首页> 外文期刊>Journal of Heat Transfer >Porous Medium Interconnector Effects on the Thermohydraulics of Near-Compact Heat Exchangers Treated as Porous Media
【24h】

Porous Medium Interconnector Effects on the Thermohydraulics of Near-Compact Heat Exchangers Treated as Porous Media

机译:多孔介质互连对作为多孔介质处理的近紧凑型换热器热工水力的影响

获取原文
获取原文并翻译 | 示例
           

摘要

A novel approach of treating near-compact heat exchangers (NCHX) (surface to volume ratio, α = 100-300 m~2/m~3 with hydraulic diameter D_M~6 mm) as a "global" porous media, whose thermohydraulic performance is being influenced by the presence of "local" tube-to-tube porous medium interconnectors, connecting the in-line arrangement of tubes (D = 2 mm) having square pitch of X_T=X_L=2.25, is investigated in this study using numerical methods. The thermohydraulics of the global porous media (NCHX) are characterized by studying the effect of transverse thickness (δ) and permeability (represented by Da_i) of the local metal foam type porous medium interconnectors on the global heat transfer coefficient (Nu) and nondimensional pressure drop (ξ). The fluid transport in the porous medium interconnectors is governed by the Brinhnan-Darcy flow model while the volume averaged energy equation is used to model energy transport, with the tube walls kept at constant temperature and exchanging heat with the cooling fluid having Pr=0.7 under laminar flow (10 < Re < 100). For the chosen NCHX configuration, ξ and Nu increases for an increase in Re and also with an increase in the thickness (δ) of the interconnecting porous medium. However, as the local Darcy number (Da_i) of the interconnecting porous medium increases, the ξ decreases but the Nu increases. Treating the heat exchanger as a global porous media this result translates to an increase in the ξ and Nu as the global permeability (represented by Da_g) decreases, where the decrease in Da_g is because of either an increase in S or a decrease in Da_i. Separate correlations predicting ξ and Nu as a function of Re and Da_g (which in turn is correlated to δ and Da_i) have been developed for the chosen NCHX configuration, both of which predict the numerical data with ±20% accuracy.
机译:一种将近紧凑型换热器(NCHX)(表面与体积比,α= 100-300 m〜2 / m〜3,水力直径D_M〜6 mm)作为一种“整体”多孔介质的新方法,其热工性能受“局部”管对管多孔介质互连器的影响,在本研究中,使用数值方法研究了连接方距为X_T = X_L = 2.25的管(D = 2 mm)的管线排列方法。通过研究局部金属泡沫型多孔介质互连件的横向厚度(δ)和渗透率(以Da_i表示)对整体传热系数(Nu)和无量纲压力的影响来表征整体多孔介质(NCHX)的热工液压下降(ξ)。多孔介质互连器中的流体传输受Brinhnan-Darcy流模型控制,而体积平均能量方程式则用于对能量传输进行建模,其中管壁保持恒定温度,并与在Pr = 0.7下的冷却流体进行热交换。层流(10

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