首页> 外文会议>International conference on nuclear engineering >EXPERIMENTS AND SIMULATIONS ON THE STEADY-STATE AND TRANSIENT BEHAVIOR OF GAS/LIQUID INTERFACES IN IMPULSE PIPES FOR HYDROSTATIC LEVEL MEASUREMENTS
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EXPERIMENTS AND SIMULATIONS ON THE STEADY-STATE AND TRANSIENT BEHAVIOR OF GAS/LIQUID INTERFACES IN IMPULSE PIPES FOR HYDROSTATIC LEVEL MEASUREMENTS

机译:静电管脉冲管型气/液间界面稳态和瞬态行为的实验与仿真

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For Boiling Water Reactors (BWR) and steam generators, the water level is a safety-relevant process variable. The most commonly applied measuring method is based on the calculation of the liquid level from geodetic pressure differences to a reference column of defined height and density. However, transition processes occurring under operational and accident conditions may lead to dynamic changes in the reference level and therefore to fluctuations in the differential pressure signal. This paper presents experiments and numerical simulations on the steady-state and transient behavior of gas/liquid phase boundaries in "Zero Chamber Level Vessels" (ZCLV). In these slightly inclined miniature tubes, the constant reference level is provided by surface tension forces and the capillary effect, respectively. To investigate the basic topology of gas/liquid interfaces under simplified conditions (environmental parameters, no heat transfer), a test facility with optical access was developed. The construction allows for variations of the inner tube diameter, inclination angle and liquid mass flow rate, respectively. By this means, experiments on phase boundaries were carried out for ethanol/air and water/air. The results provide information about the impact of geometry parameters and their interactions on the interface topology. In addition, the dynamic draining of excess liquid mass at the free end of the tube and at artificial weld seams, which is supposed to be the reason for temperature fluctuations observed in ZCLV during power operation of BWR, was experimentally analyzed. The measurements represent the basis for an experimental validation and optimizations of the numerical flow code ANSYS CFX 12.0. In the next step, water/vapor phase boundaries at 286 °C and 70 bar will be investigated by applying x-ray radiography to a scale model. The results will be discussed in context with the hydrostatic level measurement in BWR.
机译:对于沸水反应器(BWR)和蒸汽发生器,水位是安全相关的过程变量。最常用的测量方法基于从大地电压差的计算液位与定义高度和密度的参考柱。然而,在操作和事故条件下发生的过渡过程可能导致参考电平的动态变化,因此在差压信号中波动。本文介绍了“零室水平血管”(ZCLV)中气/液相边界稳态和瞬态行为的实验和数值模拟。在这些略微倾斜的微型管中,恒定的参考水平分别由表面张力和毛细血管效应提供。为了在简化条件下研究气体/液体界面的基本拓扑(环境参数,无传热),开发了一种具有光学访问的测试设施。该结构允许分别用于内管直径,倾斜角度和液体质量流量的变化。通过这种方式,对乙醇/空气和水/空气进行相界的实验。结果提供了有关几何参数影响的信息及其对界面拓扑的交互的影响。另外,实验分析了在BWR电力运行期间在ZCLV期间观察到在ZCLV中观察到的温度波动原因的过多液体的动态排水。测量代表数值流代码ANSYS CFX 12.0的实验验证和优化的基础。在下一步骤中,将通过将X射线射线照相曝光施加到比例模型来研究286℃和70巴的水/气相边界。结果将在BWR中的静液压水平测量中讨论这些结果。

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