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Analysis of Community Solar Systems for Combined Space and Domestic Hot Water Heating Using Annual Cycle Thermal Energy Storage
doi: 10.2172/5515656
A simplified design procedure is examined for estimating the storage capacity and collector area for annual-cycle-storage, community solar heating systems in which 100% of the annual space heating energy demand is provided from the solar source for the typical meteorological year. Hourly computer simulations of the performance of these systems were carried out for 10 cities in the United States for 3 different building types and 4 community sizes. These permitted the use of design values for evaluation of a more simplified system sizing method. Results of this study show a strong correlation between annual collector efficiency and two major, location-specific, annual weather parameters: the mean air temperature during daylignt hours and the total global insolation on the collector surface. Storage capacity correlates well with the net winter load, which is a measure of the seasonal variation in the total load, a correlation which appears to be independent of collector type.
- University of North Texas United States
- University of Toronto Canada
- University of North Texas United States
Solar District Heating, Optimization, Design, Space Heating, Communities, 14 Solar Energy, Annual Energy Storage, Energy Storage, Heating, Storage 140901* -- Solar Thermal Utilization-- Space Heating & Cooling, Heating Load, Solar Water Heating, Size, Sensible Heat Storage, District Heating, Solar Space Heating, Solar Heating, Heat Storage
Solar District Heating, Optimization, Design, Space Heating, Communities, 14 Solar Energy, Annual Energy Storage, Energy Storage, Heating, Storage 140901* -- Solar Thermal Utilization-- Space Heating & Cooling, Heating Load, Solar Water Heating, Size, Sensible Heat Storage, District Heating, Solar Space Heating, Solar Heating, Heat Storage
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