首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >EXPERIMENTAL INVESTIGATION OF HEAT TRANSFER PHENOMENON OF ANNULAR HEAT PIPE FOR PASSIVE IN-CORE COOLING SYSTEM
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EXPERIMENTAL INVESTIGATION OF HEAT TRANSFER PHENOMENON OF ANNULAR HEAT PIPE FOR PASSIVE IN-CORE COOLING SYSTEM

机译:被动管内冷却系统环形热管传热现象的实验研究

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The concept of a hybrid control rod is proposed for a passive in-core cooling system (PINC) for decay heat removal in a pressured water reactor (PWR). The concept aims to combine the roles of heat pipes and control rods in a PWR system. For effective application, the proposed hybrid rod is to be composed of a suitable neutron absorbing material, such as boron carbide, while providing for sufficient heat dissipation. The annular shape of the boron carbide pellets in the heat pipe provides a path for the working fluid. The objective of this paper is to investigate heat transfer performance across these annular spaces. A small scale heat pipe (L: 300 mm, O.D.: 12.7 mm) is analyzed and wall temperature distributions, overall heat transfer, heat transfer coefficients, and capillary limit are determined. Results show a heat transfer reduction due to face friction at the vapor and liquid boundary layers. Theoretical capillary limit of annular flow path heat pipe was slightly lower than concentric heat pipe and then both of predictions were underestimated compared to the experimental results. The liquid pressure drop was dominant for capillary limit, thus the cross-sectional area of vapor space had a low effect on heat pipe dry-out phenomenon. Experimental results indicate that the inner structure of the heat pipe has some effects on performance. It is also confirmed that the annular heat pipe concept of passive decay heat removal works sufficiently.
机译:提出了一种混合控制棒的概念,用于被动堆芯内冷却系统(PINC),用于在压力水反应堆(PWR)中去除衰变热量。该概念旨在将热管和控制棒在PWR系统中的作用结合起来。为了有效应用,建议的混合杆应由合适的中子吸收材料(例如碳化硼)组成,同时要提供足够的散热。热管中的碳化硼颗粒的环形形状为工作流体提供了一条路径。本文的目的是研究跨这些环形空间的传热性能。分析了一个小型热管(长:300 mm,外径:12.7 mm),并确定了壁温分布,总传热,传热系数和毛细管极限。结果显示由于在蒸气和液体边界层的面摩擦而导致的传热减少。环形流路热管的理论毛细管极限略低于同心热管,因此与实验结果相比,这两个预测均被低估了。液体压降是毛细管极限的主导因素,因此蒸汽空间的横截面积对热管变干现象的影响很小。实验结果表明,热管的内部结构对性能有一定影响。还证实了被动衰变除热的环形热管概念是足够有效的。

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