首页> 外文会议>International Meeting on Advances of Thermofluids >Experimental of Cascade Refrigeration System Using Natural Refrigerant Mixture Ethane and Carbon Dioxide at Low Temperature Circuit and Natural Refrigerant Propane at High Temperature Circuit
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Experimental of Cascade Refrigeration System Using Natural Refrigerant Mixture Ethane and Carbon Dioxide at Low Temperature Circuit and Natural Refrigerant Propane at High Temperature Circuit

机译:高温电路低温电路和天然制冷剂丙烷在低温电路中使用天然制冷剂混合物乙烷和二氧化碳的实验

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Medicine and biomedical research activities require cold storage to store biomedical specimens such as, for example, stem cell, sperm, blood and other organs. During storage, to prevent the specimen from damage required a special cold storage reaches -80°C. Using single cycle refrigeration machine can only reach -40°C, and performance deteriorates below -35°C drop in pressure associated with evaporation. Thus, to reach lower temperatures, use cascade refrigeration machine. During this low-temperature circuit cascade refrigeration systems still use refrigerants that contain ozone-depleting or global warming (CFCs and HCFCs). To overcome this, a mixture of carbon dioxide and ethane azeotropic a promising alternative refrigerants. Simulation studies and experiments indicate a mixture of carbon dioxide and ethane were able to achieve the minimum temperature to -80°C. With the mass ratio 70% R170 and 30% R744 circuit at low temperature refrigeration systems and uses a capillary tube expansion device 0.054 inch diameter with a length of 6 meters and 3 meters then use an electric heater as the cooling load. Cooling load is given by the variation of 90 W, 120 W and 150 W at a cabin in the low temperature circuit. From the experiment will be known characteristics of cascade refrigeration system with refrigerant mixture and will get the parameter data to make cascade refrigeration machine.
机译:医学和生物医学研究活动需要冷库来储存生物医学标本,例如干细胞,精子,血液和其他器官。在储存期间,为了防止损坏试样需要特殊的冷储存达到-80°C。使用单循环制冷机只能达到-40°C,性能低于-35°C与蒸发相关的压力降低至35°C。因此,要达到较低的温度,请使用级联制冷机。在该低温电路级联制冷系统期间,仍然使用含有臭氧耗尽或全球变暖(CFC和HCFC)的制冷剂。为了克服这一点,二氧化碳和乙烷共沸的混合物是有前途的替代制冷剂。模拟研究和实验表明二氧化碳和乙烷的混合物能够将最低温度达到-80℃。在低温制冷系统的质量比70%R170和30%R744电路中,使用毛细管膨胀装置0.054英寸直径,长度为6米,3米,然后使用电加热器作为冷却载荷。冷却负载通过在低温电路中的舱室中的90W,120W​​和150W的变化给出。从实验将是具有制冷剂混合物的级联制冷系统的已知特性,并将获得参数数据以使级联制冷机。

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