首页> 外文会议>ASME international conference on energy sustainability >Empirically Driven Computer Simulations of Solar Thermal Systems for Space Heating and Domestic Hot Water
【24h】

Empirically Driven Computer Simulations of Solar Thermal Systems for Space Heating and Domestic Hot Water

机译:基于经验的空间供热和生活热水太阳能热系统的计算机模拟

获取原文

摘要

The Desert Research Institute (DRI) has developed a Renewable Energy Deployment and Display Facility (REDD) which utilizes solar and wind to create a net zero energy residence for research, education, and outreach. The facility is a demonstration of the integration of many renewable energy technologies into a residential setting such that technology developers can show proof-of-concept, students and trade workers can get hands-on experience, and public organizations can see renewable energy components implemented into a residential setting. A major technological aspect of the facility is the use of solar thermal energy to provide space heating, Domestic Hot Water (DHW), and solar cooling. Data are monitored from three separate solar thermal systems, each with their own hot water storage, to evaluate optimized utilization of solar thermal energy into residential applications. The three solar thermal systems differ in their working fluids. System 1 uses a conventional mixture of glycol and water in 200 ft~2 of ground mounted collector area, System 2 uses DHW in 210 ft~2 of roof mounted collector area, and System 3 uses air in a 578 ft~2 collector built into the roof. Each system is configured to be used for space heating and DHW. Systems 1 and 2 are built into the HVAC system of the 1200 ft~2 house, and System 3 is built into the HVAC system of the 600 ft~2 detached workshop. Data collected from each system provide the basis for year-long energy and economic simulations using TRNSYS for comparison. The results from the simulations are used to demonstrate the effectiveness of site-built solar air collectors, which have the advantage of using conventional materials, and avoid the issues of liquid collectors associated with boiling and freezing. This paper describes the experimental setup of the solar thermal systems, how the data are used as inputs to the computer simulations, and the configuration of the computer simulations. The REDD Facility, as well as the use of TRNSYS will continue to be used by DRI researchers to investigate not only the most feasible integration of components for a solar thermal residential system, but also as a tool to properly size and implement solar thermal systems.
机译:沙漠研究所(DRI)已开发了可再生能源部署和展示设施(REDD),该设施利用太阳能和风能为研究,教育和外展活动创建了一个净零能耗住宅。该设施展示了将许多可再生能源技术集成到住宅环境中的过程,从而使技术开发人员可以展示概念证明,学生和贸易工作者可以获得实践经验,公共组织可以将可再生能源组件实施到住宅中。居住环境。该设施的主要技术方面是利用太阳能来提供空间供暖,生活热水(DHW)和太阳能冷却。数据来自三个独立的太阳能热系统,每个系统都有自己的热水储存器,以评估太阳能热能在住宅应用中的优化利用。这三个太阳能热系统的工作流体有所不同。系统1在地面安装的收集器区域200 ft〜2中使用乙二醇和水的常规混合物,系统2在屋顶安装的收集器区域210 ft〜2中使用DHW,系统3在578 ft〜2的内置收集器中使用空气屋顶。每个系统都配置为用于空间供暖和DHW。系统1和2内置在1200 ft〜2房屋的HVAC系统中,系统3内置在600 ft〜2的独立车间的HVAC系统中。从每个系统收集的数据为使用TRNSYS进行为期一年的能源和经济模拟提供了基础,以进行比较。模拟的结果用于证明现场安装的太阳能集热器的有效性,该集热器具有使用常规材料的优势,并且避免了与沸腾和冻结相关的集液器问题。本文介绍了太阳能热系统的实验设置,如何将数据用作计算机仿真的输入以及计算机仿真的配置。 DRI研究人员将继续使用REDD设施以及TRNSYS的用途,不仅研究太阳能居住系统最可行的组件集成,而且还将其作为适当确定和实施太阳能系统尺寸的工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号