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Numerical investigation on heat transfer and flow in the cross-corrugated primary surface duct

机译:交叉波纹原型初级表面管道热传递和流动的数值研究

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Microturbines are wide application prospects in large quantities in the distributed power generation field.The microturbines efficiency improvemants and higher recuperator effectiveness must request to look for innovative design solutions.The cross-corrugated (CC) surface heat exchanger is one simple structure type with the higher heat transfer coefficient as well as the compactness.In the present work, numerical simulations have been carried out to investigate the characteristic of heat transfer and flow in the cross-corrugated primary surface duct.The results of various gas inlet temperatures or mass flow rates are compared respectively, the instantaneous temperature and velocity fields are obtained.The numerical result is agreed with the experimental correlation.The effects of inlet temperature and mass flow rate on outlet temperature, pressure drop, Nusselt number, total heat transfer rate and effectiveness are analyzed.The results indicated that the effectiveness is 72%-88% and decreases with the increasing Reynolds number of gas.The outlet temperature, Nusselt number, and pressure drop increase, while the total heat transfer rate increases slightly.
机译:分布式发电领域的大量应用前景是宽阔的应用前景。微涡流效率即兴升高和较高的恢复效果必须要求寻找创新的设计解决方案。交叉波纹状(CC)表面热交换器是一种简单的结构类型,具有更高的结构类型传热系数以及紧凑性。在本作中,已经进行了数值模拟,以研究传热和流动在交叉瓦楞原初级表面管道中的特性。各种气体入口温度或质量流量的结果是分别比较,瞬时温度和速度场得到了实验相关性的数值。分析了入口温度和质量流速对出口温度,压降,营养数,总传热率和有效性的影响。结果表明,有效性为72%-88%和de随着雷诺瓦数的增加折痕。出口温度,露珠数和压降增加,而总传热速率略有增加。

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