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Simulation on heat transfer performances of hollow tube electric heaters with dual-side longitudinal flow

机译:双侧纵向流动中空管电加热器传热性能的仿真

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PurposeConventional electric heaters mostly use U-shaped electric heating tubes and the hollow tube electric heaters are new type ones that rely on the heat transfer tubes as heating elements. However, in the original design, the fluid flows through the annular gaps between the shell wall and the supporting plates, the chambers between supporting plates are generally stagnant zones. The purpose of study is to overcome these deficiencies.Design/methodology/approachA modified approach is proposed in which the heating tubes are surrounded by holes on the supporting plates, thus the stagnant flow zone can be eliminated and the heating surfaces of both inside and outside the tube can be fully used. Numerical simulations were carried out on four schemes of hollow tube electric heaters, i.e. plate blocked, countercurrent, parallel and split. The results show that the two schemes of parallel and split can reduce the temperature difference between the two sides of the fixed tube plate, and thus reduce thermal stress and prolong the service life.FindingsThe split scheme of electric heater has the highest comprehensive index, moderate heat transfer coefficient and minimum pressure drop on the shell side. Its average heat transfer coefficient and comprehensive index are, respectively, 15.7% and 52.9% higher and its average pressure drop and tube wall temperature are, respectively, 57.6% and 19 K lower than those of the original plate blocked scheme, thus it can be recommended as the best scheme of the hollow tube electric heaters.Originality/valueBased on the original design of hollow tube electric heater with plate blocked scheme, three plate perforated schemes were proposed and investigated. The thermal and flow features of the four schemes were compared in terms of heat transfer coefficient, pressure drop and comprehensive index h(o)center dot Delta p(o)(-1/3). The split scheme can reduce the temperature difference between two sides of the fixed tube plate with reduced thermal stress. It has moderate tube wall temperature and heat transfer coefficient, the smallest shell side pressure drop and the highest comprehensive index h(o)center dot Delta p(o)(-1/3), and it can be recommended as the optimal scheme.
机译:用品电气加热器主要使用U形电加热管,并且中空管电加热器是新型类型,依赖于传热管作为加热元件。然而,在原始设计中,流体流过壳壁和支撑板之间的环形间隙,支撑板之间的腔室通常是停滞的区域。研究的目的是克服这些缺陷。提出了一种缺点,其中提出了加热管在支撑板上的孔包围,因此可以消除停滞的流量区,在内部和外部的加热表面可以消除和加热表面管可以充分使用。在中空管电加热器的四个方案中进行了数值模拟,即板块阻塞,逆流,平行和分裂。结果表明,平行和分裂的两种方案可以降低固定管板两侧之间的温差,从而减少热应力并延长使用寿命。电加热器的分体式方案具有最高的综合指标,适中壳体侧的传热系数和最小压降。其平均传热系数和综合指数分别为15.7%和52.9%,其平均压降和管壁温度分别比原始板块堵塞方案低57.6%和19 k,因此可以是推荐作为中空管电加热器的最佳方案。在具有板堵塞方案的空心管电加热器上的原始设计上,提出并研究了三个板穿孔方案。在传热系数,压降和综合指数H(O)中心点Delta P(O)( - 1/3)方面比较了四种方案的热流和流量特征。分流方案可以降低固定管板的两侧之间的温差,其热应力降低。它具有中等管壁温度和传热系数,最小的壳侧压降和最高综合指数H(O)中心点DTTA P(O)( - 1/3),可以推荐为最佳方案。

著录项

  • 来源
    《Engineering Computations》 |2020年第7期|2213-2227|共15页
  • 作者单位

    Southeast Univ Sch Energy & Environm Nanjing Peoples R China|Minist Educ Engn Res Ctr BEEE Nanjing Peoples R China|Nanjing China Oversea Property Ltd Nanjing Peoples R China;

    Southeast Univ Sch Energy & Environm Nanjing Peoples R China|Minist Educ Engn Res Ctr BEEE Nanjing Peoples R China;

    Southeast Univ Sch Energy & Environm Nanjing Peoples R China|Minist Educ Engn Res Ctr BEEE Nanjing Peoples R China;

    Southeast Univ Sch Energy & Environm Nanjing Peoples R China|Minist Educ Engn Res Ctr BEEE Nanjing Peoples R 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

    Numerical simulation; Thermal stress; Electric heaters; Heat transfer performance; Hollow tubes;

    机译:数值模拟;热应力;电加热器;传热性能;空心管;

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