为了预测航天器低温推进剂在轨工作时受热后的状态变化,采用二维轴对称Volume of Fluid(VOF)气液两相流计算流体力学模型,同时选择Lee提出的气液相变模型.由于模拟试验采用低温液氮贮箱,因此本文采用低温液氮贮箱为数值仿真对象.微重力...为了预测航天器低温推进剂在轨工作时受热后的状态变化,采用二维轴对称Volume of Fluid(VOF)气液两相流计算流体力学模型,同时选择Lee提出的气液相变模型.由于模拟试验采用低温液氮贮箱,因此本文采用低温液氮贮箱为数值仿真对象.微重力情况下,贮箱内气枕区的压力和压力上升率均低于地面状况,重力水平越低,压力和压力上升率越小,并且气体形成的气枕区位置和形状因表面张力大小随温度不同而动态变化,液体区间的温差也随重力水平的降低而增大.展开更多
In this study we characterized and investigated the specific phenomenon of "companion drops" in the drop-ondemand(DOD) ink jetting process.A series of simulations based on a piezoelectric DOD printhead syste...In this study we characterized and investigated the specific phenomenon of "companion drops" in the drop-ondemand(DOD) ink jetting process.A series of simulations based on a piezoelectric DOD printhead system is presented,adapting the volume-of-fluid(VOF) interface-capturing method to track the boundary evolution and model the interfacial physics.The results illustrate the causality between the generation of companion drops and droplet deviation behavior,as well as their close correlations with ink jetting straightness and printing accuracy.The characteristics of companion drops are summarized and compared with those of satellite drops.Also,a theoretical mechanism for the generation of companion drops is presented,and their effects and behaviors are analyzed and discussed.Finally,the effects of critical factors on the generation of companion drops are investigated and characterized based on variations in the printable pressure range.Recommendations are given for the suppression of companion drops and for the improvement of printing accuracy.展开更多
采用Volume of Fluid(VOF)模型对罐车制动时液体的晃动进行了数值模拟,对单室受力、受力位置及整车轴荷分配进行了计算,并通过与实验结果的对比验证了计算方法的可靠性.计算结果表明,无防波板时,随减速度增加,单室x,y方向受力峰值增大,...采用Volume of Fluid(VOF)模型对罐车制动时液体的晃动进行了数值模拟,对单室受力、受力位置及整车轴荷分配进行了计算,并通过与实验结果的对比验证了计算方法的可靠性.计算结果表明,无防波板时,随减速度增加,单室x,y方向受力峰值增大,整车轴荷比增大;随充液比增加,单室x方向受力峰值先增大后减小,y方向受力峰值增大,制动初始与结束时充液比越大轴荷比越大,1 s左右充液比越大轴荷比越小;单室带防波板时,随防波板面积增加,x,y方向受力峰值减小,当防波板面积大于横截面的40%时,增加防波板面积能显著改善罐体受力,且防波板面积越大轴荷比峰值越小.展开更多
基于两相界面追踪流体体积(volume of fluid,简称VOF)方法模拟了离心式喷嘴内部的流动过程,在数值方法可靠性验证基础上,得到了15个喷嘴构型的流量系数、液膜厚度以及雾化锥角.定义无量纲影响因子η,比较喷嘴结构参数对喷嘴性能的影响程...基于两相界面追踪流体体积(volume of fluid,简称VOF)方法模拟了离心式喷嘴内部的流动过程,在数值方法可靠性验证基础上,得到了15个喷嘴构型的流量系数、液膜厚度以及雾化锥角.定义无量纲影响因子η,比较喷嘴结构参数对喷嘴性能的影响程度.除了喷嘴直径和旋流室直径外,重点研究了出口扩张角、等直段长径比等结构参数的影响,通过与试验相对比,综合以往经验公式,得到如下结论:增大旋流室长度,能够增大雾化锥角;在喷嘴出口增加扩张角,能够显著地减小液膜厚度,减小雾化锥角;增大切向口距喷嘴顶部距离,能够改善喷嘴性能;切向口个数和等直段长度对喷嘴性能影响不大.该工作为下一步优化喷嘴构型打下了基础.展开更多
