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FEASIBILITY STUDY OF SOLAR DESICCANT COOLING FOR AN INSTITUTIONAL BUILDING IN SUBTROPICAL QUEENSLAND, AUSTRALIA

机译:澳大利亚亚热带昆士兰州亚热带建筑的太阳干燥剂冷却可行性研究

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Institutional buildings contain different functional spaces which require different types of heating and ventilating air conditioning HVAC. In order to provide a suitable work environment for the occupants of an institutional building, the buildings (HVAC) system must provide a thermal comfort level and a healthy living environment. However the extensive use of conventional cooling systems in institutional building consider as the biggest energy consumer. Building designer's main task is to maintain the optimal indoor comfort condition with minimal energy consumption and minimal environmental negative impact. Now a day there is a big interest in non conventional HVAC system especially in solar thermal cooling technologies. The most common types of solar cooling technologies are: solar absorption cooling system and solar desiccant cooling system. The use of a solar desiccant cooling system to reduce moisture from the air and to improve indoor air quality is found to be economical, environmental friendly and readily achievable in the tropics. In this study a feasibility study of solar desiccant cooling system in an institutional building under Queensland subtropical climate namely the city of Rockhampton will be presented using different types of solar collectors. The study will focus on system technical performance using TRNSYS 16 under a typical meteorological year TMY. It first introduces the issue of Indoor air quality, thermal comfort standards, humidity, air moisture, mould growth and then the technical performance of thermally activated desiccant cooling technology. Results showed that during cooling season 1.2 Coefficients of performance COP can be achieved with 60% of annual solar fraction if a 20 m~2 of evacuated tube collectors area and 1.5 m~3 of solar hot water storage volume installed.section.
机译:制度建筑含有不同的功能空间,需要不同类型的加热和通风空调HVAC。为了为机构建设的乘员提供合适的工作环境,建筑物(HVAC)系统必须提供热舒适度和健康的生活环境。然而,在机构建筑中广泛使用传统的冷却系统认为是最大的能源消费者。建筑设计师的主要任务是保持最佳的室内舒适度条件,能耗最小,环境负面影响最小。现在,每天都有一个大兴趣的非传统HVAC系统,特别是在太阳能热冷却技术中。最常见的太阳能冷却技术是:太阳能吸收冷却系统和太阳能干燥剂冷却系统。使用太阳干燥剂冷却系统可从空气中减少水分并改善室内空气质量,以经济,环保,在热带地区易于实现。在这项研究中,在昆士兰州亚热带气候下的机构建设中的太阳干燥剂冷却系统的可行性研究即将使用不同类型的太阳能收集器呈现Rockhampton市。该研究将在典型气象年度TMY下专注于使用Trnsys 16的系统技术性能。它首先介绍了室内空气质量,热舒适度,湿度,空气水分,模具生长的问题,然后是热激活干燥剂冷却技术的技术性能。结果表明,在冷却季期间,如果安装了20米〜2的抽空管收集器区域和安装的太阳能热水储存量,则可以通过60%的年度太阳能分数实现性能COP系数。

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