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1.
实验研究了矩形液池中蒸发薄液居中蒸发效应与热毛细对流的耦合机理. 对于单纯的热毛细对流稳定性从实验和理论上已有深入研究,但目前国际上对带有菇发界面的热毛细对流问题尚缺乏研究. 特别是近来的研究发现,气液界面的蒸发对热毛细对流稳定性有很大的影响. 本实验以温度为主要控制参数,测量了不同工况下蒸发界面不同点的蒸发速率和表层温度,并利用 PIV 方法分析得到了液体内的嘛场分布. 实验结果发现,随着沿界面的温差增加,蒸发液体内的流型从稳定的单涡胞结构变为稳定的多祸胞结构,并最终演变为紊流结构. 综合分析以上测量结果并与理论分析结果进行了比较。   相似文献   

2.
提出了一种新模型来研究由单一物质构成的液层在其纯蒸气中的蒸发.液层置于微重力环境中并且受到水平方向温度梯度的作用,液层的热毛细对流和蒸发耦合在一起,使得气液界面的传热传质规律更加复杂.用理论分析的方法求解了不考虑热毛细效应的纯蒸发模型,得出温度场分布和界面质量流量的解析表达式.对于热毛细对流和蒸发耦合情况,采用有限差分的投影算法同时求解Navier-Stokes方程和能量方程,得到了不同蒸发Biot数和Marangoni数下流场和温度场的稳态数值解.论述了蒸发Biot数和Marangoni数对界面传热传质的影响,提出并解释了蒸发和热毛细对流耦合的三种模式.   相似文献   

3.
研究了矩形液池中由于两端温差引起的热毛细对流的温度振荡临界条件.在实验室中,设计了一个高分辨率的温度测量系统,用于实时观测并记录流体的温度.该系统主要由热电偶温度传感器、纳伏表和数据采集电脑3部分组成.得到了各种实验条件下温度振荡的临界条件,并且讨论了它与Prandtl数和Bond数之间的关系.利用flow3d软件数值模拟了微重力条件下的热毛细对流,发现了一种由于自由面变形和液层流场相互作用导致的晃荡的现象.  相似文献   

4.
为研究低Prandtl数(Pr)流体热毛细对流演化过程,对环形浅液池内Pr=0.011的流体热毛细对流进行三维数值模拟.研究发现:当Marangoni数较小时,流动为轴对称稳态流动;当Marangoni数超过某一临界值后,流动失稳并转变为热流体波,其波数随Marangoni数增加而减小,而波动主频增大;随着Marangoni数增加,流动加强,沿周向运动的热流体波演变为沿径向运动的径向波,其波数大大减小;当Marangoni数继续增加时,波动频谱曲线噪声增加,呈广谱特性.因此,在计算范围内热毛细对流的演化过程为:轴对称稳态流动-热流体波-单周期径向波-多周期三维振荡流动.   相似文献   

5.
池沸腾现象中热毛细对流的成因   总被引:1,自引:1,他引:0  
针对微重力条件下单组份液体池沸腾现象,探讨了有关热毛细效应作用及其成因的不同观点,指出正确描述气液相变界面两侧的温度关系是解决争议的关键.详细评述了现有的气液相变界面温度模型,发现气液相变的非平衡特征会导致气液界面上产生温度梯度,引起表面张力的显著差异,从而驱动热毛细对流的形成.但现有气液相变界面温度模型机理差异迥然,预测结果也差别很大,因此,需要更深入研究.   相似文献   

6.
原子氧是低地球轨道环境中对航天器影响较为严重的因素之一. 为了提高聚酰亚胺薄膜抗原子氧侵蚀的性能, 依据结构与性能的关系, 设计合成了新型的聚酰亚胺薄膜. 采用这种新型聚酰亚胺薄膜制备了二次表面镜, 利用地面模拟设备对热控涂层进行原子氧暴露试验, 结果表明其具有优异的耐原子氧侵蚀性能. 此外, 真空elax-elax紫外、真空elax-elax质子、真空elax-elax电子辐照等空间环境模拟试验表明, 这种耐原子氧聚酰亚胺薄膜二次表面镜热控涂层具有良好的空间稳定性.   相似文献   

7.
利用非模态稳定性方法研究了亚临界情况下的热毛细液层对初始扰动和外加激励的敏感性.通过瞬态增长函数和反馈函数分别反映流场对初始扰动和外加激励的放大.研究结果表明, 小Prandtl数(Pr)下的亚临界流动对初始扰动和外加激励均十分敏感,最大扰动放大与Reynolds数(Re)的平方近似成正比.在大Pr下,只有回流的亚临界...  相似文献   

