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The Watergy Greenhouse: A Closed System for Solar Thermal Energy Collection, Water Treatment and Advanced Horticulture

机译:潮湿的温室:太阳能热能收集,水处理和先进园艺的封闭系统

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Project Watergy, funded by the European Community's Vth Framework in its Energy, Environment and Sustainable Development program, consists in the development of a humid air solar collector system that follows the principle of a closed two phase thermosyphon. The first product of the project is a prototype for application in arid climate: a closed system for solar thermal energy capture, water recycling, water desalination and advanced horticultural use. It consists of a closed greenhouse connected with a vertical solar air collector which functions as a solar chimney. An air-water heat exchanger contained in a cooling duct inside the tower provides climate regulation of the greenhouse, powered by the buoyancy induced by the solar tower. The efficiency of the heat exchange processes is enhanced by the utilization of latent heat due to constant humidification/de-humidification of air in the process. The condensation associated with the cooling of the nearly saturated air also provides distillation of water. The thermal energy released in the process is stored outside the greenhouse for being used as heating or further water distillation during the night. Plants are an essential part of the whole process, being a means of gray water processing and a source of humidification of the air, and together with water and heat, biomass production is the main output of the system. A detailed explanation of the system and its components is presented, describing the heat accumulators, the heat exchanger in the cooling duct, and the secondary collector which further heats and humidifies the air from the greenhouse on its way to the cooling tower. The horticultural concept of the greenhouse is also outlined. The functioning of the system is described, the main challenges encountered are explained, and the first results obtained after the first growing season under evaluation are presented.
机译:由欧洲共同体的VTH框架资助的项目融资在其能源,环境和可持续发展方案中资助的,包括开发潮湿的空气太阳能集热系统,遵循封闭的两相热烃原理。该项目的第一个产品是在干旱气候中应用的原型:用于太阳能热能捕获,水循环,水海水淡化和先进的园艺使用的封闭系统。它包括一个封闭的温室,与垂直的太阳能空气收集器相连,可用作太阳能烟囱。塔内的冷却管道中包含的空气热交换器提供温室的气候调节,由太阳塔诱导的浮力提供动力。通过在该过程中的恒定加湿/去加湿由于空气中的恒定加湿/去湿性的利用而增强了热交换过程的效率。与近饱和空气的冷却相关的冷凝也提供了水的蒸馏。在该过程中释放的热能储存在温室之外,以便在夜间用作加热或进一步的水蒸馏。植物是整个过程的重要组成部分,是灰水处理的手段和空气加湿的源,以及水和热量,生物量产量是系统的主要输出。提出了对系统及其部件的详细说明,描述了蓄热器,冷却管道中的热交换器,以及进一步加热并从温室中加热到冷却塔的方式进一步加热的二次收集器。温室的园艺概念也概述。描述了系统的功能,解释了遇到的主要挑战,并提出了在评价第一次生长季后获得的第一结果。

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