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首页> 外文期刊>International Journal of Heat and Mass Transfer >Local interfacial velocity measurement method using a four-sensor probe
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Local interfacial velocity measurement method using a four-sensor probe

机译:使用四传感器探头的局部界面速度测量方法

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This paper presents a theoretical foundation of the measurement methods for the instantaneous local interfacial velocity vector and the time-averaged local interfacial area concentration using a four-sensor probe for multi-dimensional two-phase flow measurements. The measurement method is derived based on a large bubble assumption that locally views the front and rear interfaces of an approaching bubble as two tangent planes. The newly-derived method provides an explicit expression for the instantaneous local interfacial velocity vector using a four-sensor probe. The derived method for the time-averaged local interfacial area concentration was found to be in the same form as that proposed by Kataoka et al. (1986) . The derived method was applied to the practical two-phase flow measurements in a vertical pipe with an inner diameter of 200 mm. The measured void fraction and interfacial velocity component in the axial direction were checked against the void fraction measurement using differential pressure gages and the superficial gas velocity measurement using gas flow meters, respectively. The measured interfacial velocity components in the radial and circumferential velocity components were found to be close to zero, which is in accordance with the fact that no stable flow of bubbles with certain horizontal velocity component exists in a vertical circular pipe. The measured interfacial area concentrations showed reasonable radial distributions in the pipe. The good agreements in the practical measurements suggest that the newly-derived method can reasonably measure interfacial velocity vector and interfacial area concentration in multi-dimensional two-phase flows.
机译:本文提供了使用四传感器探针进行多维两相流测量的瞬时局部界面速度矢量和时间平均局部界面区域浓度的测量方法的理论基础。该测量方法是基于一个较大的气泡假设而得出的,该假设将两个气泡的正切面局部地视为两个切线平面。新推导的方法使用四传感器探针为瞬时局部界面速度矢量提供了显式表达式。发现时间平均局部界面面积浓度的推导方法与Kataoka等人提出的方法相同。 (1986)。将该方法应用于内径为200 mm的垂直管道中的实际两相流量测量。分别相对于使用差压计的空隙率测量和使用气体流量计的表观气体速度测量,对轴向上测量的空隙率和界面速度分量进行检查。发现在径向和圆周速度分量中测得的界面速度分量接近于零,这是由于在垂直圆形管中不存在具有一定水平速度分量的气泡的稳定流动的事实。测得的界面面积浓度在管道中显示出合理的径向分布。在实际测量中的良好协议表明,新推导的方法可以合理地测量多维两相流中的界面速度矢量和界面面积浓度。

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