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Experimental research on instability of expansion valve-dry evaporator refrigeration system

机译:膨胀阀干蒸发器制冷系统不稳定性的实验研究

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摘要

The instability of the refrigeration cycle makes it difficult to control the system stably and decreases the system efficiency. In this article, the stability of expansion valve-dry evaporator (EVDE) refrigeration cycle has been systematically studied near "0 superheat". First, a special-designed sensor had been developed to measure "0 superheat". This method could distinguish the refrigerant flow states. Therefore, the values measured by the thermal sensor could be used as a feedback signal for the EVDE system. Second, there were liquid-vapor and bubble-vapor flows at the inlet of the evaporator, and a transition region occurred between them. When the compressor frequency was 70 Hz and the expansion valve opening was equal to 27%, the two flow patterns alternated, which leaded to the system periodic oscillation (for example: evaporating temperature, suction temperature and discharge temperature). In addition, the increase of refrigerant flow rate would reduce the periodic oscillation. Moreover, when the compressor frequency was 70 Hz and the expansion valve opening was less than 22%, the flow pattern was dominated by superheated vapor flow at the outlet of the evaporator. When the expansion valve opening was more than 23%, the flow pattern was dominated by misty "wet" vapor flow. The two flow patterns alternated, which leaded to suction temperature fluctuation. And a transition region also occurred between them. The results showed that EVDE refrigeration cycle could be controlled stably nearby "0 superheat", and it could coordinate the efficiency of the dry evaporator and the safety of the compressor to optimize the system.
机译:制冷循环的不稳定性使得难以稳定地控制系统并降低系统效率。在本文中,系统地研究了膨胀阀 - 干蒸发器(EVDE)制冷循环的稳定性附近“0超热”。首先,开发了一种特殊设计的传感器来测量“0超热”。该方法可以区分制冷剂流量状态。因此,通过热传感器测量的值可以用作EVDE系统的反馈信号。其次,在蒸发器的入口处有液 - 蒸汽和气泡蒸气,并且在它们之间发生过渡区域。当压缩机频率为70Hz时,膨胀阀开口等于27%时,交替的两个流动图案,其导致系统周期性振荡(例如:蒸发温度,吸入温度和排出温度)。此外,制冷剂流速的增加将减少周期性振荡。此外,当压缩机频率为70Hz时,膨胀阀开度小于22%时,流动模式通过蒸发器出口处的过热蒸汽流导地位。当膨胀阀开口大于23%时,流动模式由雾状“湿”蒸汽流导地位。交替的两个流动图案,其导致吸入温度波动。在它们之间也发生过渡区域。结果表明,EVDE制冷循环可以稳定地控制“0超热”,可以协调干蒸发器的效率和压缩机的安全性以优化系统。

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