, in the cycles of steam-ejector refrigeration machines (SERM) are used monoagent jet compressors, the working body in which is water. Despite their low efficiency, SERM have a number of advantages over refrigeration machines that usemechanical compressors: low cost, ease of manufacture and reliability. The use of SERM is largely limited by the inability of these installations to reach temperatures below 0 °C. This limitation can be overcome by applying a fundamentally new steam compressioncycle using a bioagent (water-freon) jet compressor (BAJC).Objective. The purpose of the paper is experimentally confirm the operability of a refrigeration machine operating on a steam compression cycle using a bioagent (water-freon) jet compressor. Determine the efficiency of the experimental refrigeration machine andfind the optimal geometric characteristics of the jet compressor.Methods. An experimental stand was created to study the refrigeration plant using BAJC. The refrigeration machine efficiency e was determined according to the developed method.Results. Experimental values of the cooling machine coefficient e were obtained depending on the change in the ejection coefficient q of BAJC. The maximum machine coefficient values emax = 1,3 ÷ 1, 4 correspond to those of the ejection coefficient q opt ≈опт 0, 25q 0,25, which also achieves the maximum efficiency h ≈max 0,35 ÷ 0, 45 of the BAJC.Conclusions. The efficiency of a refrigeration unit operating on a steam compression cycle using a bioagent (water-freon) jet compressor has been experimentally confirmed. To expand the temperature spectrum of the cycle in the direction of lowering the boilingpoints in the evaporator (tboilt −≤кип 20 °C), it is planned to modernise the laboratory bench by using aqueous salt solutions as a coolant.    
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