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CFD STUDY ON COUNTERFLOW CERAMIC MICROCHANNEL HEAT EXCHANGER WITH DIFFERENT FINS

机译:不同翅片的逆流陶瓷微通道换热器的CFD研究

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The conventional heat exchangers cannot satisfy the high efficiency and power requirements due to the low heat transfer performance and large volume. With the development of micro-scale manufacture technology, the ceramic micro-channel heat exchangers are recommended to be used to the highly-efficiency power and propulsion systems, especially the very high temperature conditions. The present paper analyzes the thermal hydraulic performance of the alumina-based ceramic micro-channel heat exchangers with four different fins (straight, Z-shaped, airfoil and S-shaped). The numerical results show that the maximal heat transfer rate and heat transfer effectiveness of the heat exchanger with Z-shaped fins reach 90.7 W and 61%, respectively. The temperature distribution of both fluid sides and solid body is predicted. Moreover, the pressure drop and the ratio of Elk are used to evaluate the general heat exchanger performance. The ratio of E/k is smaller than unit of ten at the low Reynolds number and increases greatly at high Reynolds number.
机译:传统的热交换器由于传热性能低和体积大而不能满足高效率和功率要求。随着微型制造技术的发展,推荐将陶瓷微通道换热器用于高效的动力和推进系统,尤其是在高温条件下。本文分析了具有四个不同翅片(直形,Z形,翼型和S形)的氧化铝基陶瓷微通道换热器的热工水力性能。数值结果表明,Z形翅片换热器的最大传热率和传热效率分别达到90.7 W和61%。预测了流体两侧和固体的温度分布。此外,使用压降和麋鹿比例来评估一般的热交换器性能。在低雷诺数下,E / k的比值小于十的单位,而在高雷诺数下,E / k的比值大大增加。

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