8.
环路热管复合芯传热与流动特性分析   总被引:1,自引:0,他引:1  
环路热管是目前航天器热控制领域最前沿的热控技术之一,而高性能的毛细芯是其高效可靠运行的保证.为不断提升毛细芯的综合性能,目前毛细芯由单一结构向着复合结构发展.建立了圆柱型蒸发器环路热管应用的双层复合结构毛细芯的数学模型,对其传热与流动特性进行了分析,重点考察了热载荷以及复合芯内外层厚度比的影响,并同单一结构的毛细芯进行了比较.分析结果表明:复合芯在获得高的毛细抽吸力和蒸发效率的同时,可实现低的流通阻力与径向热导,其传热与压降特性明显优于单层芯,是高性能毛细芯的发展趋势;当复合芯的整体尺寸一定时,复合芯内外层的厚度比越大,复合芯的径向热导和流通阻力越小,有利于提高环路热管的运行性能.  相似文献   

9.
为了给太阳模拟器系统热管理提供可靠的技术依据,研究了准直光学系统热变形对系统性能的影响。选取项目组自主研发的高精度太阳模拟器准直光学系统作为研究对象,利用有限元软件仿真实际工作条件下各光学元件表面温度及热变形分布,将通光表面变形数据拟合为泽尼克系数导入光学设计软件中,分析热变形对系统准直角误差及辐照均匀度影响。研究结果表明:在未采取温控措施的自然对流条件下,热变形造成±1′的准直角误差和41.3%的辐照不均匀度,超出允许范围,需进行温控。通过光机集成分析法,给出了不同温度下,对流系数与热变形导致的准直角误差和辐照不均匀度对应关系,为风冷温控系统工程化设计提供了依据。  相似文献   

10.
全玻璃真空管型太阳热水器内流场的CFD模拟   总被引:2,自引:0,他引:2  
全玻璃真空管型太阳热水器是技术相对成熟、应用最广的太阳能利用方式.通过对全玻璃真空管型太阳热水器内流场的计算流体力学模拟,研究了器内的对流换热过程,分析了真空管截面的流体流动速度分布,考察了真空管不同位置处的流体循环速度及箱体内水温对循环速度的影响.结果表明,随着流体温度的升高,器内出现随机的湍动涡流;涡流的存在将造成管内冷热流体的混和,对换热过程不利;在真空管内安置引流挡板将抑制流体的湍动,确保有序的热对流流动,提高对流换热效率.研究结果有助于剖析热水器内对流换热的机理,对技术革新提供参考.   相似文献   

11.
Thermocapillary convection has been studied in n-heptanol aqueous solutions whose surface tension is increasing with the temperature.

The fluid was confined in a parallelipipedic enclosure and a thermal gradient was imposed parallel to the free liquid/gas interface. The motions induced by the thermocapillary forces have been studied under low gravity conditions during Texus sounding rocket experiments and during the Spacelab D1 mission.

The combined thermocapillary and buoyancy convection have been extensively studied during ground based experiments.

The influence of the aspect ratio and of the alcohol concentration were investigated. Detailed velocity field was determined at the steady state under normal gravity conditions by Laser Doppler Anemometry (LDA).

The aspect ratio was of 0.3 and the temperatures imposed to the lateral sides of the cell were respectively 45°C and 60°C. With these experimental conditions, two superposed contrarotative cells were observed with rapid motions in the surface from the cold to the hot side. This convective pattern was also observed during the normal and high gravity periods of parabolic flights but during the low gravity period of the parabola the motions stopped everywhere in the fluid even in the surface and reappeared immediatly at the pull out of the parabola.  相似文献   


12.
We give the first full analysis of the microgravity experiment MKB ( arangoni onvektion im offenen oot) conducted on board of the space shuttle during the D1-mission in 1985, together with that of some ground based experiments on thermocapillary flow in a rectangular liquid volume with free upper surface. Streamlines and velocity profiles under μ-g and l-g are presented and discussed. Strong thermocapillary flow was observed under μ-g after the rupture of a dirt-film suppressing surface tension forces. The Nusselt-number under microgravity due to thermocapillary flow for Ma = 4.6 · 105 is at least Nu = 6 ± 1. Under l-g a separation of the surface tension driven convection roll of hot fluid circulating on top of colder fluid was found for large Ma. The coupling and decoupling of buoyant and thermocapillary forces has been further studied in an experiment varying the temperature gradient along the free surface independently from that in the bulk fluid.  相似文献   

