首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >DESIGN, IMPLEMENTATION, AND EVALUATION OF THERMAL PERFORMANCE OF A THERMOSIPHON FLAT-PLATE SOLAR COLLECTOR FOR WATER HEATING IN ECUADORIAN COASTAL REGION
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DESIGN, IMPLEMENTATION, AND EVALUATION OF THERMAL PERFORMANCE OF A THERMOSIPHON FLAT-PLATE SOLAR COLLECTOR FOR WATER HEATING IN ECUADORIAN COASTAL REGION

机译:厄瓜多尔沿海地区热虹吸板平板太阳能收集器热性能的设计,实施和评价

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Passive solar water heating (SWH) is a convenient method to meet domestic hot water requirements in rural areas, where electricity may not be available or fuel supply might be limited due to difficult access. In this work, a low-cost thermosiphon flat-plate solar collector alternative is presented. The design was purposely limited to materials and recyclable products widely available in the local market, such as Tetra Pak, plastic bottles, and polypropylene (PP) fittings and pipes. Since PP is a thermoplastic polymer, a poor heat conductor, it was necessary to ensure a suitable system isolation to obtain an optimum thermal performance, comparable to commercial solar collectors. The design was built and tested in Guayaquil, Ecuadorian coastal city. Six inexpensive temperature sensors were placed at the entrance and exit of the collector, on the flat-plate and inside the hot water storage tank. Data was recorded using an Arduino single-board computer and later analyzed with the data gathered via weather station. The implementation costs of the system are approximately US$300, the overall performance during January 2017 fluctuated between 54% and 23%, and the storage tank temperature range varied from to 46°C to 33°C. Due to its reliability and affordable cost, the SWH system is an attractive alternative to an Ecuadorian commercial solar flat plate collector, which price is set between US$600 and US$700, it has an efficiency around 60%, and the average annual storage tank temperature is 62°C.
机译:被动太阳能水供暖(SWH)是在农村地区满足国内热水要求的方便方法,在可能无法获得电力或燃料供应可能受到限制。在这项工作中,提出了一种低成本的热虹柱平板太阳能收集器替代方案。该设计目的地仅限于当地市场上广泛提供的材料和可回收产品,如Tetra Pak,塑料瓶和聚丙烯(PP)配件和管道。由于PP是热塑性聚合物,因此较差的导热体,因此必须确保合适的系统隔离以获得与商业太阳能集热器相当的最佳热性能。该设计在厄瓜多尔沿海城市瓜亚基尔建造和测试。将六个廉价的温度传感器放置在收集器的入口和出口处,在平板上,并在热水储罐内部。使用Arduino单板计算机记录数据,然后用通过气象站收集的数据进行分析。该系统的实施成本约为300美元,2017年1月的整体性能波动波动在54%和23%之间,储罐温度范围从46°C变化至33°C。由于其可靠性和经济实惠的成本,SWH系统是厄瓜多尔商用太阳能平板电池的有吸引力的替代品,其价格设定在600美元至700美元之间,其效率约为60%,平均年度储罐温度是62°C。

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