首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >FLOW CHARACTERISTICS OF ELECTRONIC EXPANSION VALVES FOR HEAT PUMP SYSTEM USING CARBON DIOXIDE AS A REFRIGERANT
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FLOW CHARACTERISTICS OF ELECTRONIC EXPANSION VALVES FOR HEAT PUMP SYSTEM USING CARBON DIOXIDE AS A REFRIGERANT

机译:以二氧化碳为制冷剂的热泵系统电子膨胀阀的流动特性

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An experimental study on the flow characteristics of electronic expansion valves (EEVs) for heat pump system using carbon dioxide as a refrigerant have been carried out in this study. Many researches and efforts have been made to replace chemical refrigerants like Chloro-Fluoro-Carbon (CFC) and Hydro-Chloro-Fluoro-Carbon (HCFC) with natural refrigerants such as carbon dioxide and apply natural refrigerants to chillers or heat pump systems. In this study, we focused on the development of EEV and 4-way valve among the important components of heat pump system using natural refrigerant. The mass flow rate was measured at various EEV inlet temperature and pressure conditions with respect to several EEV openings operated at a heat pump system which has about 10 kW of cooling capacity. The heat pump system consists of a reciprocating compressor, a gas cooler, an evaporator, an EEV, and a 4-way valve which was developed for this study. The inlet temperature and pressure of an EEV was varied from 5°C to 40cC and from 7 MPa to 10 MPa, respectively. The mass flow rate of carbon dioxide through the EEV ranged from 50 g/s to 120 g/s. The mass flow rate of carbon dioxide around the critical point was affected by the inlet temperature and pressure of EEV, valve opening, and density variation. An empirical mass flow rate correlation of carbon dioxide based on the Buckingham 7t-theorem was developed in this study, and this correlation predicted experimental data within an average absolute deviation of 4.2%. The correlation can be applied to predict the mass flow rate through EEV used in the heat pump system using carbon dioxide as a refrigerant. And the reliability test of developed 4-way valve was conducted. This 4-way valve showed stable operation in the high pressure condition.
机译:在这项研究中,对以二氧化碳为制冷剂的热泵系统的电子膨胀阀(EEV)的流量特性进行了实验研究。已经进行了许多研究和努力,以用诸如二氧化碳的天然制冷剂代替诸如氯氟碳(CFC)和氢氯氟碳(HCFC)的化学制冷剂,并将天然制冷剂应用于冷却器或热泵系统。在这项研究中,我们重点研究了使用天然制冷剂的热泵系统的重要组成部分中的EEV和四通阀。相对于在具有约10 kW冷却能力的热泵系统中运行的几个EEV开口,在各种EEV入口温度和压力条件下测量了质量流速。热泵系统由往复式压缩机,气体冷却器,蒸发器,EEV和为该研究开发的四通阀组成。 EEV的入口温度和压力分别在5°C至40cC和7 MPa至10 MPa之间变化。通过EEV的二氧化碳的质量流率在50g / s至120g / s的范围内。临界点附近的二氧化碳的质量流量受EEV的入口温度和压力,阀门开度以及密度变化的影响。在这项研究中,建立了基于白金汉7t定理的二氧化碳的经验质量流率相关性,并且该相关性在平均绝对偏差为4.2%的范围内预测了实验数据。可以将相关性应用于预测通过使用二氧化碳作为制冷剂的热泵系统中使用的EEV的质量流量。并进行了开发的四通阀的可靠性测试。该四通阀在高压条件下显示稳定的运行。

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