首页> 外文会议>Second Japan-Korea Symposium on Nuclear Thermal Hydraulics and Safety Oct 15-18, 2000 Denki Bldg., Chuo-ku, Fukuoka, Japan >An Experimental Study for the Interfacial Shear Stress of near Vertical Air-Water Separated Flow on Evaporation
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An Experimental Study for the Interfacial Shear Stress of near Vertical Air-Water Separated Flow on Evaporation

机译:蒸发条件下近垂直空气-水分离流界面剪切应力的实验研究

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The object of experiment is improved model of evaporative heat transfer coefficient using interfacial friction factor on evaporation. Experiments have been conducted with near-vertical(87°) flat plate on evaporation for air-water countercurrent stratified flow. Experiment facility is consisted of 1.7m length and 0.2 X 0.005m cross section, the one side direct heating system which have 10kw power capacity. The interfacial shear stress, pressure drop and temperatures in test section were measured. These parameters were measured by DP-103 pressure transducer, K-type thermocouple, RTD and Hot Wire Anemometer(HWA). Experimental results were inclination as increased interfacial shear stress with increased the evaporation rate. Interfacial shear stress was increased as increased water flow rate and air flow rate too. For the evaluation of the measured evaporative heat transfer coefficients and physical understanding of the evaporation phenomena, the evaporative heat transfer coefficients were obtained through the simple calculation process by the use of mass transfer coefficient correlation and the experimental data of wavy film surface effect on shear and on evaporation.
机译:实验的目的是利用蒸发中的界面摩擦系数来改进蒸发传热系数模型。已经对近垂直(87°)平板蒸发进行了气水逆流分层流实验。实验设备由1.7m长和0.2 X 0.005m横截面组成,一侧直接加热系统的功率为10kw。测量了测试部分的界面剪切应力,压降和温度。这些参数通过DP-103压力传感器,K型热电偶,RTD和热线风速仪(HWA)进行测量。实验结果是倾斜随着界面剪切应力的增加而增加了蒸发速率。随着水流量和空气流量的增加,界面剪切应力也增加。为了评估测得的蒸发传热系数和对蒸发现象的物理理解,利用传质系数相关性和波浪膜表面效应对剪切力和剪切力的实验数据,通过简单的计算过程获得了蒸发传热系数。蒸发。

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