13.
We have investigated experimentally and theoretically the thermocapillary convec tive flow phenomena in a loop-shaped Pt wire heater of KNbO3 (20wt.%) and Li2B4O7 solutions. Optical evaluations in connection with thermocouple measure ments made it possible to get a new type of thermocapillary convective flow in the considered system. To study the kinematical behaviour of thermocapillary convec tion, we have measured the stream flow velocities. In a theoretical analysis, the flow velocity due to the thermocapillary effect alone was estimated by balancing the sur face tension forces by viscous forces. The velocity distribution in the solution near the margin of the heater was obtained, which is in agreement with the experimental result.  相似文献   

14.
The thermocapillary convection in a floating zone becomes oscillatory, exceeding a Marangoni number of approximately 104. The oscillatory state of thermocapillary convection has been verified under 1 g and 10?4 g and the features seem to be fairly independent of the gravity level. The transition point from the laminar to the oscillatory state (critical Marangoni number), however, depends on the magnitude and direction of the buoyant force.  相似文献   

15.
环形液池热毛细对流的线性稳定性研究   总被引:1,自引:1,他引:0       下载免费PDF全文
对外壁加热的环形液池热毛细对流进行了线性稳定性分析.采用Chebyshev配点法对Pr=6.8、内外径之比为0.5、深宽比A范围为0.25~1.4的数值结果进行分析,发现流动的临界状态均为振荡形式,并且随着A的增大,临界雷诺数减小,相应的临界波数与振荡频率也呈减小趋势.能量分析结果表明,小扰动与基本流相互作用项较小,表面张力在径向做功与周向做功对小扰动的动能变化起主导作用.观察三者与液池深宽比的关系,发现A=0.8时表面张力在径向做功项达到极小值,周向做功项以及小扰动与基本流相互作用项达到极大值.   相似文献   

16.
For understanding of the influence of convective flow on crystal growth, space high temperature in situ observation instrument (SHITISOI) is dedicated to visualize and record the whole growth process of oxide crystals in high temperature up to 1000°C. Model experiments using transparent liquids such as KNbO3 and a mix ture of Li2B4O7+KNbO3 were chosen to investigate effects on ground and in space.On the earth, an investigation of growth kinetics of KNbO3 crystal related to two different states of convection: diffusive-advective flow and diffusive-convective flow,has been performed. The per unit length of a step e is calculated from the exper imental data for two different states of convection. Analyses of these data show the effect of buoyancy convection is to enhance the sharpness of the interface. The growth of KNbO3 crystals from solution of KNbO3+Li2B4O7 was investigated in space. The streamlines of the steady thermocapillary convection in Li2B4O7 solvent was observed. Due to thermocapillary convection, KNbO3 crystal grains grew and filled the whole solution homogeneously. Earth-based quenching experiments are de signed in order to study polyhedral instability of KNbO3 crystal, which is controlled by diffusion mechanism limitation. In all cases, when the crystal was nucleated near air/solution surface, it lost its polyhedral stability and varied from polyhedrons to dedrites. The thickness of diffusion mechanism limitation layer is about 60μm.  相似文献   

17.
基于VOF方法建立了不同重力条件下水平管内气液两相流动的三维非稳态数学模型并进行了数值求解, 研究了10-4g0, 0.17g0, 0.38g0, 1g0 (g0=9.8m·s-2)四种重力条件下水平管内气液两流型及变化规律, 比较了不同重力条件下管内截面空隙率的分布和波动规律. 研究结果表明, 该模型能够正确预测不同重力条件下水平管内气液两相流的流型、截面空隙率和滑速比等重要参数; 同一气液两相表观速度工况下, 随着重力水平的升高, 气相更容易在水平管的上部积聚合并, 致使流型发生变化, 同时, 气液两相滑速比增大, 截面空隙率波动峰值的平均值下降, 波动频率降低; 而随着气液两相表观速度的增大, 两相混合工质内惯性力作用也随之增强, 这将削弱重力变化的影响.   相似文献   

18.
为研究重力对小通道冷凝过程的影响,采用VOF模型对制冷剂R134a在水平放置的边长1mm方形截面小通道内的冷凝换热过程进行数值模拟.模拟过程考虑重力、表面张力和界面剪切力的综合作用,表面张力采用CSF模型.结果表明:重力对矩形小通道冷凝换热的影响不明显,蒸气在通道横截面上呈近似圆形分布;通道较短时重力对液膜的汇聚作用不明显,达到一定长度后重力作用凸显.研究结果为天舟一号货运飞船搭载的蒸发与冷凝科学实验研究项目冷凝空间实验方案设计提供了理论依据.   相似文献   

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