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Numerical investigation on baffle configuration improvement of the heat exchanger with helical baffles

机译:螺旋折流板换热器折流板构型改进的数值研究

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An improved structure of ladder-type fold baffle is proposed to block the triangular leakage zones in original heat exchangers with helical baffles. The numerical results showed that the shell-side tangential velocity and radial velocity in improved heat exchanger increase significantly and the shell-side fluid becomes approximately continuous spiral flow. And the configuration of ladder-type fold baffles was optimized. The numerical results showed that the shell-side heat transfer coefficient of the improved heat exchanger increases by 82.8-86.1%, when the folding ratio φ is 0.3, the baffle height ω is 60%, and the folding angle α is 37°. The associated pumping power penalty is about 21-549 W due to the increased shell-side pressure drop. The thermal performance factor TEF enhances by 28.4-30.7%, which demonstrates that the ladder-type fold baffle effectively improves the heat transfer performance of heat exchangers with helical baffles. The results of this paper are of great significance in the optimal design of heat exchanger.
机译:提出了一种梯形折流板的改进结构,以阻挡带有螺旋折流板的原始热交换器中的三角形泄漏区域。数值结果表明,改进后的换热器壳侧切线速度和径向速度显着增加,壳侧流体近似为连续螺旋流。并优化了梯形折叠挡板的配置。数值结果表明,改进的换热器的壳侧传热系数提高了82.8-86.1%,当折弯率φ为0.3时,折流板高度ω为60%,折弯角α为37°。由于增加的壳侧压降,相关的泵浦功率损失约为21-549W。热性能系数TEF提高了28.4-30.7%,这表明梯形折叠式折流板有效地改善了带螺旋折流板的热交换器的传热性能。本文的结果对换热器的优化设计具有重要意义。

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