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Simulation and performance analysis of combined parallel solar thermal and ground or air source heat pump systems

机译:太阳热能与地面或空气源热泵组合并联系统的仿真和性能分析

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摘要

The combination of solar thermal (ST) systems and heat pumps (HP) is a promising hybrid heating system concept for efficient energy supply of buildings. In this work, a simulation study on the performance of combined ST and HP systems and a comparison with systems without ST collectors for different types of buildings and climates is presented. With regard to the dominating market-available systems, the evaluation is limited on systems with parallel integration of ST collectors. For a better transparency of the results, the simulation models and the main model parameterization are explained in detail. The results of the simulations show that the performance of HP systems can significantly be increased by adding a ST system. The relative increase of the performance decreases with increasing space heating demand of the building and is lower for climates with low ambient temperatures. In contrast, in most cases the absolute electricity savings increase with increasing space heating demand and are higher for systems with air source HPs. The seasonal performance factor (SPF) of parallel solar thermal and ground source heat pump (SGSHP-P) systems is between 0.5-1.1 (Strasbourg) and 1.0-2.0 (Helsinki) higher than the SPF of parallel solar thermal and air source heat pump (SASHP-P) systems with the same ST collector area. Hence, the difference between the performance of SASHP-P and SGSHP-P systems increases with increasing heat load and decreasing ambient temperatures of the location. However, in case of moderate climates like Strasbourg, SASHP-P systems can achieve the same or even higher values of SPF than ground source heat pump (GSHP) systems without ST collectors. Especially for buildings with low energy demand for space heating, the SPF is higher (up to 78.5% with a collector area of 25 m(2)) and the systems can compete with each other. In a nutshell, in particular if the investment costs of a borehole heat exchanger and a ST system are similar or if there is no possibility to use a GSHP system with borehole heat exchanger, using a SASHP-P system may be a useful opportunity for a heating system concept with high energy performance and low electricity demand. (C) 2017 Elsevier Ltd. All rights reserved.
机译:太阳能热(ST)系统和热泵(HP)的结合是一种有前途的混合供热系统概念,可用于建筑物的高效能源供应。在这项工作中,将对组合式ST和HP系统的性能进行仿真研究,并与针对不同类型建筑物和气候的无ST收集器的系统进行比较。关于主导市场的系统,评估仅限于具有ST集热器并行集成的系统。为了更好地透明化结果,将详细说明仿真模型和主模型参数化。仿真结果表明,通过添加ST系统,可以大大提高HP系统的性能。性能的相对增加随着建筑物空间供暖需求的增加而降低,而对于环境温度较低的气候则相对较低。相比之下,在大多数情况下,绝对节电会随着空间供暖需求的增加而增加,而对于带有空气源HP的系统来说,绝对节电更高。平行太阳能热和地源热泵(SGSHP-P)系统的季节性性能系数(SPF)比平行太阳能热和地源热泵的SPF高0.5-1.1(斯特拉斯堡)至1.0-2.0(赫尔辛基) (SASHP-P)系统具有相同的ST集电极区域。因此,SASHP-P和SGSHP-P系统的性能差异随热负荷的增加和位置周围环境温度的降低而增加。但是,在斯特拉斯堡这样的中等气候条件下,与没有ST集热器的地源热泵(GSHP)系统相比,SASHP-P系统可以获得的SPF值甚至更高。特别是对于空间供暖能源需求低的建筑物,SPF更高(集热器面积为25 m(2)时高达78.5%),并且系统可以相互竞争。简而言之,特别是如果井筒热交换器和ST系统的投资成本相近,或者如果不可能将GSHP系统与井筒热交换器一起使用,则使用SASHP-P系统可能是一个有用的机会。高能量性能和低电力需求的供热系统概念。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2017年第7期|500-511|共12页
  • 作者单位

    Saarland Univ, Chair Automat & Energy Syst, D-66123 Saarbrucken, Germany;

    Saarland Univ, Chair Automat & Energy Syst, D-66123 Saarbrucken, Germany;

    Univ Appl Sci, Htw Saar, D-66117 Saarbrucken, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar thermal heat pump; Hybrid systems; Simulation; Performance;

    机译:太阳能热泵;混合动力系统;仿真;性能;

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