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Optimal Cooling Channel Layout in a Hot Enclosure Subject to Natural Convection

机译:自然对流条件下热机壳中的最佳冷却通道布局

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摘要

We analyzed the optimal cooling channel layouts emerged from minimizing the total entropy generation ST and mean enclosure temperature T in a hot enclosure subject to natural convection. The conservation of mass, momentum, and energy were solved numerically in two-dimensional (2D) space using the finite element method, and an ant colony optimization algorithm was employed to determine the optimal layouts with respect to the number of cooling channels (N) and Rayleigh number (Ra). The total allocatable cooling channel area was fixed in all cases and thus each channel area decreased with increasing N. Subsequently, we examined the heat transfer and flow characteristics based on temperature field, streamlines, and local Bejan number of each optimum and deduced the following: (1) All optimal channel layouts were symmetric about the vertical enclosure centerline; however, the optima resulting in S-T,S-min and (T) over bar (min) did not always coincide and depended heavily on the flow configuration dictated by N and Ra; (2) the competing nature between heat transfer and its irreversibility was pronounced at low Ra and N when convection and fluid friction were ineffective; and (3) the first and second law performance improved as N increased in most cases. Furthermore, results verified the global convergence and robustness of the ant colony optimization approach in solving a layout optimization problem with pure natural convection.
机译:我们分析了在自然对流条件下,热箱中的总熵产生ST和平均箱体温度T最小化而产生的最佳冷却通道布局。使用有限元方法在二维(2D)空间中以数值方式解决了质量,动量和能量守恒问题,并采用蚁群优化算法来确定关于冷却通道数量(N)的最佳布局和瑞利数(Ra)。在所有情况下,总可分配的冷却通道面积都是固定的,因此每个通道面积都随着N的增加而减小。随后,我们根据温度场,流线和每个最优值的局部Bejan数检查了传热和流动特性,并得出以下结论: (1)所有最佳通道布局均围绕垂直外壳中心线对称;然而,导致S-T,S-min和(T)超过bar(min)的最优值并不总是一致的,并且在很大程度上取决于N和Ra决定的流量配置。 (2)当对流和流体摩擦无效时,在低Ra和N下传热与不可逆性之间的竞争性很明显。 (3)在大多数情况下,第一定律和第二定律的性能随着N的增加而提高。此外,结果验证了蚁群优化方法在解决具有自然对流的布局优化问题中的全局收敛性和鲁棒性。

著录项

  • 来源
    《Journal of Heat Transfer》 |2019年第11期|112502.1-112502.12|共12页
  • 作者

    Yang Sam; Ordonez Juan C.;

  • 作者单位

    Florida State Univ Ctr Adv Power Syst Dept Mech Engn Tallahassee FL 32310 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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