...
首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Numerical analysis of compact plate-fin heat exchangers for aerospace applications
【24h】

Numerical analysis of compact plate-fin heat exchangers for aerospace applications

机译:航空航天应用紧凑型板翅式换热器的数值分析

获取原文
获取原文并翻译 | 示例

摘要

Purpose - The purpose of this study is to find the thermo-hydraulic performances of compact heat exchangers (CHE's), which are strongly depending upon the prediction of performance of various types of heat transfer surfaces such as offset strip fins, wavy fins, rectangular fins, triangular fins, triangular and rectangular perforated fins in terms of Colburn "j" and Fanning friction"j" factors. Design/methodology/approach - Numerical methods play a major role for analysis of compact plate-fin heat exchangers, which are cost-effective and fast This paper presents the on-going research and work carried out earlier for single-phase steady-state heat transfer and pressure drop analysis on CHE passages and fins. An analysis of a cross-flow plate-fin compact heat exchanger, accounting for the individual effects of two-dimensional longitudinal heat conduction through the exchanger wall, inlet fluid flow maldistribution and inlet temperature non-uniformity are carried out using a Finite Element Method (FEM). Findings - The performance deterioration of high-efficiency cross-flow plate-fin compact heat exchangers have been reviewed with the combined effects of wall longitudinal heat conduction and inlet fluid flow/ temperature non-uniformity using a dedicated FEM analysis. It is found that the performance deterioration is quite significant in some typical applications due to the effects of wall longitudinal heat conduction and inlet fluid flow non-uniformity on cross-flow plate-fin heat exchangers. A Computational Fluid Dynamics (CFD) program FLUENT has been used to predict the design data in terms of "j" and T factors for plate-fin heat exchanger fins. The suitable design data are generated using CFD analysis covering the laminar, transition and turbulent flow regimes for various types of fins. Originality/value - The correlations for the friction factor "f" and Colburn factor "j" have been found to be good. The correlations can be used by the heat exchanger designers and can reduce the number of tests and modification of the prototype to a minimum for similar applications and types of fins.
机译:目的-这项研究的目的是找到紧凑型热交换器(CHE's)的热工水力性能,这在很大程度上取决于对各种类型传热表面的性能的预测,例如偏置条状翅片,波浪状翅片,矩形翅片,Colburn的j系数和Fanning摩擦的j系数的三角形和矩形穿孔翅片。设计/方法/方法-数值方法在紧凑型板翅式换热器的分析中起着重要作用,这种方法成本高效且快速。本文介绍了单相稳态热的正在进行的研究和较早开展的工作CHE通道和散热片的传递和压降分析。使用有限元方法对横流板翅式紧凑型换热器进行了分析,考虑了通过换热器壁的二维纵向热传导,入口流体流量分布不均和入口温度不均匀性的单独影响(有限元)。研究发现-高效的横流板翅式紧凑型换热器的性能下降已通过专门的FEM分析结合了壁纵向热传导和入口流体流量/温度不均匀性的综合影响进行了评估。发现在某些典型应用中,由于壁纵向热传导和入口流体流动不均匀性对错流板翅式换热器的影响,性能下降非常明显。计算流体动力学(CFD)程序FLUENT已用于根据板翅式换热器翅片的“ j”和T因子来预测设计数据。适当的设计数据是使用CFD分析生成的,其中涵盖了各种类型鳍片的层流,过渡和湍流状态。创意/价值-摩擦系数“ f”和科尔本系数“ j”的相关性很好。关联关系可以由热交换器设计人员使用,并且可以将测试次数和原型的修改次数减少到最少,以用于类似应用和鳍片类型。

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