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Computational Study on Micro Shock Tube Flows with Gradual Diaphragm Rupture Process
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作者 Arun Kumar Rajagopal Heuy Dong Kim Toshiaki Setoguchi 《Open Journal of Fluid Dynamics》 2012年第4期235-241,共7页
Gas flows through micro shock tubes are widely used in many engineering applications such as micro engines, particle delivery devices etc. Recently, few studies have been carried out to explore the shock wave excursio... Gas flows through micro shock tubes are widely used in many engineering applications such as micro engines, particle delivery devices etc. Recently, few studies have been carried out to explore the shock wave excursions through micro shock tubes at very low Reynolds number and at rarefied gas condition. But these studies assumed centered shock and expansion waves, which are generally produced by instantaneous diaphragm rupture process. But in real scenario, the diaphragm ruptures with a finite rupture time and this phenomenon will significantly alter the shock wave propagation characteristics. In the present research, numerical simulations have been carried out on a two dimensional micro shock tube model to simulate the effect of finite diaphragm rupture process on the wave characteristics. The rarefaction effect was simulated using Maxwell’s slip wall equations. The results show that shock wave attenuates rapidly in micro shock tubes compared to conventional macro shock tubes. Finite diaphragm rupture causes the formation of non-centered shock wave at some distance ahead of the diaphragm. The shock propagation distance is also drastically reduced by the rupture effects. 展开更多
关键词 DIAPHRAGM RUPTURE Expansion Wave micro shock tube RAREFACTION UNSTEADY Flow
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Numerical Simulation of Flow Characteristics in Micro Shock Tubes 被引量:2
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作者 Guang Zhang Toshiaki Setoguchi Heuy Dong Kim 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第3期246-253,共8页
Recently micro shock tubes have been widely used in many engineering and industrial fields, but the characteristics of unsteady flow are not well known to date in micro shock tubes. Compared to conventional shock tube... Recently micro shock tubes have been widely used in many engineering and industrial fields, but the characteristics of unsteady flow are not well known to date in micro shock tubes. Compared to conventional shock tubes with macro scales, flows related to shock waves in micro shock tubes are highly complicated. Stronger viscous and dissipative interactions make shock wave dynamic behaviors significantly different from theoretical predictions. In the present study, a CFD work was applied to the unsteady compressible Navier-Stokes equations which were solved using a fully implicit finite volume scheme. The diaphragm pressure ratio and shock tube diameter were varied to investigate their effects on micro shock tube flows. Different wall boundary conditions were also performed to observe shock wave and contact surface propagation with no slip and slip walls. Detailed flow characteristics at the foot of shock wave and contact surface propagation were known from the present numerical simulations. 展开更多
关键词 激波管流动 数值模拟 可压缩NAVIER-STOKES方程 流动特性 非定常流 有限体积法 冲击波 工业领域
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双腔负压法用于激波管动态压力校准 被引量:4
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作者 杨军 李程 +1 位作者 王维 范静 《计量学报》 CSCD 北大核心 2012年第3期240-243,共4页
针对激波管中使用双腔负压法以获取微小阶跃压力进行了研究。使用北京长城计量测试技术研究所的+100mm激波管以及专门设计的附加装置,对绝压与微压传感器进行了校准实验,实验数据表明在激波管上使用双腔负压法与薄纸膜片能获得小于2... 针对激波管中使用双腔负压法以获取微小阶跃压力进行了研究。使用北京长城计量测试技术研究所的+100mm激波管以及专门设计的附加装置,对绝压与微压传感器进行了校准实验,实验数据表明在激波管上使用双腔负压法与薄纸膜片能获得小于2kPa的微小反射激波阶跃压力,上升时间与平台持续时间等各项指标也都符合国家检定规程的要求,扩展了现有激波管的技术能力。比较了不同静态压力和动态幅值情况下压力传感器激波管校准结果,谐振频率和阻尼比系数都随压力增大而增大,这在实际校准和使用中是一个值得注意的问题。 展开更多
关键词 计量学 激波管 双腔负压法 微小阶跃压力 动态校准
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ICF流体力学不稳定性实验用柱状激波管的研制 被引量:3
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作者 朱秀榕 周斌 +1 位作者 杜艾 李晓芬 《强激光与粒子束》 EI CAS CSCD 北大核心 2014年第2期80-86,共7页
在惯性约束聚变(ICF)实验中,点火靶丸表面(界面)的粗糙度和缺陷所产生的流体力学不稳定性是决定点火成功与否的关键因素之一,设计和研制流体力学不稳定性分解实验用靶是解决该问题的主要技术手段。结合国内外的研究现状和神光-Ⅱ激光装... 在惯性约束聚变(ICF)实验中,点火靶丸表面(界面)的粗糙度和缺陷所产生的流体力学不稳定性是决定点火成功与否的关键因素之一,设计和研制流体力学不稳定性分解实验用靶是解决该问题的主要技术手段。结合国内外的研究现状和神光-Ⅱ激光装置的特点,设计并研制了一种新型柱状激波管。该靶型由三种介质组成,分别为调制聚苯乙烯(CH)圆片、柱状碳气凝胶(CRF)和CH微套管。调制CH圆片和柱状CRF通过微加工技术装配到CH微套管内,封装后形成柱状激波管。介绍了该靶型的设计原理和详细的制备工艺,并对相应的靶参数进行了测量。结果表明:柱状CRF气凝胶具有较好的成型性,长度、直径和密度分别为1000μm、730μm和250mg·cm-3;CH圆片的厚度和直径分别为15μm和730μm,表面调制图形的周期和峰谷差分别为100μm和4.3μm;实验得到的柱状激波管的轴向和径向最大装配误差分别为2μm和3μm。 展开更多
关键词 惯性约束聚变 流体力学不稳定性 柱状激波管 柱状碳气凝胶 旋涂工艺 微加工
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微型激波管内部激波特性的数值模拟 被引量:1
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作者 张光 崔宝玲 +1 位作者 金英子 金羲東 《浙江理工大学学报(自然科学版)》 2015年第6期805-811,共7页
为了研究微型激波管内部的不稳定流动和激波运动特性,采用数值模拟的方法对微型激波管内部流动进行分析。对比分析不同隔膜压力比(高压腔与低压腔的初始压力之比)和激波管直径对微型激波管内激波、交接面以及流体运动特性的影响,并与实... 为了研究微型激波管内部的不稳定流动和激波运动特性,采用数值模拟的方法对微型激波管内部流动进行分析。对比分析不同隔膜压力比(高压腔与低压腔的初始压力之比)和激波管直径对微型激波管内激波、交接面以及流体运动特性的影响,并与实验数据进行比较。结果表明:随着隔膜压力比的增大,激波和交接面的运动速度逐渐增大;激波在微型激波管内运动时,其强度逐渐减弱;在低压被驱动腔内压强较低时,观察到厚度较大的边界层,这说明低压影响对微型激波管内的激波和流体运动会产生一定的能量损失;激波前后的压力梯度随着激波运动逐渐减小;交接面在微型激波管内运动时,运动速度逐渐增大;参数S值可以反映微型激波管内的低压和小尺寸影响。 展开更多
关键词 微型激波管 激波 交接面 非定常流动 数值模拟
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