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Feasibility study about using a stand-alone wind power driven heat pump for space heating

机译:关于使用独立的风力驱动热泵进行空间供热的可行性研究

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摘要

Reducing energy consumption and increasing the use of renewable energy in the building sector are crucial to the mitigation of climate change. Wind power driven heat pumps have been considered as a sustainable measure to supply heat to the detached houses, especially those that even do not have access to the electricity grid. This work is to investigate the dynamic performance of a heat pump system driven by wind turbine through dynamic simulations. In order to understand the influence on the thermal comfort, which is the primary purpose of space heating, the variation of indoor temperature has been simulated in details. Results show that the wind turbine is not able to provide the electricity required by the heat pump during the heating season due to the intermittent characteristic of wind power. To improve the system performance, the influences of the capacity of wind turbine, the size of battery and the setpoint of indoor temperature were assessed. It is found that increasing the capacity of wind turbines is not necessary to reduce the loss of load probability; while on the contrary, increasing the size of battery can always reduce the loss of load probability. The setpoint temperature clearly affects the loss of load probability. A higher setpoint temperature results in a higher loss of thermal comfort probability. In addition, it is also found that the time interval used in the dynamic simulation has significant influence on the result. In order to have more accurate results, it is of great importance to choose a high resolution time step to capture the dynamic behaviour of the heat supply and its effect on the indoor temperature.
机译:减少能源消耗和增加建筑部门对可再生能源的利用对缓解气候变化至关重要。风力驱动的热泵被认为是向独立房屋提供热量的可持续措施,尤其是那些甚至无法接入电网的房屋。这项工作是通过动态仿真研究风力涡轮机驱动的热泵系统的动态性能。为了了解对空间采暖的主要目的即热舒适性的影响,已详细模拟了室内温度的变化。结果表明,由于风力的间歇性,风力涡轮机无法在供暖季节提供热泵所需的电力。为了提高系统性能,评估了风力涡轮机容量,电池大小和室内温度设定值的影响。已经发现,增加风力涡轮机的容量对于减少负载损失的概率不是必需的。相反,增加电池尺寸总是可以减少负载损失的可能性。设定温度明显影响负载概率的损失。较高的设定点温度会导致较高的热舒适性损失。此外,还发现动态仿真中使用的时间间隔对结果有很大影响。为了获得更准确的结果,选择高分辨率的时间步长以捕获供热的动态行为及其对室内温度的影响非常重要。

著录项

  • 来源
    《Applied Energy》 |2018年第258期|1486-1498|共13页
  • 作者单位

    Ningbo RX New Materials Tch. Co. Ltd Future Energy School of Business Society and Engineering Mälardalen University Tianjin Key Laboratory of Refrigeration Technology Tianjin University of Commerce;

    Ningbo RX New Materials Tch. Co. Ltd Future Energy School of Business Society and Engineering Mälardalen University Department of Chemical Engineering KTH Royal Institute of Technology;

    Ningbo RX New Materials Tch. Co. Ltd Department of Chemical Engineering KTH Royal Institute of Technology;

    Future Energy School of Business Society and Engineering Mälardalen University Department of Chemical Engineering KTH Royal Institute of Technology;

  • 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

    Wind power; Heat pump; Dynamic performance; Space heating; Standalone system; Loss of load probability; Sweden;

    机译:风力;热泵;动态性能;空间供暖;独立系统;失去负载的可能性;瑞典;

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