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Modeling The Natural Convection Heat Transfer And Dryout Heat Flux In A Porous Debris Bed

机译:多孔碎片床中自然对流传热和干透热通量建模

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An empirical model for natural convection heat transfer for film-boiling condition has been developed for volumetrically heated paniculate debris beds when flooded with water at the top of the bed. The model has been derived from the quenching data generated in the POMECO facility located at KTH, Stockholm. A dryout model is also developed for countercurrent flooding limiting condition when the heat generating saturated debris bed is flooded with water from the top. The model is in good agreement with the experimental data over a wide range of particle size and porosity as compared to the existing models. The implication of the models with respect to quenching of porous debris bed formed during postulated severe accident condition is discussed.
机译:当在床顶部充满水时,对于容积加热的颗粒状碎屑床,已经开发了用于薄膜沸腾条件的自然对流传热的经验模型。该模型是从位于斯德哥尔摩KTH的POMECO设施中生成的淬火数据得出的。还开发了一种干燥模型,用于在生热饱和碎屑床顶部被水淹没时,逆流驱替限制条件。与现有模型相比,该模型与各种粒径和孔隙率的实验数据非常吻合。讨论了模型对假定的严重事故工况下形成的多孔碎片床的淬火的影响。

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