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首页> 外文期刊>Nuclear Engineering and Design >Numerical optimization of a finned tube bundle heat exchanger arrangement for passive spent fuel pool cooling to ambient air
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Numerical optimization of a finned tube bundle heat exchanger arrangement for passive spent fuel pool cooling to ambient air

机译:翅片管束换热器布置的数值优化,用于被动乏燃料池冷却至环境空气

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The passive cooling of nuclear spent fuel pools is a promising alternative to active cooling. Since such systems work even in safety-critical situations, e.g. station blackout, the reliability of nuclear power plants would be enhanced. As in such systems heat needs to be transfer to the environment, the heat exchanger to air has a crucial influence on the system performance. This paper describes investigations of the Nusselt number, the achievable efficiency and the volumetric heat transfer coefficient of the tube bundle heat exchangers for a passive cooling system located at the bottom of a chimney. The effect of tube bundle configuration, tube shape, longitudinal tube pitch, transversal tube pitch and tube row number on natural convection heat transfer was numerically studied. These parameters were varied to optimize the heat transfer performance of the heat exchanger. It was found, that the staggered configuration performs better than the inline arrangement, since the flow mixing is higher. Furthermore circular tube shape and an oval tube shape with the aspect ratio of 1: 2.1 were optimum for the inline and staggered configuration respectively. The longitudinal and transversal tube pitches of 63mm and 65mm performed best, since higher values reduced heat transfer. A tube row number greater than 5 did not improve the heat transfer and therefore a tube row number of 5 is recommended. The Nusselt number and volumetric heat transfer coefficient of the optimized tube bundle arrangement enhanced by 15.4% and 47.8% respectively at a temperature difference of 40K compared to the initial design.
机译:核废燃料池的被动冷却是主动冷却的有前途的替代方法。由于此类系统即使在对安全至关重要的情况下也能正常工作,例如停电后,核电厂的可靠性将得到提高。由于在此类系统中需要将热量传递到环境中,因此热交换器与空气之间的关系对系统性能具有至关重要的影响。本文介绍了对位于烟囱底部的被动冷却系统的管束式换热器的Nusselt数,可实现的效率和体积传热系数的研究。数值研究了管束构型,管形,管长,管节距和管排数对自然对流换热的影响。改变这些参数以优化热交换器的传热性能。已经发现,由于流动混合较高,所以交错构造的性能比串联布置的更好。此外,长宽比为1:2.1的圆形和椭圆形分别适合于直列和交错配置。纵向和横向管间距分别为63mm和65mm,效果最好,因为更高的值会减少传热。管排数大于5不能改善传热,因此建议管排数为5。与初始设计相比,在40K的温差下,优化的管束布置的Nusselt数和体积传热系数分别提高了15.4%和47.8%。

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