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Framework for evaluation of active solar collection systems.

机译:主动式太阳能收集系统评估框架。

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摘要

A framework that presents a new methodology for design-evaluation of active solar collection systems was developed. Although this methodology emphasizes the importance of detailed modeling for accurate prediction of building performance, it also presents a process through which the detailed modeling results can be reused in a simplified iterative procedure allowing the designer the flexibility of revising and improving the preliminary design. For demonstration purposes, the framework was used to design and evaluate two case studies located in Blacksburg (VA) and Minneapolis (MN). These locations were selected because they both represent a cold weather region; presenting a need for using solar energy for heating and hot water requirements. Moreover, the cold weather in Blacksburg is not as severe as in Minneapolis. Therefore, the two cases will result in different thermal loading structures enabling the framework validation process. The solar collection system supplying both case studies consisted of a low temperature flat plate solar collector and storage system.; Thermal performance of the case study located in Blacksburg was conducted using detailed modeling evaluation techniques; while thermal performance of the case study located in Minneapolis was conducted using a simplified modeling evaluation technique. In the first case study, hourly evaluation of the thermal performance of the solar collection system was accomplished using finite element (FE) analysis, while hourly evaluation of the building thermal performance was made using Energy Plus software. The results of the finite element analysis were used to develop a statistical predictive design equation. The energy consumption for the second case study was calculated using the heating design day method and the energy collection for that case study was calculated using the predictive design equation developed from the first case study results. Results showed that, in the case of the building located in Blacksburg, the solar collection system can supply an average of 85% of the building's heating and hot water requirements through out the year. In the case of the building located in Minneapolis, the solar collection system can supply an average of 56% of the building's heating and hot water requirements through out the year given no night time window insulation and using similar insulation thicknesses for both cases.
机译:开发了一个框架,该框架为主动式太阳能收集系统的设计评估提供了一种新的方法。尽管此方法论强调了详细建模对于准确预测建筑性能的重要性,但它也提出了一个过程,通过该过程可以以简化的迭代过程重用详细的建模结果,从而使设计人员可以灵活地修改和改进初步设计。出于演示目的,该框架用于设计和评估位于布莱克斯堡(VA)和明尼阿波利斯(MN)的两个案例研究。选择这些位置是因为它们都代表一个寒冷的天气区域。提出了将太阳能用于加热和热水的需求。此外,布莱克斯堡的寒冷天气没有明尼阿波利斯的严酷。因此,这两种情况将导致不同的热负荷结构,从而实现框架验证过程。提供这两个案例研究的太阳能收集系统包括一个低温平板太阳能收集器和存储系统。使用详细的模型评估技术进行了位于布莱克斯堡的案例研究的热性能;而位于明尼阿波利斯的案例研究的热性能是使用简化的模型评估技术进行的。在第一个案例研究中,使用有限元(FE)分析完成了太阳能收集系统热性能的每小时评估,而使用Energy Plus软件进行了建筑物热性能的每小时评估。有限元分析的结果用于建立统计预测设计方程。使用供暖设计日方法计算第二个案例研究的能耗,并使用根据第一个案例研究结果得出的预测设计方程式计算该案例研究的能量收集。结果表明,就位于布莱克斯堡的建筑物而言,太阳能收集系统全年可平均提供建筑物供暖和热水需求的85%。对于位于明尼阿波利斯的建筑物,在没有夜间窗户隔热的情况下,并且在两种情况下使用相似的隔热厚度,太阳能收集系统全年可平均提供建筑物供暖和热水需求的56%。

著录项

  • 作者

    Hassan, Marwa M.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Environmental Sciences.; Architecture.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 341 p.
  • 总页数 341
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;建筑科学;
  • 关键词

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