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3D numerical simulation on the shell side heat transfer and pressure drop performances of twisted oval tube heat exchanger

机译:扭曲椭圆管式换热器壳侧传热与压降性能的3D数值模拟

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摘要

Twisted oval tube heat exchanger has been widely used in chemical industry field. In the present study, fluid flow and heat transfer characteristics in the shell side of this type of heat exchanger are studied numerically with Realized k-ε model. Influence of the geometrical parameters including twisted pitch length P and aspect ratio A/B on the performance of the shell side are analyzed. Results reflect that Nus-selt number and friction factor both increase with the increasing of P and A/B. Their influence on the shell side overall heat transfer performance h/ΔP is also analyzed. It is concluded that the overall heat transfer performance of the shell side increase with the increasing of A/B. But on the aspect of the influence of P, it firstly increases with the increasing of P and then decreases with the increasing of P. Velocity and temperature distributions, stream traces and secondary flow distributions are presented to make the fluid flow and heat transfer characteristics in the shell side clear at the end of the present work. The magnitudes of the total velocity at the self-supporting points are found to be lower and the temperatures are found to be higher than their neighborhoods. Spiral flow can be found in the shell side especially for the cases with A = 14 mm, B = 5 mm. The intensity of the spiral flow becomes more and more drastic with the increasing of A/B and the decreasing of P. Analysis of the secondary shows that the magnitude of the secondary flow increases with the increasing of A/B and decreases with the increasing of P. Irregular secondary flow can also be found around the helixes which are formed by the twisting of the oval sections.
机译:扭曲椭圆管式换热器已广泛应用于化工领域。在本研究中,利用实现的k-ε模型对这种热交换器的壳侧的流体流动和传热特性进行了数值研究。分析了包括扭曲节距长度P和长宽比A / B在内的几何参数对壳体性能的影响。结果表明,随着P和A / B的增加,Nut-selt数和摩擦系数均增加。还分析了它们对壳侧总传热性能h /ΔP的影响。可以得出结论,随着A / B的增加,壳侧的整体传热性能也随之提高。但是就P的影响而言,它首先随P的增加而增加,然后随P的增加而减小。呈现出速度和温度分布,流迹和二次流分布,以使P的流体流动和传热特性成为可能。在本工作结束时,外壳侧面将变得清晰。发现在自支撑点处的总速度的大小较低,并且发现温度高于其附近区域。尤其在A = 14 mm,B = 5 mm的情况下,在壳侧会出现螺旋流。螺旋流的强度随着A / B的增加和P的减小而变得越来越剧烈。二次流的分析表明,二次流的大小随A / B的增加而增加,随着A / B的增加而减小。 P.在椭圆形部分扭曲形成的螺旋线周围还可以发现不规则的二次流。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2013年第10期|244-253|共10页
  • 作者单位

    Key Laboratory of Pressure Systems and Safety of Ministry of Education, School of Mechanical and Power Engineering, East China University of Science and Technology,Shanghai 200237, PR China;

    Key Laboratory of Pressure Systems and Safety of Ministry of Education, School of Mechanical and Power Engineering, East China University of Science and Technology,Shanghai 200237, PR China;

    Key Laboratory of Pressure Systems and Safety of Ministry of Education, School of Mechanical and Power Engineering, East China University of Science and Technology,Shanghai 200237, PR China;

    Key Laboratory of Pressure Systems and Safety of Ministry of Education, School of Mechanical and Power Engineering, East China University of Science and Technology,Shanghai 200237, PR China;

  • 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

    Twisted oval tube heat exchanger; Shell side performance; Heat transfer characteristics; Fluid flow characteristic;

    机译:扭曲的椭圆管换热器;壳侧性能;传热特性;流体流动特性;

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