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Critical Heat Flux Model for Vertical Annular Mist Flow Conditions in a Rod Bundle

机译:杆束垂直环形雾气流动条件的临界热通量模型

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As part of its design certification effort, NuScale Power has completed a series of low mass flux [<1000 kg/(m~2·s)] critical heat flux (CHF) tests for a wide range of pressures at Stern Laboratories in Canada. Earlier studies have demonstrated that under annular flow conditions, disturbance waves with circulating vortices traverse the rod surface. The disturbance wave slides over and significantly influences energy transport in the co-current vapor-liquid sublayer at the heater interface. This paper describes the mechanisms leading to the onset of CHF in a vertical rod bundle experiencing annular mist flow conditions. The paper presents a new CHF model that implements a local disturbance wave velocity. A comparison of the model to the U1 CHF data set from Stern Laboratories shows excellent agreement over the full range of annular mist flows, pressures, and subcooled conditions for the specific spacer grids implemented in the study.
机译:作为其设计认证工作的一部分,NUSCALE POWER已完成一系列低质量通量[<1000千克/(m〜2·s)临界热量(CHF)测试,在加拿大斯特恩实验室的各种压力。早期的研究已经证明,在环形流动条件下,具有循环涡流的干扰波遍历杆表面。干扰波滑动并显着影响加热器界面处的电流蒸汽子层中的能量输送。本文介绍了在经历环形雾气条件的垂直杆束中导致CHF发作的机制。本文提出了一种实现局部扰动波速度的新CHF模型。从Stern Laboratories的U1 CHF数据的模型比较显示了在研究中实施的特定间隔网的全系列环形雾流,压力和过冷条件的优异协议。

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