太阳能和核能系统中避免冻结的冷管道中熔盐启动流的传热分析

Ye Zhang, Fouad Haddad, Peiwen Li
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引用次数: 0

摘要

熔盐被用作传热流体,将太阳能接收器或核反应堆中的热能输送到蓄热系统或热电厂进行发电。在启动运行时,需要用泵将熔盐泵入管道,而管道的温度可能低于熔盐的凝固点,原因是隔夜或暂停运行期间环境温度较低。防止熔盐在低温管道中冻结成为聚光太阳热电站或熔盐核电站安全运行的关键问题。本研究对流动熔盐到冷管的瞬态传热进行了基本的传热分析,以确定流体从入口到开始冻结的长度。通过建模和使用特性法分析求解,我们清楚地了解了熔盐开始凝固的位置与流速、熔盐和管道的热容量、管道的尺寸以及盐和管道的初始温度之间的相关性。该建模和计算工具可从根本上帮助工程师设计系统,避免熔盐作为传热流体在冷启动时冻结和堵塞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Heat Transfer of Molten Salts Startup Flow in Cold Pipes Avoiding Freezing in Solar and Nuclear Energy Systems
Molten salts are employed as the heat transfer fluid to carry the thermal energy from a solar receiver or a nuclear reactor for delivering to thermal storage systems or thermal power plants for power generation. For the startup operation, molten salts need to be pumped to flow into the pipes which may have lower temperature than the freezing point of molten salt due to the cold ambient temperature overnight or over the suspension of operation. Preventing the freezing of molten salt in cold pipes becomes a critical issue to the safe operation of a concentrating solar thermal power plant or a molten salt nuclear power plant. This study conducted a basic heat transfer analysis of the transient heat transfer from flowing molten salt to a cold pipe to determine the length from entrance to the onset of freezing of the fluid. From our modeling and analytical solution using method of characteristics, the correlation of the location of onset of freezing of molten salt with respect to the flow velocity, heat capacities of molten salt and pipes, dimension of the pipes, and the initial temperatures of salts and pipes, have been understood clearly. The modeling and computational tool can fundamentally help engineers to design a system to avoid freezing and clogging at cold startup when molten salt is applied as a heat transfer fluid.
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