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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effects of solid particle properties on the thermal performance of a packed-bed molten-salt thermocline thermal storage system
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Effects of solid particle properties on the thermal performance of a packed-bed molten-salt thermocline thermal storage system

机译:固体颗粒性质对填充床熔融盐温床蓄热系统热性能的影响

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摘要

In this study we present a transient two-dimensional dispersion-concentric (D-C) model for heat transfer and fluid dynamics in a packed-bed molten salt thermocline thermal storage system. Based on the developed model, the effects of solid particle properties including particle diameter and particle material on the heat transfer between molten salt and solid particles are investigated with emphasis on detailed temperature distributions within solid particles. The results show that heat transfer between solid particles and molten salt can be significantly influenced by particle diameter. Increasing the particle diameter reduces heat transfer rate between solid particles and molten salt, and finally results in a decrease in the effective discharging time and discharging efficiency. It is also found that the effect of solid material on the thermal performance is influenced by the particle diameter. When particle size is small enough, the efficiency of the thermocline system is nearly independent of the solid material. For large particle diameters, heat discharge rate from solid particles to molten salt may be reduced if the thermal conductivity of solid particle is too low.
机译:在这项研究中,我们提出了一个瞬态二维弥散同心(D-C)模型,用于填充床熔融盐温床热存储系统中的传热和流体动力学。基于已开发的模型,研究了固体颗粒性质(包括粒径和颗粒材料)对熔融盐与固体颗粒之间的传热的影响,并着重于固体颗粒内部的详细温度分布。结果表明,固体颗粒和熔融盐之间的传热会受到粒径的显着影响。增大粒径会降低固体颗粒与熔融盐之间的传热速率,最终导致有效排出时间和排出效率的降低。还发现,固体材料对热性能的影响受粒径影响。当粒径足够小时,热跃系统的效率几乎与固体材料无关。对于大粒径,如果固体颗粒的导热率太低,则可能降低从固体颗粒到熔融盐的放热速率。

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