Numerical simulations of extreme wave generation are carried out by using the Volume Of Fluid(VOF) method.Extreme waves are generated based on wave focusing in a 2-D numerical model.To validate the capability of the...Numerical simulations of extreme wave generation are carried out by using the Volume Of Fluid(VOF) method.Extreme waves are generated based on wave focusing in a 2-D numerical model.To validate the capability of the VOF-based model described in this article,the propagation of regular waves is computed and compared with the theoretical results.By adjusting the phases of wave components,extreme waves are formed at given time and given position in the computation.The numerical results are compared with theoretical solutions and experimental data.It is concluded that the present model based on the VOF technique can provide acceptably accurate numerical results to serve practical purposes.展开更多
基于两相界面追踪方法 VOF(volume of fluid)模拟了离心式喷嘴内部的流动过程,得到了液相填充喷嘴内部的过程,初始时刻,气液界面出现褶皱,随着进入液体的增多,褶皱逐渐消失;着重分析了喷嘴各个部位速度、压力分布,由于气液两相的存在,...基于两相界面追踪方法 VOF(volume of fluid)模拟了离心式喷嘴内部的流动过程,得到了液相填充喷嘴内部的过程,初始时刻,气液界面出现褶皱,随着进入液体的增多,褶皱逐渐消失;着重分析了喷嘴各个部位速度、压力分布,由于气液两相的存在,喷嘴内部流场变得异常复杂,流场分布不能用单相流的模式分析,总压损失大部分存在于喷嘴收缩段以及直管段,增大收缩段锥角、减小收缩段长度有利于减小总压损失;在喷嘴出口处设置一定扩张角,能够增加液相速度,减小液膜厚度,有利于雾化.展开更多
数值求解非定常不可压缩流动的雷诺平均N-S(Navier-Stokes)方程和标准k-ε湍流模型,用VOR(Volume Of Fluid)方法模拟波浪水面,模拟了NACA2410翼型在波浪水面上方飞行的流场.研究了余弦波浪水面的生成方法,选取合适的计算网格和时间步长...数值求解非定常不可压缩流动的雷诺平均N-S(Navier-Stokes)方程和标准k-ε湍流模型,用VOR(Volume Of Fluid)方法模拟波浪水面,模拟了NACA2410翼型在波浪水面上方飞行的流场.研究了余弦波浪水面的生成方法,选取合适的计算网格和时间步长,避免了在生成规则余弦波浪水面时由于数值耗散使波面形状衰减.比较了固壁波浪与水面波浪计算结果的差异,发现固壁波浪的结果更接近余弦曲线分布.研究了波浪等级对翼型气动性能的影响,分析计算结果发现:在规则的余弦水面波浪上方飞行,翼型气动力呈现周期性,给出了一个周期内气动力的变化过程,以及波长和波幅对气动力平均值和波动幅度的影响规律.展开更多
文摘为了预测航天器低温推进剂在轨工作时受热后的状态变化,采用二维轴对称Volume of Fluid(VOF)气液两相流计算流体力学模型,同时选择Lee提出的气液相变模型.由于模拟试验采用低温液氮贮箱,因此本文采用低温液氮贮箱为数值仿真对象.微重力情况下,贮箱内气枕区的压力和压力上升率均低于地面状况,重力水平越低,压力和压力上升率越小,并且气体形成的气枕区位置和形状因表面张力大小随温度不同而动态变化,液体区间的温差也随重力水平的降低而增大.
基金Project supported by the National Key Technology R&D Program(No. 2011BAD01B03)the Key Project of Science and Technology Program of Zhejiang Province (No. 2009C11099)the Zhejiang Provincial Natural Science Foundation (No. Y1110230)
文摘In this study we characterized and investigated the specific phenomenon of "companion drops" in the drop-ondemand(DOD) ink jetting process.A series of simulations based on a piezoelectric DOD printhead system is presented,adapting the volume-of-fluid(VOF) interface-capturing method to track the boundary evolution and model the interfacial physics.The results illustrate the causality between the generation of companion drops and droplet deviation behavior,as well as their close correlations with ink jetting straightness and printing accuracy.The characteristics of companion drops are summarized and compared with those of satellite drops.Also,a theoretical mechanism for the generation of companion drops is presented,and their effects and behaviors are analyzed and discussed.Finally,the effects of critical factors on the generation of companion drops are investigated and characterized based on variations in the printable pressure range.Recommendations are given for the suppression of companion drops and for the improvement of printing accuracy.
