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3D Numerical and Experimental Study on Paraffin Wax Melting in Thermal Storage for the Nozzle-and-Shell, Tube-and-Shell, and Reducer-and-Shell Models

机译:喷嘴-壳,管-壳和异径管-壳模型在蓄热中石蜡熔化的3D数值和实验研究

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摘要

Paraffin melting experienced in the nozzle-and-shell, tube-and-shell, and reducer-and-shell models in thermal storage with 3D numerical and experimental approach has been studied. The numerical study aims to evaluate the melting process and discover temperature distribution, liquid-solid interface, liquid fraction, and the average surface Nusselt number, while the aim of this experimental study is to determine the distribution of melting temperature. The comparison of temperature distribution between the numerical approach and experimental one indicates a good agreement. The comparison result between the three models shows that the melting process of the nozzle-and-shell model is the best, followed by tube-and-shell and reducer-and-shell models, successively. To finish the melting process, the time required is 6130 s for the nozzle-and-shell model, while tube-and-shell model requires 8210 s and reducer-and-shell model requires 12280 s.
机译:利用3D数值和实验方法研究了在热存储中的管壳式,管壳式和异径管式模型中经历的石蜡熔化。数值研究旨在评估熔融过程并发现温度分布,液固界面,液体分数和平均表面Nusselt数,而本实验研究的目的是确定熔融温度的分布。数值方法与实验方法之间的温度分布比较表明了很好的一致性。三种模型的比较结果表明,喷嘴-壳模型的熔化过程最佳,其次是管壳模型和异径管-壳模型。要完成熔化过程,喷嘴-壳模型需要6130 s,而管壳模型需要8210 s,减速器壳模型需要12280 s。

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  • 来源
    《Modelling and simulation in engineering》 |2017年第2017期|9590214.1-9590214.9|共9页
  • 作者单位

    Mechanical Engineering, Brawijaya University, Malang, Indonesia,Mechanical Engineering Ronggolawe College of Technology, Cepu, Indonesia;

    Mechanical Engineering, Brawijaya University, Malang, Indonesia;

    Mechanical Engineering, Brawijaya University, Malang, Indonesia;

    Mechanical Engineering, Brawijaya University, Malang, Indonesia;

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