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Physics, computer simulation and optimization of thermo-fluidmechanical processes of solar updraft power plants

机译:太阳能上升气流发电厂的物理,计算机模拟和热流体力学过程的优化

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摘要

Solar updraft power plants (SUPPs) form a very modern and rather efficient solar power technology. SUPPs consist of the glass-covered collector area (CA), in its centre the solar chimney (SC), and around the SC's perimeter the power conversion unit (PCU). To evaluate the power/energy harvest of such plants, computer simulations comprise all physical processes in the mentioned plant components. For this purpose the thermo-fluiddynamics is described and formulated. An important aspect is the modeling of the transformation of the solar irradiation into heat-flux of the collector airflow, requiring the combination of different physical fields, such as thermodynamics, fluidmechanics and radiation-physics. All this leads to a highly nonlinear process description for the SUPPs' power harvests, for which solution fast computer algorithms are developed. In the course of the treatment, typical process variables of SUPPs are explained, and computed results for investigated plants demonstrate the capability of the derived software and the efficiency of SUPPs. The suitability of solar updraft power technology for arid zones in the world is finally detailed by example of two especially optimized SUPP-families.
机译:太阳能上升气流发电厂(SUPP)形成了一种非常现代且相当高效的太阳能发电技术。 SUPP由覆盖玻璃的集热区(CA),位于中心的太阳能烟囱(SC)以及围绕SC周边的功率转换单元(PCU)组成。为了评估此类植物的功率/能量收获,计算机模拟包括上述植物组件中的所有物理过程。为此,描述并制定了热流体动力学。一个重要方面是将太阳辐射转换为集热器气流的热通量的模型,这需要结合不同的物理场,例如热力学,流体力学和辐射物理学。所有这些导致了SUPPs功率收集的高度非线性过程描述,为此开发了快速计算机算法解决方案。在处理过程中,对SUPPs的典型过程变量进行了说明,对被调查工厂的计算结果证明了衍生软件的功能和SUPPs的效率。最后,以两个特别优化的SUPP系列为例,详细说明了太阳能上升气流发电技术在世界干旱地区的适用性。

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