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Regression Models and Sensitivity Analysis for the Thermal Performance of Solar Flat-Plate Collectors

机译:太阳能平板集热器热性能的回归模型与敏感性分析

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摘要

This work presents numerically derived regression models for evaluating the thermal efficiency and fluid exit temperature of a solar flat-plate collector (FPC), when water, 20% glycol-water or 40% glycol-water is used as the heat transfer fluid. A set of reliable samples of all the contributing parameters, chosen from the presented analytical model, were generated using the Latin hypercube sampling technique over a realistic range of values. The regression models were developed by fitting a response curve, using the least-squares method, to the simulation results. The proposed models were then validated by comparing the predicted results with those already published in the literature. The coefficients of determination (R2) for the efficiency models and fluid exit temperature models were found to exceed 97 and 93%, respectively. Sensitivity analysis, based on the elasticity of parameters in the statistically standardized version of these models, was also performed to identify the most influential design, operational and natural parameters. The effects of these parameters on FPC performance are quantified and discussed in detail.
机译:当使用水,20%的乙二醇-水或40%的乙二醇-水作为传热流体时,这项工作提出了数值衍生的回归模型,用于评估太阳能平板集热器(FPC)的热效率和流体出口温度。从呈现的分析模型中选择的所有贡献参数的一组可靠样本是使用拉丁文超立方体抽样技术在实际值范围内生成的。通过使用最小二乘法拟合响应曲线来拟合仿真结果,从而开发了回归模型。然后通过将预测结果与文献中已发布的结果进行比较来验证所提出的模型。效率模型和流体出口温度模型的确定系数(R2)分别超过97%和93%。还基于这些模型的统计标准化版本中的参数弹性进行了敏感性分析,以找出最有影响力的设计,操作和自然参数。这些参数对FPC性能的影响已被量化和详细讨论。

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