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首页> 外文期刊>International Communications in Heat and Mass Transfer >Irreversibility features of a shell-and-tube heat exchanger fitted with novel trapezoidal oblique baffles: Application of a nanofluid with different particle shapes
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Irreversibility features of a shell-and-tube heat exchanger fitted with novel trapezoidal oblique baffles: Application of a nanofluid with different particle shapes

机译:具有新型梯形倾斜挡板的壳管式热交换器的不可逆转特性:用不同颗粒形状的纳米流体应用

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摘要

The influences of nanoparticle shape on the Entropy Generation Rate (EGR) of a boehmite nanofluid in a shell and tube heat exchanger fitted with trapezoidal oblique baffles are investigated. The hot fluid is the nanofluid with five particle shapes (i.e., platelet, cylinder, blade, brick, and oblate spheroid), whereas the cold fluid is selected to be water. The hot fluid streams at the tube-side, while the cold fluid streams at the shell-side. By the elevation of the Reynolds number (Re), in the warm fluid, the thermal and frictional entropy productions increase, while the Bejan number reduces. The nanofluid with platelet-shaped nanoparticles results in the greatest frictional EGR and thermal EGR in the hot fluid, pursued by the suspensions with the cylinder-, blade-, brick-, and Os-shaped nanoparticles, respectively. By rising the Reynolds number, in the cold fluid, the thermal EGR reduces, and the frictional EGR increases. The nanofluid with Os-shaped particles shows the highest thermal and frictional entropy productions in the cold fluid. All in all, with considering the whole heat exchanger regarding the second law of thermodynamics, the platelet-shaped particles are the best ones to be utilized in the heat exchanger, resulting in the lowest irreversibility.
机译:研究了纳米颗粒形状对胸型纳米流体中的胶带和管热交换器中的熵产生速率(EGR)的影响进行了研究。热流体是具有五个颗粒形状的纳米流体(即血小板,圆筒,刀片,砖和扁圆形球体),而冷流体被选为水。管侧的热流体流,而壳体侧的冷流体流。通过雷诺数(RE)的升高,在温暖的流体中,热和摩擦熵制造的增加,而BEJAN数减少。具有血小板形纳米粒子的纳米流体导致热流体中最大的摩擦EGR和热EGR,分别与汽缸,叶片,砖和OS形纳米颗粒的悬浮液追踪。通过将雷诺数升高,在冷流体中,热EGR减小,摩擦EGR增加。具有OS形颗粒的纳米流体显示冷液中的最高热和摩擦熵制造。总而言之,通过考虑到关于热力学的第二定律的整个热交换器,血小板形颗粒是在热交换器中使用的最佳颗粒,从而导致不可逆性最低。

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