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Investigation of the optimal heat flux density for the refrigerated warehouses design

机译:用于冷藏仓库设计的最佳热通量密度的研究

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Cold warehouses are relatively high energy consuming systems, and their construction are growing. In the design of these buildings, the choice of the insulation thickness is an important factor that affects the owning and operating costs. In practice, it is common to use heat flux density values or R-values given in the technical literatures. These values seem to neglect the possible effects of parameters such as local energy and insulation cost. This work investigates the influence of these parameters on the optimal value to be adopted for the thermal flux density in the design process of warehouses. A mathematical model of the flux is developed. The objective function to be minimized is the present value of the owning and operating costs of the system. Simulations are made using different parameters values: 25 and 45°C for the external air temperature; −20 and 8°C for the products storage temperature; 150000 to 250000 XOF/m3 of insulation and 75 to 200 XOF/kWh of electricity. Contour plots of the optimal thermal flux density are drawn. The results indicate that the optimal heat flux density varies with the site air temperature and the storage room one. Moreover, it is seen that higher values of the thermal flux density can be adopted compared to that given in technical literature (up to 11 W.m−2 vs 6 or 8 W.m−2). However, these high values of the thermal heat flux involves the use of high power refrigerating units, increasing the energy consumption.
机译:冷仓库是相对较高的能耗系统,其建筑正在增长。在这些建筑物的设计中,绝缘厚度的选择是影响拥有和运营成本的重要因素。在实践中,通常使用技术文献中给出的热量密度值或R值。这些值似乎忽略了诸如局部能量和绝缘成本的参数的可能影响。这项工作调查了这些参数对仓库设计过程中热通量密度采用的最佳值的影响。开发了磁通量的数学模型。要最小化的目标函数是系统的现有和运营成本的现值。模拟使用不同的参数值:25和45°C,用于外部气温; -20和8°C用于产品储存温度; 150000至250000 XOF / M3的绝缘和75至200 XOF / KWH的电力。拉伸最佳热通量密度的轮廓图。结果表明,最佳的热通量密度随场地空气温度和储存室的最佳热量密度变化。此外,可以看出,与技术文献中给出的相比,可以采用较高的热通量密度值(高达11Wm -2 vs 与6或8 wm -2 )。然而,这些高值的热热通量涉及使用高功率制冷单元,增加能量消耗。

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