首页> 外文会议>International Institute of Refrigeration;IIR International congress of refrigeration;Ministry of Economy, Trade and Industry;Ministry of Agriculture, Forestry and Fisheries >3D AND TRANSIENT NUMERICAL MODELING OF DOOR OPENING AND CLOSING PROCESSES AND ITS INFLUENCE ON THERMAL PERFORMANCE OF COLD ROOMS
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3D AND TRANSIENT NUMERICAL MODELING OF DOOR OPENING AND CLOSING PROCESSES AND ITS INFLUENCE ON THERMAL PERFORMANCE OF COLD ROOMS

机译:门开闭过程的三维瞬态数值模拟及其对冷室热力性能的影响

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The need of rationalize energy consumption in agrifood industry has fasten the development of methodologies to improve the thermal and energy performances of cold rooms.rnThis paper presents a 3D transient Computational Fluid Dynamics (CFD) modelling of a cold room to evaluate the air infiltration rate through sliding doors. A species transport model is used for modelling the tracer concentration decay technique. Numerical predictions indicate that air temperature difference between spaces affects the air infiltration. For this case study, the infiltration rate increases 0.012 m~3 s~(-1) per K of air temperature difference. The knowledge about the evolution of air infiltration during door opening/closing times allows to draw some conclusions about its influence on the air conditions inside the cold room, as well as to suggest best practices and simple technical improvements that can minimize air infiltration, and consequently improve thermal performance and energy consumption rationalization.
机译:农业食品工业中合理化能源消耗的需求加快了改善冷藏室的热能和能源性能的方法的开发。本文提出了冷藏室的3D瞬态计算流体动力学(CFD)建模,以通过以下方式评估空气的渗透率滑动门。物种迁移模型用于对示踪剂浓度衰减技术进行建模。数值预测表明,空间之间的空气温差会影响空气的渗透。对于此案例研究,每K空气温差的入渗速率增加0.012 m〜3 s〜(-1)。有关开门/关门期间空气渗透的演变的知识,可以得出有关其对冷藏室内空气状况的影响的结论,并提出可以使空气渗透最小化的最佳实践和简单的技术改进,因此提高热性能和能耗合理化。

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