首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EFFECT OF WALL THERMAL BOUNDARY CONDITIONS ON THE DEVELOPMENT OF THREE-DIMENSIONAL, UNSTEADY NATURAL CONVECTIVE FLOW IN A HORIZONTAL ENCLOSURE WITH A HEATED STRIP ON THE LOWER SURFACE
【24h】

EFFECT OF WALL THERMAL BOUNDARY CONDITIONS ON THE DEVELOPMENT OF THREE-DIMENSIONAL, UNSTEADY NATURAL CONVECTIVE FLOW IN A HORIZONTAL ENCLOSURE WITH A HEATED STRIP ON THE LOWER SURFACE

机译:壁热边界条件对水平外壳三维,不稳定自然对流流动发展的影响,下表面加热条带

获取原文

摘要

Flow in a rectangular enclosure with a square vertical cross section normal to the longitudinal coordinate direction and having a strip on the lower horizontal surface which is heated to a uniform high temperature has been numerically studied. Two wall thermal boundary conditions have been considered. In one, the longitudinal vertical side walls are cooled to a uniform low temperature and the horizontal top surface is adiabatic while in the other the longitudinal vertical side walls and the horizontal top surface are cooled to a uniform low temperature. In both cases, the square vertical end walls of the enclosure are adiabatic. It has been assumed that the flow is laminar and that the fluid properties are constant except for the density change with temperature which gives rise to the buoyancy forces. The unsteady, three-dimensional governing equations, expressed in dimensionless form, have been solved using a finite-difference procedure. The solution was started with no flow in the enclosure. The solution, in general, has the following parameters: the Rayleigh Number, Ra, the Prandtl number, Pr, the dimensionless longitudinal length of the enclosure relative to the size of the square cross-section, A{sub}y, the dimensionless width of the heated strip on the lower surface relative to the size of the square cross-section, wH, and the thermal boundary condition on the upper surface. Results have only been obtained for a Prandtl number of 0.7 and only results for ωH = 1/3 will be presented. Results have been obtained for values of A{sub}y between 0.5 and 2 for Rayleigh numbers up to 5×10{sup}5. In all cases, three-dimensional unsteady flow has been found to exist at the higher Rayleigh numbers. The conditions under which this unsteady flow develops and the effect of A{sub}y on the variation of the mean Nusselt number with Rayleigh number and the effect of the wall surface boundary condition on these results has been investigated.
机译:在矩形外壳中的流动,具有正常的横截面,正常坐标方向,并且在下水平表面上具有向均匀的高温加热到均匀的高温的条带。已经考虑了两个壁热边界条件。在一个中,将纵向垂直侧壁冷却到均匀的低温,水平顶表面是绝热的,而在另一个纵向垂直侧壁中,水平顶表面冷却至均匀的低温。在这两种情况下,外壳的方形垂直端壁是绝热的。已经假设流动是层状,除了具有温度的密度变化之外,流体性质是恒定的,这导致浮力力。使用有限差异程序解决了以无量纲形式表示的不稳定三维控制方程。在外壳中没有流动开始溶液。一般而言,解决方案具有以下参数:瑞利数,RA,Prandtl编号,Pr,外壳的无量纲纵向长度相对于方横截面的大小,{sub} y,无量纲宽度在下表面上的加热条相对于上表面上的方形横截面,WH的尺寸和热边界条件的尺寸。结果仅针对0.7的Prandtl编号获得,并且仅呈现ωH= 1/3的结果。已经获得了0.5至2的{sub} y的值,用于瑞利数为5×10 {sup} 5。在所有情况下,已发现三维非稳态流量在较高的瑞利数中存在。研究了该不稳定流动的条件和{Sub} Y对具有瑞利数的平均露珠数的变化的效果以及壁面边界条件对这些结果的效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号