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Solar heat driven water circulation and aeration system for aquaculture

机译:太阳能热驱水循环和水产养殖曝气系统

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摘要

The proposed design concept of water aeration and updraft circulation in aquaculture is based on the OrganicRankine Cycle (ORC) technology and uses a solar energy absorbed by a floating collector. The pressurerequired for the aerator is created by evaporating a working fluid and optimized for an average depth of a pond.The working pressure is defined by the maximum achievable temperature of the working fluid. The condensingheat is rejected at a certain depth with the lowest temperature and drives the convective circulation.A prototype is designed by using common materials and off-the-shelf components to ensure maintenance-freeand proper capacity to fulfil the needs of an average or a small aquaculture farm: the working fluid in theworking chamber evaporates increasing in volume and pumping air out of the vessel as well as the expandedworking fluid in the second working chamber. The working fluid is cooled down in the condenser which issubmerged into the pond and it is condensed while decreasing in volume.The new design can perform multiple cycles per day increasing the volume of pumped air. In order to makethe operation of this unit possible during the night, a heat buffer with a phase changing material (PCM) is used.A parametric study of suitable working fluids and PCMs has been performed in order to select the mostappropriate combination for the target applications.
机译:拟议的水产养殖中的曝气和上浮循环设计概念是基于有机朗肯循环(ORC)技术的,并使用了漂浮收集器吸收的太阳能。曝气机所需的压力是通过蒸发工作流体而产生的,并针对池塘的平均深度进行了优化。工作压力由工作流体可达到的最高温度定义。在最低温度下以一定深度排出冷凝热并驱动对流循环。使用通用材料和现成的组件设计原型,以确保免维护和适当的容量以满足平均或少量的需求水产养殖场:工作室中的工作流体蒸发,体积增加,空气以及第二工作室中膨胀的工作流体从容器中抽出。工作液在冷凝器中冷却,该冷凝器浸入池塘中,冷凝后体积减小。新设计每天可以执行多个循环,从而增加了抽气量。为了使本装置在夜间能够正常运行,使用了具有相变材料(PCM)的热缓冲器。对合适的工作流体和PCM进行了参数研究,以便为目标应用选择最合适的组合。

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