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Hybrid solar-biomass system for district heating

机译:用于区域供热的混合太阳能-生物质系统

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The energy used in the built-up environment represents at least 40% of the total energy consumed, out of which, at least 60% is required for heating, cooling and domestic hot water (DHW). Within the European Union, more than 6,000 communities (i.e. over 9%) use district heating systems, the majority of which use the conversion of fossil fuels as a source of energy. This aspect, which is corroborated by the directives of the EU legislation on the use of renewable energy sources and energy performance, imposes the development of new solutions through which the existing district heating systems may be adapted to use renewable energy sources. The solar-thermal systems that are used on a large (district) scale are becoming more and more efficient from the point of view of their feasibility; however, it is almost impossible to create systems that should satisfy the thermal energy demand throughout the four seasons of the year. The hybrid solar-biomass system is becoming the applicable solution for the majority of the communities that have from this potential, since it can secure independence from the point of view of the use of thermal energy. This paper presents the design stages for the implementation of the hybrid solar-biomass systems with a view to identifying the optimal solutions for systems to be integrated into an existing district heating system. A case study (Taberei District in Odorheiu Secuiesc City), which provides a detailed description of the feasible technical solutions, is presented.
机译:建筑环境中使用的能量至少占总能耗的40%,其中至少60%用于加热,冷却和生活热水(DHW)。在欧洲联盟内部,有6,000多个社区(即9%以上)使用区域供热系统,其中大多数使用化石燃料的转化作为能源。这方面得到了有关可再生能源的使用和能源性能的欧盟法规指令的支持,它要求开发新的解决方案,通过该解决方案可以使现有的区域供热系统适应使用可再生能源。从可行性的角度来看,大规模(区域)使用的太阳能系统正变得越来越高效。但是,几乎不可能创建一个可以满足一年四个季节中热能需求的系统。混合太阳能-生物质系统正成为具有这一潜力的大多数社区的适用解决方案,因为从热能的使用角度来看,它可以确保独立性。本文介绍了实施混合太阳能-生物质系统的设计阶段,以期确定将系统集成到现有区域供热系统中的最佳解决方案。提出了一个案例研究(Odorheiu Secuiesc市的Taberei区),其中详细描述了可行的技术解决方案。

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