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Optimization of heating system for residential building according to life cycle costs when multiple heat sources are utilized with heat pump

机译:当热泵使用多个热源时,根据生命周期成本优化住宅建筑供暖系统

摘要

The basis of this thesis was to optimize heat pump that uses multiple heat sources to get competitive heating system for residential building when life cycle costs are considered. The objectives were to compile necessary information to calculate life cycle costs for heating system of residential building and start to compose of designing program for heat pump based heating systems. Examinations were made for the purchase energy need of residential building. Features of heat pump, considered refrigerant and potential heat sources were examined to find out heat production potential of heat pumps. Necessary information for life cycle cost calculation was also examined. Collected data was used in two case analyses to design selected heat production systems and calculate their life cycle costs.On the basis of case analyses heat pump based hybrid heat production systems are very competitive on life cycle cost comparison against district heating when residential building uses a lot of energy. New buildings use considerably less energy and achieved energy cost savings with heat pump systems may not be enough to cover the relatively high investment cost in reasonable time period compared to district heating system.The calculation method was found to require further development to at least include the cooling energy need of the building. Cooling demand will continue to grow in the future, which improves the heat pump based heat production systems competitiveness compared to other systems.
机译:本文的基础是在考虑生命周期成本的情况下,优化利用多个热源的热泵,以获得具有竞争力的住宅建筑供热系统。目标是收集必要的信息以计算住宅建筑供热系统的生命周期成本,并开始撰写基于热泵的供热系统的设计程序。对住宅建筑的购买能源需求进行了检查。检查了热泵的特性,考虑的制冷剂和潜在的热源,以找出热泵的产热潜力。还检查了生命周期成本计算所需的信息。在两个案例分析中使用收集到的数据来设计选定的供热系统并计算其生命周期成本。在案例分析的基础上,当住宅建筑使用供热系统时,基于热泵的混合供热系统与区域供热相比,在生命周期成本比较方面具有很强的竞争力。精力充沛。与集中供热系统相比,新建筑使用的能源要少得多,并且通过热泵系统节省的能源成本可能不足以在合理的时间内支付相对较高的投资成本。计算方法需要进一步发展,至少包括以下内容:建筑物的冷却能源需求。未来制冷需求将继续增长,与其他系统相比,这将提高基于热泵的供热系统的竞争力。

著录项

  • 作者

    Jaaranen Matti;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 fi
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