首页> 外文会议>ASME international heat transfer conference;IHTC14 >EXPERIMENTAL STUDY ON THE FLOW REGIME IDENTIFICATION IN THE CASE OF CO-CURRENT CONDENSATION OF R134a IN A VERTICAL SMOOTH TUBE
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EXPERIMENTAL STUDY ON THE FLOW REGIME IDENTIFICATION IN THE CASE OF CO-CURRENT CONDENSATION OF R134a IN A VERTICAL SMOOTH TUBE

机译:R134a在垂直光滑管中同流冷凝时流场识别的实验研究

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The present study investigates an intensive comparison of flow regime maps for the verification of annular condensation flow of R134a checked by sight glasses at the inlet and outlet sections of a vertical smooth copper tube having inner diameter of 8.1 mm and a length of 500 mm. R134a and water are used as working fluids in the tube side and annular side of a double tube heat exchanger, respectively. The experimental apparatus are designed to capable of changing the different operating parameters such as mass flow rate, condensation temperature of refrigerant, cooling water temperature and mass flow rate of cooling water etc. and investigate their effect on heat transfer coefficients and pressure drops. Condensation experiments are performed at the mass flux of 456 kg m~(-2)s~(-1), the saturation temperature is around 40°C, heat fluxes and average qualities are between 16.16- 50.89 kW m~(-2) and 0.81-0.93 respectively. Considering Chen et al.'s annular flow theory on the heat transfer coefficients that are independent from tube orientation as long as annular flow exists along the tube length, experimental data belong to annular flow inside the test tube are plotted on the various flow regime maps and used in the flow regime identification correlations proposed for two-phase flow in horizontal and vertical tubes separately. In spite of their different operating conditions, Barnea et al., Hewitt and Robertson, Baker, Thome, Kaftan et al., Chen et al.'s flow regime maps and Taitel and Dukler's, Dobson's, Akbar et al.'s, Breber et al.'s, Cavallini et al.'s, Soliman's flow pattern correlations from literature are found to be predictive for the annular flow conditions in the test tube.
机译:本研究调查流态图的密集比较,以验证用观察镜检查的内径为8.1毫米,长度为500毫米的垂直光滑铜管的入口和出口处的R134a环形冷凝流。 R134a和水分别用作双管式换热器的管侧和环形侧的工作流体。设计该实验装置以能够改变不同的运行参数,例如质量流量,制冷剂的冷凝温度,冷却水温度和冷却水的质量流量等,并研究它们对传热系数和压降的影响。在456 kg m〜(-2)s〜(-1)的质量通量下进行冷凝实验,饱和温度在40°C左右,热通量和平均质量在16.16-50.89 kW m〜(-2)之间。和0.81-0.93。考虑到Chen等人的环状流理论,即只要沿管道长度存在环状流,传热系数就与管道方向无关,因此在各种流态图上都绘制了属于试管内部环状流的实验数据并分别用于水平管和垂直管中的两相流建议的流态识别相关性中。尽管Barnea等人,Hewitt和Robertson,Baker,Thome,Kaftan等人,Chen等人的流动状态图以及Taitel和Dukler's,Dobson's,Akbar等人的Brebre等人的工作条件不同,从文献中发现,Soliman等人的Cavallini等人的流动模式相关性可预测试管中的环形流动条件。

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