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Numerical study and correlations for heat and mass transfer coefficients in indirect evaporative coolers with condensation based on orthogonal test and CFD approach

机译:基于正交试验和CFD方法的间接蒸发冷却器热输出系数的数值研究与相关性

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摘要

Previous studies obtained the heat and mass transfer coefficients of Indirect evaporative coolers (IECs) with condensation based on the following assumptions: (1) empirical equations in the dry channel without water evaporation or condensation, or the boundary condition is assumed to be a constant surface heat flux or temperature so that constant values of Nusselt number can be employed for evaluating the heat transfer coefficient; and (2) Lewis number is assumed to be unity so that the mass transfer coefficients can be then calculated via the heat and mass transfer analogy. Thus far, the heat and mass transfer coefficients of IECs with condensation under naturally formed boundary condition are lacking. In this paper, an experimental-validated computational fluid dynamics (CFD) model has been established to investigate the heat and mass transfer processes of IECs incorporating the phenomenon of condensation. A single factor analysis and a multiple factor analysis are concurrently carried out to evaluate the effects of the nine parameters on the heat and mass transfer processes of IECs. Key findings revealed that both mean Nusselt and Sherwood numbers under the presented conditions are larger than those obtained under constant surface temperature and heat flux conditions; and the respective values of the primary and secondary Lewis numbers are observed to change from 0.37 to 0.75 and 0.70 to 0.85 which severely deviate from the conventional assumed value of unity. Finally, empirical correlations are developed for the mean heat and mass transfer coefficients based on an orthogonal test method. The simplified linear correlations can serve as new fundamental references to account for IEC that are consistently experiencing with condensation.
机译:以前的研究基于以下假设基于以下假设的缩合获得了间接蒸发冷却器(IECS)的热量和质量传递系数:(1)干通道中的经验方程,没有水蒸发或冷凝,或者假设边界条件是恒定的表面热通量或温度,使得可以采用果实数的恒定值来评估传热系数; (2)刘易斯数被认为是统一的,因此可以通过热量和传质谱来计算传质系数。到目前为止,缺乏自然形成的边界条件下具有冷凝的IEC的热量和传质系数。在本文中,已经建立了实验验证的计算流体动力学(CFD)模型,以研究IECS掺入缩合现象的IEC的热量和传质过程。同时进行单个因子分析和多因素分析,以评估九个参数对IECS热量和传质过程的影响。主要发现显示,在呈现的条件下的平均鼻腔和舍伍德数大于恒定表面温度和热通量条件下的谢尔伍德数量;并且观察到初级和次级Lewis编号的各个值,从0.37到0.75和0.70到0.85,这严重偏离了传统的统一值。最后,基于正交试验方法对平均热量和传质系数开发了经验相关性。简化的线性相关性可以作为新的基本引用,以考虑IEC,这始终如一地遇到凝结。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第6期|119580.1-119580.17|共17页
  • 作者单位

    Department of Mechanical Engineering National University of Singapore 9 Engineering Drive 1 Singapore 117575 Singapore;

    Department of Mechanical Engineering National University of Singapore 9 Engineering Drive 1 Singapore 117575 Singapore;

    Department of Mechanical Engineering National University of Singapore 9 Engineering Drive 1 Singapore 117575 Singapore;

    Institute of Building Environment and Sustainable Technology School of Human Settlements and Civil Engineering Xi'an Jiaotong University Xi'an Shaanxi 710049 China;

    The Key laboratory of Enhanced Heat Transfer and Energy Conservation of Ministry of Education College of Environmental and Energy Engineering Beijing University of Technology 100 Pingleyuan Chaoyang District Beijing 100124 China;

    Department of Mechanical Engineering National University of Singapore 9 Engineering Drive 1 Singapore 117575 Singapore;

  • 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

    Numerical study; Indirect evaporative coolers; Coupled heat and mass transfer; Condensation;

    机译:数值研究;间接蒸发冷却器;耦合热量和传质;缩合;

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