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A Software Optimization of the Solar Energy System Performance

机译:太阳能系统性能的软件优化

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The energy demand of buildings represents in the balance of heat use and heat consumption of energy complex in the Slovak national economy second largest savings potential. Their complex energy demands is the sum of total investment input to ensure thermal protection and annual operational demands of particular energy systems during their lifetime in building. The application of energy systems based on thermal solar systems reduces energy consumption and operating costs of building for support heating and domestic hot water as well as savings of non-renewable fossil fuels. Correctly designed solar energy system depends on many characteristics, i. e. appropriate solar collector area and tank volume, collector tilt and orientation as well as quality of used components. The evaluation of thermal solar system components by calculation software shows how can be the original thermal solar system improved by means of performance. The system performance can be improved of more than 31 % than in given system by changing four thermal solar system parameters such as heat loss coefficient and aperture area of used solar collector, storage tank volume and its height and diameter ratio.
机译:建筑物的能源需求代表了斯洛伐克国民经济第二大储蓄潜力中的热量使用和热量消耗。他们的复杂能源需求是总投资投入的总和,以确保在建筑物终生期间对特定能源系统的热保护和年度运行需求。基于热太阳能系统的能量系统应用降低了支持加热和国内热水的建筑能耗和运营成本,以及不可再生化石燃料的节省。正确设计的太阳能系统取决于许多特征,我。 e。适当的太阳能集热器区域和罐容量,收集器倾斜和方向以及使用的组件的质量。通过计算软件对热太阳系组件的评估显示了如何通过性能提高原始的热太阳系。通过改变四个热太阳系参数,例如使用过的太阳能收集器,储罐容量及其高度和直径比,可以提高系统性能比给定系统的提高超过31%。

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