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Study and Design of a Mobile Solar Refrigerator Isolated by Ecological Materials

机译:生态材料隔离的移动太阳冰箱的研究与设计

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In this paper, we present a study of a new prototype solar mobile refrigeration for the preservation of food, the subject has a capacity of 1m3 and can carry 400 kg. Mounted on scooter, the fridge runs on solar energy through photovoltaic panels installed on its walls, and has a capacity of 16 hours autonomy. The insulation of the fridge is provided by renewable based materials, date palm waste of the region Errachidia in Morocco. The thickness of the insulating material is determined to reduce the losses by the different heat transfer modes. The simulation of refrigeration cycle and the calculation of heat balances of each element of the system, allows to estimate the consumption of our refrigerator and assess the capacity of the compressor motor to install, and therefore design the photovoltaic elements necessary for production of energy and the battery's capacity to install, taking account of the ability to 16hrs of autonomy.
机译:在本文中,我们展示了一种研究新的原型太阳能移动制冷,用于保存食物,受试者的容量为1M3,可携带400千克。 安装在滑板车上,冰箱通过安装在其墙壁上的光伏电池板在太阳能上运行,并且具有16小时自治的能力。 冰箱的绝缘由可再生基于可再生的材料提供,该区域摩洛哥区域errachidia的日期棕榈浪费。 确定绝缘材料的厚度以通过不同的传热模式降低损耗。 制冷循环的仿真和系统的每个元件的热平衡的计算,允许估计我们的冰箱的消耗,并评估压缩机电机安装的容量,从而设计能量生产所需的光伏元件。 电池安装能力,考虑到16小时的自主权。

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