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1.
设计了用于水平磁场中锂膜流动铺展性及磁流体动力学效应研究的实验装置,介绍了所用磁铁、锂循环回路、动力系统、回路温控系统和测量系统五个组成部分。各部分加工完成,进行现场组装与回路调试,最后加入锂锭熔融后完成实验台搭建工作。利用该实验台研究了锂膜在不锈钢表面的铺展情况、锂膜表面形态与流动雷诺数的关系,以及磁场对液膜表面形态的影响等方面。结果发现液态锂膜在充分锂浸润的不锈钢表面能够完全铺展,水平磁场对锂膜流动有致稳作用,并且可以抑制磁场方向的表面波动。  相似文献   

2.
介绍了由锂回路、直线等离子体装置及液态锂净化系统等组成的液态锂综合实验回路平台。研究了液态锂与高密度等离子体相互作用、液态锂与结构材料相容性、液态锂净化和液态锂回路热工水力学参数测量等问题。实验结果表明,流动液态锂的蒸发速率与放电电流、氩气流量及磁场强度呈正相关关系。由流动液态锂产生的锂蒸气在轴向分布不具规律性,在径向分布呈高斯分布。流动液态锂的蒸发速率随着实验时间的增长逐渐升高,并趋于稳定。磁场抑制了液态锂的流动性。在磁场和等离子体长时间的作用下,流动液态锂表面生成一层很薄的氧化锂。  相似文献   

3.
通过数值模拟及实验研究了润湿性及磁场对液态金属膜流流动状态的影响。首先,通过数值模拟研究了润湿性对膜流流动状态的影响。结果表明,当润湿性不好时,液态金属膜流容易发展为溪状流而不能完全覆盖底壁,入口膜厚较薄时更易发展为溪状流;在入口膜厚及其它情况相同时,密度越小越易发展为溪状流。其次,研究了磁场对膜流流动状态的影响。结果表明,槽道与流体润湿性不好时,有磁场情况下液态金属膜流覆盖底壁的区域较无磁场时增加,强磁场对膜流的湍流有抑制作用。最后,液态金属膜流实验结果表明,润湿性不好时,镓铟锡合金膜流容易收缩发展为溪状流,这与数值模拟的结果是一致的。上述研究结果对磁约束聚变堆液态第一壁的设计具有指导意义。  相似文献   

4.
通过数值模拟及实验研究了润湿性及磁场对液态金属膜流流动状态的影响.首先,通过数值模拟研究了润湿性对膜流流动状态的影响.结果表明,当润湿性不好时,液态金属膜流容易发展为溪状流而不能完全覆盖底壁,入口膜厚较薄时更易发展为溪状流;在入口膜厚及其它情况相同时,密度越小越易发展为溪状流.其次,研究了磁场对膜流流动状态的影响.结果表明,槽道与流体润湿性不好时,有磁场情况下液态金属膜流覆盖底壁的区域较无磁场时增加,强磁场对膜流的湍流有抑制作用.最后,液态金属膜流实验结果表明,润湿性不好时,镓铟锡合金膜流容易收缩发展为溪状流,这与数值模拟的结果是一致的.上述研究结果对磁约束聚变堆液态第一壁的设计具有指导意义.  相似文献   

5.
为研究液态锂在电磁驱动限制器表面的铺展特性,设计了与EAST限制器接口相同的限制器测试平台。该平台运行时真空环境可达10-4Pa,对被测限制器可加热至350℃。在限制器锂回路管道上,利用外部2T水平磁场以及竖直方向施加的最大为200A的直流电流,形成电磁驱动力驱动下的锂液循环回路。测试平台设有顶部和正面两个观察窗,能够在可视化条件下,完成液态锂限制器的铺展性测试实验。基于该测试平台,对首次设计的双通路液态锂限制器,研究了不同实验温度和驱动电流下液态锂在限制器表面的流动铺展情况。结果发现,锂的流量和限制器表面结构是影响锂液铺展的主要因素。  相似文献   

6.
肖玮  尹辑文 《发光学报》2003,24(2):120-124
研究了磁场中液氦薄膜表面电子与涟波子强耦合和弱耦合的性质。采用线性组合算符方法导出磁场中液氦薄膜表面电子 涟波子系统的振动频率和基态能量。讨论磁场对表面电子 涟波子系统的振动频率和基态能量的影响。  相似文献   

7.
Three-dimensional interfacial waves developing on the free surface of falling liquid films are known to intensify heat and mass transfer. In this context, the present paper studies the effect of electrostatic as well as of thermo-capillary forces on a falling film of a dielectric liquid. Therefore, measurements of the local film thickness using a confocal chromatic imaging method were performed under isothermal and heated conditions. The experimental results show that both forces destabilize the flow. It is found, that the application of an additional electric field under heating conditions enhances the generation of rivulets, thereby reducing the overall heat transfer coefficient.  相似文献   

8.
水平管外降膜流动液膜厚度的测量及分析   总被引:5,自引:0,他引:5  
应用双极电导探针技术对水平管外无传热时的降膜流动的液膜厚度分布及其变化特性进行了实验研究.试验段水平管管径为φ25.4mm,长为300mm,液膜流量范围为Q=50~250L.h-1,水平管之间的垂直管间距分别为25mm,32mm,40mm.测量了不同流量、管间距变化条件下的液膜厚度分布,重点分析了流址变化、管间距变化、...  相似文献   

9.
姜欢  段俐  康琦 《中国物理 B》2017,26(11):114703-114703
This article presents the experimental investigation on instabilities of thermocapillary-buoyancy convection in the transition process in an open rectangular liquid layer subject to a horizontal temperature gradient. In the experimental run,an infrared thermal imaging system was constructed to observe and record the surface wave of the rectangular liquid layer. It was found that there are distinct convection longitudinal rolls in the flow field in the thermocapillary-buoyancy convection transition process. There are different wave characterizations for liquid layers with different thicknesses. For sufficiently thin layers, oblique hydrothermal waves are observed, which was predicted by the linear-stability analysis of Smith Davis in 1983. For thicker layers, the surface flow is distinct and intensified, which is because the buoyancy convection plays a dominant role and bulk fluid flow from hot wall to cold wall in the free surface of liquid layers. In addition, the spatiotemporal evolution analysis has been carried out to conclude the rule of the temperature field destabilization in the transition process.  相似文献   

10.
The effects of melt flow driven by a travelling magnetic field (TMF) on solidification structures of Sn–1.8 wt.% Cd peritectic alloy have been investigated numerically and experimentally. Numerical results indicate that the flow velocity at the solid–liquid interface under a downward TMF is smaller than that under an upward TMF. The experimental results show that the growth directions of dendrites are chaotic, and several crotches among the dendrites are observed at the solid–liquid interface in the case of no field. It is concluded from TMF results that the ordered growth of dendrites at two different directions occurs, and only one crotch among the dendrites appears at the solid–liquid interface. The location of the crotch gradually approaches the interface center with increasing magnetic field intensity (B≤10.3 mT). Moreover, the growth of high-order branches occurs at the crotch under a downward TMF. A simple model is established for explanation and it well corresponds to the experimental results.  相似文献   

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