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Assessment of insulating package performance by mathematical modelling

机译:通过数学模型评估绝缘包装的性能

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A mathematical model has been developed in the present work to describe the temperature change in a typical insulated shipping container as a function of time. The model was created by combining steady state and transient models in a 2D geometry of a typical shipping container and was subsequently validated by an ice melt test and comparison of temperature change obtained from the model and experimental measurement. An excellent agreement was obtained between the computational model developed in this work and experimental results. In addition, a parametric study was also carried out to investigate various factors in controlling the insulation performance of the packaging. It was found that the model has capability of evaluating the effect of a wide range of packaging design parameters such as thermal conductivity, surface emissivity, packaging geometry, and sounding temperature.
机译:在当前工作中已经开发了数学模型来描述典型的隔热运输容器中的温度随时间的变化。该模型是通过将稳态模型和瞬态模型结合在典型运输集装箱的2D几何形状中创建的,随后通过冰融化测试以及从模型和实验测量中获得的温度变化的比较进行了验证。在这项工作中开发的计算模型与实验结果之间获得了极好的协议。此外,还进行了参数研究,以研究控制包装绝缘性能的各种因素。发现该模型具有评估各种包装设计参数(例如热导率,表面发射率,包装几何形状和探测温度)的效果的能力。

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