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Effects of parameters on performance of high temperature molten salt latent heat storage unit

机译:参数对高温熔盐潜热存储单元性能的影响

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摘要

In order to investigate the performance of high temperature molten salt latent heat storage (LHS) unit under variable conditions, the effects of heat transfer fluid (HTF) inlet temperature, velocity and tube geometric parameters on melting time, melting fraction, heat storage rate and solid-liquid interface were numerically investigated. The results show that within the studied parameters, the HTF inlet temperature has the largest effect on LHS rate. With the HTF inlet temperature increasing from 1070 K to 1110 K, the melting time reduces 53.0%. However, the larger inlet temperature will result in more non-uniform melting rate and solid-liquid interface distribution. The second important influential factor is the HTF inlet velocity. When inlet velocity increases from 10 m/s to 20 m/s, the melting time reduces 45.4%. And the effect of velocity on the solid-liquid interface distribution is uniform. LHS tube diameter has the lowest effect on performance. With outer tube radius increasing from 24.0 mm to 28.0 mm, the melting time only augments 16.3% and the solid-liquid interface distribution becomes more uniform. In a general conclusion, when the heat load of the heat source is larger, a larger HTF mass flow rate is suitable to maintain a moderate HTF temperature. And then for the LHS unit, a larger tube diameter is recommendable.
机译:为了研究可变条件下高温熔融盐潜热存储(LHS)单元的性能,传热流体(HTF)入口温度,速度和管几何参数对熔融时间,熔融分数,储热速率和进行了固液界面的数值研究。结果表明,在所研究的参数范围内,HTF入口温度对LHS速率的影响最大。随着HTF入口温度从1070 K增加到1110 K,熔化时间减少了53.0%。但是,较大的入口温度将导致更多的不均匀熔化速率和固液界面分布。第二个重要的影响因素是HTF入口速度。当入口速度从10 m / s增加到20 m / s时,熔化时间减少45.4%。速度对固液界面分布的影响是均匀的。 LHS管直径对性能的影响最小。随着外管半径从24.0 mm增加到28.0 mm,熔融时间仅增加16.3%,并且固液界面分布变得更加均匀。总的来说,当热源的热负荷较大时,较大的HTF质量流量适用于维持适中的HTF温度。然后对于LHS单元,建议使用更大的管径。

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