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Influences of thermal effects on cavitation dynamics in liquid nitrogen through venturi tube

机译:通过文丘里管液氮空化动力学对液氮测动的影响

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Investigation on cavitation features in cryogenic liquids is of great importance to rocket engine design due to their complicated physics. This paper experimentally investigates the characteristics of unsteady liquid nitrogen (LN2) cavitating flow through a transparent venturi tube with image processing techniques. The numerical simulations based on the computational fluid dynamic approach are also performed to help explain the mechanisms. A pressure ratio (P-r) associated with the inlet and the outlet subcooling is found to have a linear relationship with the cavitation number. The nondimensional thermal effect parameter derived from the single bubble dynamics is used to quantify thermal effect intensity. The cavity length derived from standard derivation results has an inversely linear relation with P-r, and there exists an inflection point of the pressure ratio (P-rc) below which the cavity length growth rate is relatively larger. The effects of the bulk temperature on the magnitude of P-rc are numerically investigated, which reveals that P-rc increases as the liquid temperature increases. The oscillating frequencies of the sheet and cloud cavitating flow are also analyzed according to two Strouhal numbers based on cavity length (Stc) and venturi throat diameter (St(d)), respectively. For cloud cavitation, St(c) lies in between 0.30 and 0.40 for all P-r values, while for sheet cavitation, it decreases to 0.04-0.08. Besides, in the cloud cavitation region, Std increases linearly with P-r but has a weak relation with Sigma.root C/u(th)(3). It is also found that with increased values of Sigma.root C/u(th)(3), the transition point of P-r from sheet cavitation to cloud cavitation is delayed. Published under license by AIP Publishing.
机译:由于其复杂的物理,对低温液体空化特征的调查非常重要。本文通过具有图像处理技术的透明文丘里管来实验研究了不稳定的液氮(LN2)空化流量的特性。还执行基于计算流体动态方法的数值模拟以帮助解释机制。发现与入口和出口过冷相关的压力比(P-R)与空化数具有线性关系。源自单泡沫动力学的非潜能效应参数用于量化热效应强度。源自标准衍生结果的腔长与P-R成反比,压力比(P-RC)的拐点下调,腔长生长速率相对较大。体积温度对P-RC幅度的影响是数值研究的,其显示,随着液体温度的增加,P-RC增加。根据空腔长度(STC)和文丘里喉部直径(ST(D)),还根据两个Strouhal数(ST(D))根据两个Strouhal数进行分析纸张和云空分流程的振荡频率。对于云空化,所有P-R值的ST(C)位于0.30和0.40之间,而对于片状空化,其降低至0.04-0.08。此外,在云空化区域中,STD与P-R线性增加,但与Sigma.Root C / U(TH)(3)具有弱关系。还发现,随着Sigma.Root C / U(Th)(3)的增加的增加,从纸张空化到云空化的P-R的过渡点延迟。通过AIP发布在许可证下发布。

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    《Physics of fluids》 |2020年第1期|共12页
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  • 正文语种 eng
  • 中图分类 流体力学;
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