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Experimental and numerical investigation on heat transfer and fluid flow performance of sextant helical baffle heat exchangers

机译:六重螺旋折流板换热器传热及流体流动性能的实验与数值研究

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As a promising substitute for the segmental ones, the helical baffles have been gradually popularized in shell-and-tube heat exchangers. Quadrant helical baffles are commonly utilized to induce a pseudo-spiral flow pattern in the shell side of helical baffle heat exchangers, but the triangular leakage loss at the conjunction notches between adjacent baffles has always been the bottleneck. An improved scheme of sextant helical baffle is thus presented as a means of leakage blockage in this work. The experimental approach is implemented and the computational model is established for experimental and numerical analysis of the performance of novel heat exchanger, and a good agreement is achieved by comparing measured data with numerical predictions. The modified flow field characteristic of sextant helical baffle heat exchangers (SHBHXs) is examined in detail in comparison with quadrant helical baffle heat exchangers (QHBHXs). It concludes that the reverse flow in the triangular leakage zone is partly dampened by virtue of special overlapped structure of adjacent sextant helical baffles, and shell-side axial velocity exhibits the feature of uniform distribution. The impact of incline angle is particularly evaluated on variations of shell-side heat transfer coefficient and shell-side pressure drop as well as their ratio, and then the relevant correlations for Nusselt number and friction factor are fitted in the calculation scope. Further comparison results reveal that the thermal performance and the comprehensive performance are much better while the pressure drop is much lower in SHBHXs than in QHBHXs, which can be explicated by a finer field synergy property in SHBHXs on the basis of the field synergy theory. This work can provide theoretical foundation for design and optimization of the new type heat exchanger. (C) 2019 Elsevier Ltd. All rights reserved.
机译:作为分段式的有希望的替代品,螺旋折流板已逐渐在管壳式换热器中普及。象限螺旋折流板通常用于在螺旋折流板换热器的壳侧引起拟螺旋流型式,但是相邻折流板之间连接处的三角形泄漏损失一直是瓶颈。因此,提出了一种改进的六分面螺旋挡板方案,作为这项工作中的泄漏阻塞方法。实施了实验方法,建立了用于新型换热器性能的实验和数值分析的计算模型,并将实测数据与数值预测结果进行比较,取得了较好的一致性。与象限螺旋折流板换热器(QHBHXs)比较,详细检查了六分形螺旋折流板换热器(SHBHXs)的改进的流场特性。结论是相邻六边形螺旋折流板的特殊重叠结构可部分抑制三角形泄漏区的逆流,且壳侧轴向速度具有均匀分布的特点。特别评估了倾斜角对壳侧传热系数,壳侧压降及其比率变化的影响,然后将努塞尔数和摩擦系数的相关关系拟合到计算范围内。进一步的比较结果表明,与QHBHX相比,SHBHX的热性能和综合性能要好得多,而压降却要低得多,这可以通过场协同理论在SHBHX中更好的场协同特性来说明。这项工作可以为新型换热器的设计和优化提供理论依据。 (C)2019 Elsevier Ltd.保留所有权利。

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