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Influence of boundary conditions and component size on electricity demand in solar thermal and heat pump combisystems

机译:边界条件和组件尺寸对太阳能热泵和热泵组合系统中电力需求的影响

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摘要

Solar thermal and heat pump combisystems are used to produce domestic hot water (DHW) and space heating (SH) in dwellings. Many systems are available on the market. For an impartial comparison, a definite level of thermal comfort should be defined and ensured in all systems. This work studied the influence of component size on electricity demand for a state of the art solar thermal and heat pump system. A systematic series of parametric studies was carried out by using TRNSYS to show the impact of climate, load and size of main components as well as heat source for the heat pump. Penalty functions were used to ensure that all variations provided the same comfort requirements. Two reference systems were defined and modelled based on products on the market, one with ambient air and the other with borehole as heat source for the heat pump. The results show that changes in collector area from 5 to 15 m(2) result in a decrease in system electricity of between 305 and 552 kW h/year. Changes in heat exchanger size for DHW preparation were shown to give nearly as large changes in electricity use due to the fact that the set temperature in the store was changed to give the same thermal comfort in all cases. Decrease in heat pump size was shown to give a decrease in electricity use for the ASHP in the building with larger heat demand while it increased or had only a small change for other boundary conditions. Heat pump losses were shown to be an important factor highlighting the importance of modelling this factor explicitly. (C) 2015 Elsevier Ltd. All rights reserved.
机译:太阳能热泵和热泵组合系统用于在住宅中产生生活热水(DHW)和空间供暖(SH)。市场上有许多系统可用。为了进行公正的比较,应在所有系统中定义并确保一定水平的热舒适度。这项工作研究了最先进的太阳能热泵和热泵系统的组件尺寸对电力需求的影响。使用TRNSYS进行了系统的系列参数研究,以显示气候,主要部件的负载和尺寸以及热泵的热源的影响。惩罚功能用于确保所有变体提供相同的舒适性要求。根据市场上的产品定义和建模了两个参考系统,其中一个使用环境空气,另一个使用井眼作为热泵的热源。结果表明,收集器面积从5到15 m(2)的变化导致系统用电量每年减少305至552 kW h。由于在所有情况下都更改了存储中的设定温度以提供相同的热舒适性,因此用于DHW制备的热交换器尺寸变化显示出几乎相同的用电量变化。研究表明,热泵尺寸的减小使ASHP在建筑物中的用电量减少,而对热量的需求更大,而在其他边界条件下则增加或变化很小。事实证明,热泵损失是一个重要因素,凸显了对此因素进行建模的重要性。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Applied Energy 》 |2016年第15期| 1062-1073| 共12页
  • 作者单位

    Dalarna Univ Coll, Solar Energy Res Ctr SERC, S-79188 Falun, Sweden|KTH, Dept Energy Technol, SE-10044 Stockholm, Sweden;

    Dalarna Univ Coll, Solar Energy Res Ctr SERC, S-79188 Falun, Sweden;

    Univ Appl Sci HSR, Inst Solartech SPF, CH-8640 Rapperswil, Switzerland;

    Graz Univ Technol, Inst Thermal Engn, A-8010 Graz, Austria;

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

    Solar combisystem; Heat pump; Component size; Simulation;

    机译:太阳能组合系统;热泵;组件尺寸;模拟;

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