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A numerical investigation of the convective heat transfer in confined channel flow past cylinders of square cross-section

机译:有限截面流经方形截面圆柱体的对流传热的数值研究

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摘要

A numerical investigation was conducted to analyze the unsteady flow and heat transfer characteristics for cylinders of square cross-section in a laminar channel flow The study focuses on differences in the drag, lift, and heat transfer coefficients for a single and tandem pair of cylinders due to the proximity to a channel wall. Both uniform and parabolic inlet velocity profiles are considered. The cases are calculated for a fixed cylinder Reynolds number of 500 and a Prandtl number of 0.7. The heated cylinder is held at a constant temperature and is initially centered in the channel. The eddy promoter has side dimensions one-half of the downstream cylinder and is placed at a fixed distance upstream. The upstream cylinder is either located midway between the top and bottom cylinder surfaces (inline) or it is centered on the top or bottom edges (offset) of the primary cylinder. The results show that the cylinder Nusselt number decreases for both single and inline tandem cylinders as they approach the wall in a parabolic flow but remain almost constant in a uniform flow. This is primarily due to the reduced mean velocity near the wall. The time-averaged drag coefficient decreases for both single and inline tandem cylinders as they approach the wall in a parabolic flow. The presence of the upstream cylinder significantly reduces the drag on the downstream cylinder when compared to that of a single cylinder but has little affect on the cylinder lift. Additionally, the overall cylinder Nusselt number increases slightly in both uniform and parabolic flows. The Strouhal number is much larger for an inline tandem pair than for a single cylinder for all cylinder positions. The amplitude of eddy-shedding induced oscillations is significantly dampened as the cylinder(s) approach the channel wall. Offsetting the eddy promoter causes a significant reduction in the heat transfer and a large increase in the drag coefficient for the channel-centered cylinder when compared to the inline tandem case. The offset cylinder is found to slightly reduce the overall heat transfer and increase the drag from the downstream heated cylinder for the other two cross-stream locations. The study also indicates that placing the eddy promoter in higher velocity fluid increases the Strouhal number of the downstream cylinder.
机译:进行了数值研究,以分析层流通道中正方形横截面的圆柱体的非定常流动和传热特性。该研究集中于单缸和串联缸对的阻力,升力和传热系数的差异。靠近通道壁。同时考虑了均匀的和抛物线的入口速度曲线。计算的情况是固定圆柱体的雷诺数为500,普朗特数为0.7。加热后的气缸保持在恒定温度,最初位于通道的中心。涡流促进器的侧面尺寸为下游圆柱的二分之一,并位于上游固定距离处。上游圆柱体位于顶部圆柱体表面和底部圆柱体表面之间(中间),或者位于主圆柱体的顶部或底部边缘(偏移)的中心。结果表明,单列串联缸和串联串联缸的Nusselt数均随着抛物线流动接近壁而减小,但在均匀流动中几乎保持恒定。这主要是由于壁附近的平均速度降低。当单列串联缸和串联串联缸以抛物线形式流向壁时,时间平均阻力系数都会减小。与单个气缸相比,上游气缸的存在显着降低了下游气缸上的阻力,但对气缸升程的影响很小。此外,在均匀流动和抛物线流动中,总圆柱Nusselt数都略有增加。对于所有串联位置,串联串联对的Strouhal数要比单个串联的大。当汽缸接近通道壁时,涡流脱落引起的振荡的幅度被显着衰减。与串联串联的情况相比,使涡流促进器抵消会导致通道中心圆柱体的传热显着减少,阻力系数大大增加。发现偏心缸稍微降低了总的传热,并增加了其他两个横流位置的下游加热缸的阻力。研究还表明,将涡流促进剂置于较高速度的流体中会增加下游气缸的Strouhal数。

著录项

  • 作者

    Rosales Jorge Luis;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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