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Experimental investigation on the propagation characteristics of pressure oscillation in direct contact condensation with low mass flux steam jet

机译:低质量通量蒸汽射流直接接触冷凝压力振荡传播特性的实验研究

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The propagation characteristics of pressure oscillation in direct contact condensation with low mass flux steam jet have been investigated experimentally. Steam is injected into subcooled water at one atmosphere pressure with steam mass flux and water temperature range of 186-272 kg/(m(2) s) and 293-343 K. The pressure oscillation propagates in the form of wave with stable dominant frequency, however the wave intensity attenuates with the increasing distance from the oscillation source. The root mean square of pressure wave p(rms) attenuates rapidly with the increasing dimensionless radial distance from the nozzle exit. At about dimensionless radial distance R = 100, the p(rms) is attenuated by about 90%. Although the dominant frequency of the pressure oscillation is constant during the propagation, after R= 100, there will be not enough energy for the pressure oscillation to resonate with relevant equipment. A correlation equation to calculate the root mean square of pressure oscillation along the radial distance is given. The prediction errors are within +/- 30% compared with the experimental data. (C) 2017 Elsevier Inc. All rights reserved.
机译:实验研究了具有低质量磁通蒸汽射流直接接触冷凝的压力振荡的传播特性。蒸汽在一个大气压压力下在蒸汽质量磁通和水温范围为186-272kg /(m(2))和293-343k的水温范围内。压力振荡以稳定的主频率的形式传播然而,波强度随着距振荡源的距离增加而衰减。压力波P(RMS)的根均线随着从喷嘴出口的增加的无量纲径向距离而快速衰减。在约无量纲径向距离R = 100时,P(RMS)衰减约90%。虽然在传播期间,压力振荡的主导频率是恒定的,但在r = 100之后,压力振荡将有足够的能量与相关设备共鸣。给出了计算沿径向距离的压力振荡的根均线的相关方程。与实验数据相比,预测误差在+/- 30%内。 (c)2017年Elsevier Inc.保留所有权利。

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