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首页> 外文期刊>Heat and mass transfer >Comparative study on the influence of depth, number and arrangement of dimples on the flow and heat transfer characteristics at turbulent flow regimes
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Comparative study on the influence of depth, number and arrangement of dimples on the flow and heat transfer characteristics at turbulent flow regimes

机译:湍流状态下酒窝的深度,数量和排列方式对流动和传热特性影响的比较研究

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摘要

The ensuing study is dedicated to a series of numerical investigations concerning the effects of various geometric parameters of dimpled plates on the flow structure and heat transfer performance in a rectangular duct compared to the smooth plate. These parameters are the arrangement, number and depth of dimples. Two widely used staggered and square patterns in addition to a triangular arrangement, and three dimple depths (Δ = δ/d = 0.25, 0.375 and 0.5) have been chosen for this particular study. All studies have been conducted at three different Reynolds numbers Re  = 25,000, 50,000 and 100,000. In order to capture the flow structures in the vicinity of dimples and contributing phenomena related to the boundary layer interactions, fully structured grids with y_(+) < 1 have been generated for all the cases. The realizable k ~( t ) -ε two-layer model was selected as a proper turbulent model. It can be observed from the obtained results that higher effective area for heat transfer and a myriad of turbulent vortices mixing the hot fluid near the surface with the passing cold fluid generated from the downwind rims of dimples are the causes for improved average Nusselt number in the dimpled surface in comparison to the smooth plate. However, more pressure loss due to the higher friction drag and recirculation zones inside dimples will exist as a drawback in this system. Moreover, for all arrangements increasing dimple ratio Δ has a negative impact on the heat transfer augmentation and also deteriorates the pressure loss, which leads to this fact that Δ = 0.25 serves as the best option for the dimple depth.
机译:随后的研究致力于一系列数值研究,与凹板的各种几何参数相比,矩形板中的光滑结构相比,凹板的各种几何参数对流动结构和传热性能的影响。这些参数是酒窝的排列,数量和深度。除三角形排列外,还选择了两种广泛使用的交错和正方形图案,以及三种凹坑深度(Δ=δ/ d = 0.25、0.375和0.5)。所有研究都是在三种不同的雷诺数Re = 25,000、50,000和100,000进行的。为了捕获酒窝附近的流动结构并促进与边界层相互作用有关的现象,在所有情况下均生成了y _(+)<1的全结构网格。选择可实现的k〜(t)-ε两层模型作为合适的湍流模型。从获得的结果可以看出,较高的传热有效面积和无数的湍流涡流将表面附近的热流体与酒窝顺风边缘产生的通过的冷流体混合,这是导致平均努塞尔数提高的原因。与光滑板相比,表面凹陷。然而,由于该凹坑内较高的摩擦阻力和再循环区域而导致的更多压力损失将作为该系统的缺点。而且,对于所有布置,增加的凹坑比Δ对传热的增加具有负面影响,并且还使压力损失恶化,这导致Δ= 0.25成为凹坑深度的最佳选择的事实。

著录项

  • 来源
    《Heat and mass transfer》 |2018年第9期|2743-2760|共18页
  • 作者单位

    Department of Energy and Process Engineering, Norwegian University of Science and Technology;

    Department of Mechanical Engineering, Payame Noor University (PNU);

    Young Researchers and Elite Club, Neyshabur Branch, Islamic Azad University;

  • 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

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