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PERFORMANCE SIMULATION OF A NATURAL CIRCULATION SOLAR AIR HEATER WITH PHASE CHANGE MATERIAL ENERGY STORAGE

机译:具有相变材料能量存储的自然循环太阳能空气加热器的性能模拟

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The one-dimensional radial heat conduction in a phase change material (PCM) heat storage system encapsulated in cylindrical pipes in a single glazed flat plate natural circulation solar air heater is presented. The PCM is prepared in modules, with the modules equispaced across the absorber plate. Enthalpy method is applied to convert the relevant energy balance equations into dimensionless forms for easy tracking of the moving phase boundaries. Crank-Nicolson implicit finite difference scheme which has the features of being stable, accurate and fast in its solution is used in the solution of the governing equations subject to suitable initial and boundary conditions. The scheme is applied at each node and the resulting simultaneous equations are solved using the Gauss-Seidel iterative method. An existing computer programme in BASIC known as the EGGINC which was developed for the rectangular channel containing the PCM is modified to cylindrical coordinate for the pipes containing the PCM to predict the temperature distributions in the solar air heater. The predicted temperatures of the system is compared with the experimental data under daytime no-load condition over the ambient temperature range of 18.5-36.0°C and daily global irradiation of 4.9-20. IMJ/m~2-day. The predicted temperatures agree closely with experimental data to within acceptable limits.
机译:提出了在单层玻璃平板自然循环太阳能空气加热器中封装在圆柱管中的相变材料(PCM)储热系统中的一维径向热传导。 PCM是在模块中准备的,模块在吸收板之间等距分布。应用焓法将相关的能量平衡方程式转换为无量纲形式,以便于跟踪移动相边界。具有稳定,精确和快速求解功能的Crank-Nicolson隐式有限差分格式用于控制方程具有适当初始和边界条件的情况。该方案应用于每个节点,并使用高斯-赛德尔迭代法求解所得联立方程。针对包含PCM的矩形通道开发的BASIC现有计算机程序EGGINC被修改为包含PCM的管道的圆柱坐标,以预测太阳能空气加热器中的温度分布。将系统的预测温度与白天无负载条件下,环境温度范围18.5-36.0°C和每日全局辐射4.9-20下的实验数据进行比较。 IMJ / m〜2天。预测温度与实验数据非常吻合,处于可接受的范围内。

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