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DEVELOPMENT OF NUMERICAL MODELLING OF ISOBUTANE VAPOUR EJECTOR

机译:异丁烷蒸汽喷射器数值建模的发展

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Ejection system can be driven by free or inexpensive low temperature heat source, either solar or waste heat, as the main source of energy instead of electricity. These systems can be thought as a real alternative to compression devices in air-conditioning technologies. The paper deals with CFD numerical simulation along with experimental investigations carried out on a prototype for the case of isobutane as a working fluid under motive vapour temperature below 75°C. The numerical and experimental results of entrainment ratio were compared. A good accuracy between numerical and experimental results is observed. The divergent of the results are lower than 20% for tested series. The first results of LES (Large Eddy Simulation) modelling for isobutane vapour ejector are presented. The results show the actual state of the investigations.
机译:喷射系统可以由自由或廉价的低温热源,无论是太阳能或余热的驱动,都是能量的主要来源而不是电力。这些系统可以被认为是空调技术中的压缩装置的真正替代方案。本文涉及CFD数值模拟以及在运动蒸汽温度下的异丁烷的壳体的原型上进行的实验研究以及在75℃以下的运动蒸气温度下进行。比较了夹带比的数值和实验结果。观察到数值和实验结果之间的良好准确性。结果的结果低于20%的测试系列。提出了异丁烷蒸汽喷射器的LES(大涡模拟)建模的第一个结果。结果表明了实际调查的状态。

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