比较平板式太阳能集热器和管式集热器的参数,确保智能建筑的能源灵活性

Murat Kunelbayev, Madina Mansurova, Gulnur Tyulepberdinova, T. Sarsembayeva, S. Issabayeva, D. Issabayeva
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引用次数: 0

摘要

本研究探讨了建筑节能措施和战略的应用和实施,旨在实现建筑能耗几乎为零的目标。特别是,该研究的目的是在建筑物中引入集成太阳能设备,作为结构的一个功能性组成部分进行蓄热,以提高结构的灵活性,同时保持室内舒适的条件。本文讨论了哈萨克斯坦南部和北部地区平板式和管式太阳能集热器的实验比较。与玻璃(S = 3)相比,管状太阳能集热器的导热系数单层元件低 2 倍,双层元件低 2.5 倍。这意味着热量损失更少。此外,还开发了一种平板式太阳能集热器,这是一种隔热半透明双层玻璃窗,压力较低,冷却剂由薄壁波纹不锈钢管制成。在这种集热器中,热量不断循环,消除了面板和隔热材料之间的额外隔断,从而提高了传热效率。通过计算,我们可以确定两个集热器的生产率和有用增益。平板式太阳能集热器每年增加的有用能量约为 12780000 千焦/小时,管式太阳能集热器每年增加的有用能量约为 20100000 千焦/小时;因此,在北方地区,抽空管式集热器每年增加的有用能量比平板式集热器多 20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of the parameters of a flat solar collector with a tubular collector to ensure energy flexibility in smart buildings
This study examines the application and implementation of energy-efficient measures and strategies for use in buildings aimed at achieving the goal of virtually zero energy consumption by buildings. In particular, the aim of the study is to introduce integrated solar devices into the building, functioning as a functional component of the structure for heat storage, in order to increase the flexibility of the structure while maintaining comfortable conditions inside. This article discusses an experimental comparison of flat and tubular solar collectors in the southern and northern regions of Kazakhstan. Compared to glass (S = 3), a tubular solar collector has a coefficient of thermal conductivity that is two times lower for single-layer elements and 2.5 times lower for double-layer elements. This means that less heat is lost. A flat solar collector was also developed, a heat-insulating translucent double-glazed window with reduced pressure, and the coolant is made of thin-walled corrugated stainless-steel pipe. In this collector, there is a constant circulation of heat, which increases the efficiency of heat transfer by eliminating additional partitions between the panel and thermal insulation. A calculation was carried out that allowed us to determine the productivity and useful gain for two collectors. The annual increase in the useful energy of flat solar collectors is about 12780000 kJ/hour and 20100000 kJ/hour for tubular solar collectors; therefore, the annual increase in the useful energy of evacuated tubular collectors is 20% more than that of flat plate collectors in the northern region.
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