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First and second laws of thermodynamics analysis of nanofluid flow inside a heat exchanger duct with wavy walls and a porous insert

机译:波状墙和多孔插件在热交换器管道内纳米流体流动热力学分析的第一和第二定律

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This paper investigates the combined effects of using nanofluid, a porous insert and corrugated walls on heat transfer, pressure drop and entropy generation inside a heat exchanger duct. A series of numerical simulations are conducted for a number of pertinent parameters. It is shown that the waviness of the wall destructively affects the heat transfer process at low wave amplitudes and that it can improve heat convection only after exceeding a certain amplitude. Further, the pressure drop in the duct is found to be strongly influenced by the wave amplitude in a highly non-uniform way. The results, also, show that the second law and heat transfer performances of the system improve considerably by thickening the porous insert and decreasing its permeability. Yet, this is associated with higher pressure drops. It is argued that the hydraulic, thermal and entropic behaviours of the system are closely related to the interactions between a vortex formation near the wavy walls and nanofluid flow through the porous insert. Viscous irreversibilities are shown to be dominant in the core region of duct where the porous insert is placed. However, in the regions closer to the wavy walls, thermal entropy generation is the main source of irreversibility. A number of design recommendations are made on the basis of the findings of this study.
机译:本文研究了使用纳米流体,多孔插入件和瓦楞壁在热交换器管道内传热,压降和熵产生的组合效果。对于许多相关参数进行了一系列数值模拟。结果表明,壁的波纹破坏性地影响低波幅下的传热过程,并且它可以仅在超过一定幅度之后改善热对流。此外,发现管道中的压降受到高度不均匀的方式受波振幅的强烈影响。结果,另外,表明该系统的第二定律和传热性能通过加厚多孔插入物和降低其透气性显着提高。然而,这与较高的压降相关联。认为,该系统的液压,热和熵行为与波状壁附近的涡流形成与纳米流体流过多孔插件之间的相互作用密切相关。在放置多孔插入件的管道的核心区域中,粘性的不缩义被认为是显着的。然而,在接近波浪墙的地区,热熵产生是不可逆转性的主要来源。在本研究的结果的基础上进行了许多设计建议。

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