文摘采用Volume of Fluid(VOF)模型对罐车制动时液体的晃动进行了数值模拟,对单室受力、受力位置及整车轴荷分配进行了计算,并通过与实验结果的对比验证了计算方法的可靠性.计算结果表明,无防波板时,随减速度增加,单室x,y方向受力峰值增大,整车轴荷比增大;随充液比增加,单室x方向受力峰值先增大后减小,y方向受力峰值增大,制动初始与结束时充液比越大轴荷比越大,1 s左右充液比越大轴荷比越小;单室带防波板时,随防波板面积增加,x,y方向受力峰值减小,当防波板面积大于横截面的40%时,增加防波板面积能显著改善罐体受力,且防波板面积越大轴荷比峰值越小.
文摘基于两相界面追踪流体体积(volume of fluid,简称VOF)方法模拟了离心式喷嘴内部的流动过程,在数值方法可靠性验证基础上,得到了15个喷嘴构型的流量系数、液膜厚度以及雾化锥角.定义无量纲影响因子η,比较喷嘴结构参数对喷嘴性能的影响程度.除了喷嘴直径和旋流室直径外,重点研究了出口扩张角、等直段长径比等结构参数的影响,通过与试验相对比,综合以往经验公式,得到如下结论:增大旋流室长度,能够增大雾化锥角;在喷嘴出口增加扩张角,能够显著地减小液膜厚度,减小雾化锥角;增大切向口距喷嘴顶部距离,能够改善喷嘴性能;切向口个数和等直段长度对喷嘴性能影响不大.该工作为下一步优化喷嘴构型打下了基础.
基金support by the National Natural Science Foundation of China (Grant No. 50779004)
文摘Numerical simulations of extreme wave generation are carried out by using the Volume Of Fluid(VOF) method.Extreme waves are generated based on wave focusing in a 2-D numerical model.To validate the capability of the VOF-based model described in this article,the propagation of regular waves is computed and compared with the theoretical results.By adjusting the phases of wave components,extreme waves are formed at given time and given position in the computation.The numerical results are compared with theoretical solutions and experimental data.It is concluded that the present model based on the VOF technique can provide acceptably accurate numerical results to serve practical purposes.
文摘基于两相界面追踪方法 VOF(volume of fluid)模拟了离心式喷嘴内部的流动过程,得到了液相填充喷嘴内部的过程,初始时刻,气液界面出现褶皱,随着进入液体的增多,褶皱逐渐消失;着重分析了喷嘴各个部位速度、压力分布,由于气液两相的存在,喷嘴内部流场变得异常复杂,流场分布不能用单相流的模式分析,总压损失大部分存在于喷嘴收缩段以及直管段,增大收缩段锥角、减小收缩段长度有利于减小总压损失;在喷嘴出口处设置一定扩张角,能够增加液相速度,减小液膜厚度,有利于雾化.
文摘数值求解非定常不可压缩流动的雷诺平均N-S(Navier-Stokes)方程和标准k-ε湍流模型,用VOR(Volume Of Fluid)方法模拟波浪水面,模拟了NACA2410翼型在波浪水面上方飞行的流场.研究了余弦波浪水面的生成方法,选取合适的计算网格和时间步长,避免了在生成规则余弦波浪水面时由于数值耗散使波面形状衰减.比较了固壁波浪与水面波浪计算结果的差异,发现固壁波浪的结果更接近余弦曲线分布.研究了波浪等级对翼型气动性能的影响,分析计算结果发现:在规则的余弦水面波浪上方飞行,翼型气动力呈现周期性,给出了一个周期内气动力的变化过程,以及波长和波幅对气动力平均值和波动幅度的影响规律.