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Experimental and numerical study of melting of particle-laden materials in a cylinder

机译:圆筒中含颗粒材料熔化的实验和数值研究

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The melting of a particle-laden slurry in a cylinder is investigated. The slurry consists of neutrally buoyant ceramic hollow spheres suspended in a paraffin wax. Melt front propagation and heat transfer processes during phase change in this particle-laden material is studied. The numerical analysis employs a particle-diffusive model and the enthalpy method. Experiments are carried out to validate the numerical model. The experimental boundary conditions are adequately represented with a constant and uniform side-wall temperature, a constant and uniform lower-surface temperature, and an adiabatic top wall. Reasonable agreement is obtained between the experiments and numerical predictions. It is found that the flow and heat transfer characteristics of the melt are greatly altered due to the presence of the solid particles and that the particle-diffusive model is insufficient to describe the particle migration during melting.
机译:研究了圆筒中载有颗粒的浆料的熔化。该浆料由悬浮在石蜡中的中性浮力陶瓷空心球组成。研究了这种含颗粒材料在相变过程中的熔体前沿传播和传热过程。数值分析采用颗粒扩散模型和焓法。进行实验以验证数值模型。实验边界条件用恒定且均匀的侧壁温度,恒定且均匀的下表面温度和绝热顶壁充分表示。实验和数值预测之间取得了合理的一致性。发现由于固体颗粒的存在,熔体的流动和传热特性发生了很大变化,并且颗粒扩散模型不足以描述熔融过程中的颗粒迁移。

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