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- W4386952706 abstract "The refrigerated storage container possesses the benefits of flexible application, excellent preservation efficacy, and low energy consumption cost. It is an effective supplement to traditional large-scale fixed refrigerated storage and transport refrigerated vehicles. This paper designs a low-cost, easy-to-install phase-change refrigerated storage plate, forms the refrigerated storage plate into a refrigerated storage module, and applies it to the container. Based on the mass conservation, energy conservation and momentum conservation, established a numerical model of the refrigerated storage container, and simulated and analyzed its cooling process; at the same time, by analyzing the flow field, the reasons for the change of the temperature field are discussed. Simulation results show that this refrigerated storage container can maintain the temperature in the container below -18°C for 16 hours, and can stabilize the freezing temperature of -21°C for about 10 hours. The cold release process is divided into three processes according to the average temperature change of the container volume, the sudden rise period, the slow rise period, and the rapid rise period; through the analysis of the flow field to the temperature field, the cooling of the refrigerated storage unit and the heat loss of the container body will occur in the container. The gas flow generated inside the container leads to stratification of the temperature field in the container; the gap between the refrigerated storage unit and the top, because the hot air on the top cannot form natural convection with the cold air close to the refrigerated storage plate, the thermal resistance of heat conduction is relatively large, so A pocket of hot air builds up at the top." @default.
- W4386952706 created "2023-09-23" @default.
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- W4386952706 date "2023-07-28" @default.
- W4386952706 modified "2023-10-17" @default.
- W4386952706 title "Design and Performance Analysis of Phase Change Refrigerated Storage Contain" @default.
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- W4386952706 doi "https://doi.org/10.1109/eeps58791.2023.10256712" @default.
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