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Performance optimisation of polymeric collectors by means of dynamic simulation and sensitivity analysis

机译:通过动态仿真和灵敏度分析进行聚合物收集器的性能优化

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A dynamic flat-plate collector model for parametric sensitivity studies on polymer-based collector designs was developed. Validation using experimental results of conventional flat-plate collectors showed satisfying results especially regarding the calculation of individual part temperatures of a collector. The model was used to predict system efficiency as well as individual part temperatures in order to analyse a polymeric collector approach in comparison to a conventional collector. The simulation results showed that the fractional energy savings of systems with conventional flat-plate collectors cannot be reached with the analysed polymeric collector approach. Also the stagnation temperatures of more efficient approaches are too high for low-cost polymeric materials. The exemplary analysis of annual temperature loads of the backside insulation for different approaches proved the necessity of careful collector design aiming at temperature reduction for all individual collector parts.
机译:开发了一种动态平板收集器,用于参数敏感性研究的基于聚合物的收集器设计。使用传统平板收集器的实验结果的验证表明,特别是关于收集器的个体零件温度的计算的令人满意的结果。该模型用于预测系统效率以及单独的部分温度,以分析与传统收集器相比的聚合物收集器方法。仿真结果表明,通过分析的聚合物收集器方法,不能达到传统平板收集器的系统的分数节能。对于低成本的聚合物材料,更有效的方法的停滞温度也太高。用于不同方法的背面绝缘的年度温度负荷的示例性分析证明了旨在为所有单独的收集器部件的降温的仔细收集器设计的必要性。

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