首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >RESEARCH ON TWO-PHASE FLOW INSTABILITY IN EVAPORATOR OF REFRIGERATION SYSTEM
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RESEARCH ON TWO-PHASE FLOW INSTABILITY IN EVAPORATOR OF REFRIGERATION SYSTEM

机译:制冷系统蒸发器两相流不稳定性的研究

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As one kind of fluid machinery related to the two-phase flow, the refrigeration system encounters more problems of instability. It is essential to ensure the stability of the refrigeration systems for the operation and efficiency. This paper presents the experimental investigation on the static and dynamic instability in an evaporator of refrigeration system. The static instability experiments showed that the oscillatory period and swing of the mixture-vapor transition point by observation with a camera through the transparent quartz glass tube at the outlet of the evaporator. The pressure drop versus mass flow rate curves of refrigerant two phase flow in the evaporator were obtained with a negative slope region in addition to two positive slope regions, thus making the flow rate a multi-valued function of the pressure drop. For dynamic instabilities in the evaporation process, threetypes of oscillations (density wave type, pressure drop type and thermal type) were observed at different mass flow rates and heat fluxes, which can be represented in the pressure drop versus mass flow rate curves. For the dynamic instabilities, density wave oscillations happen when the heat flux is high with the constant mass flow rate. Thermal oscillations happen when the heat flux is correspondingly low with constant mass flow rate. Though the refrigeration system do not have special tank, the accumulator and receiver provide enough compressible volume to induce the pressure drop oscillations. The representation and characteristic of each oscillation type were also analyzed in the paper.
机译:作为与两相流有关的一种流体机械,制冷系统遇到更多的不稳定问题。对于运行和效率而言,确保制冷系统的稳定性至关重要。本文介绍了制冷系统蒸发器中静态和动态不稳定性的实验研究。静态不稳定性实验表明,通过用照相机通过蒸发器出口处的透明石英玻璃管进行观察,可以观察到混合物蒸汽转变点的振荡周期和摆动。获得了除两个正斜率区域外还具有负斜率区域的蒸发器中制冷剂两相流的压降-质量流量曲线,因此使流量成为压降的多值函数。对于蒸发过程中的动态不稳定性,三个 在不同的质量流量和热通量下观察到振荡的类型(密度波型,压降型和热型),可以用压降对质量流量的曲线表示。对于动态不稳定性,当热通量较高且质量流量恒定时,会发生密度波振荡。当热通量相对较低且质量流量恒定时,就会发生热振荡。尽管制冷系统没有特殊的储气罐,但蓄能器和储气罐可提供足够的可压缩容积,以引起压降振荡。本文还分析了每种振荡类型的表示形式和特性。

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