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Effects of geometrical parameters on the thermohydraulic characteristics of periodic cross-corrugated channels

机译:几何参数对周期性交叉波纹通道热工水力特性的影响

摘要

Ventilation air heat recovery used in building energy conservation involves simultaneous heat and moisture/ mass transfer and is characterized with small temperature and moisture partial pressure differences. It is critical to consider the trade-offs between heat and mass transfer effectiveness and pressure loss. This study is the exploration of using numerical heat transfer analysis for this purpose. Simulations are performed to study the geometric effect on thermohydraulic characteristics of a periodic cross-corrugated channel for the Re range of 200-3000. The effect of Apex angle and aspect ratio on heat transfer, pressure drop and thermohydraulic performance in the corrugated channel is investigated. To accurately predict the transitional flow in the topology, a model performance evaluation is conducted in two steps through the cross comparisons between predictions and related correlations (or experiment results). Of the seven turbulence models selected, the Reynolds stress model fits the correlation and experiment the best and thus is employed for comparative study. The results show that the Apex angle strongly influence the heat transfer and pressure loss in a triangular cross-section corrugated channel. For the purpose of heat transfer enhancement, cross-corrugated triangular channels at the 90¢X and 120¢X Apex angles are recommended. The aspect ratio has a relatively greater impact on flow frictional loss, compared to its effect on the heat transfer for the studied cases. For this flow regime, the cross-corrugated triangular duct with the Apex angle of 150¢X is shown to be the optimum choice over all the studied channels. The JF factor is enhanced by 4.1-7.0 times that in a triangular channel with Apex angle of 90¢X.
机译:建筑节能中使用的通风空气热量回收涉及热量和水分/质量的同时传递,并且具有较小的温度和水分分压差。考虑传热和传质效率与压力损失之间的权衡至关重要。这项研究是为此目的使用数值传热分析的探索。进行仿真以研究Re范围为200-3000的周期性交叉波纹通道对热工液压特性的几何影响。研究了顶角和长宽比对波纹通道内传热,压降和热工液压性能的影响。为了准确地预测拓扑中的过渡流,通过对预测和相关性(或实验结果)之间的交叉比较,分两步进行模型性能评估。在选择的七个湍流模型中,雷诺应力模型符合相关性并进行了最佳实验,因此被用于比较研究。结果表明,Apex角强烈影响三角形截面波纹通道中的传热和压力损失。为了增强传热效果,建议使用90°X和120°X Apex角的交叉波纹三角通道。相较于研究案例,长宽比对流动摩擦损失的影响相对更大。对于这种流动方式,在所有研究的通道中,顶角为150°X的交叉波纹三角风管是最佳选择。在顶点角为90°的三角形通道中,JF因子提高了4.1-7.0倍。

著录项

  • 作者

    Liu XP; Niu JL;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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