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Design, Installation, and Performance Characterization of a Laboratory-Scale Solar Thermal System for Experiments in Solar Energy Utilization

机译:用于太阳能利用实验的实验室规模的太阳能热系统的设计,安装和性能表征

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The purpose of this paper is to describe the implementation of a laboratory-scale solar thermal system for the Renewable Energy Systems Laboratory at the Milwaukee School of Engineering (MSOE). The system development began as a student senior design project where students designed and fabricated a laboratory-scale solar thermal system to complement an existing commercial solar energy system on campus. The solar thermal system is designed specifically for educating engineers. This laboratory equipment, including a solar light simulator, allows for variation of operating parameters to investigate their impact on system performance. The equipment will be utilized in two courses: Applied Thermodynamics, and Renewable Energy Utilization. During the solar thermal laboratories performed in these courses, students conduct experiments based on the American Society of Heating, Refrigeration and Air-Conditioning Engineers (ASHRAE) 93-2010 standard for testing and performance characterization of solar thermal systems. Their measurements are then used to quantify energy output, efficiency and losses of the system and subsystem components.
机译:本文的目的是描述密尔沃基工程学院(MSOE)的可再生能源系统实验室的实验室规模太阳能热系统的实施情况。系统开发是从学生高级设计项目开始的,学生在该项目中设计和制造了实验室规模的太阳能热系统,以补充校园中现有的商用太阳能系统。该太阳能热系统是专门为教育工程师设计的。该实验室设备(包括太阳能模拟器)允许更改运行参数,以调查其对系统性能的影响。该设备将在两个课程中使用:应用热力学和可再生能源利用。在这些课程中执行的太阳能热实验室期间,学生将根据美国供热,制冷和空调工程师协会(ASHRAE)93-2010标准进行实验,以测试和表征太阳能热系统。然后将它们的测量结果用于量化能量输出,效率以及系统和子系统组件的损耗。

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