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Experimental research and energy consumption analysis on the economic performance of a hybrid-power gas engine heat pump with LiFePO_4 battery

机译:用LiFepo_4电池进行混合动力燃气发动机热泵经济性能的实验研究与能耗分析

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摘要

Hybrid power gas engine heat pump (HPGHP) is a novel air conditioning system that uses a power battery as an auxiliary power source to achieve efficient engine operation. Considering that frequent changes in external load can cause frequent charge/discharge of the battery and adversely affect energy conversion efficiency, lithium iron phosphate (LiFePO_4) battery was used as the auxiliary power source to analyze its economic performance. A dynamic energy control strategy based on engine economic zone and battery status was proposed to realize power distribution between gas engine and electric motor. By analyzing the fuel consumption rate, energy conversion efficiency and energy consumption, the superior performance of the LiFePO_4 battery HPGHP was confirmed. Test results show that the minimum gas consumption rate of LiFePO_4 battery HPGHP under low-load, medium-load and high-load conditions was 12.2%, 1.07%, and 6.54% lower than that of lead-acid battery HPGHP. Equivalent energy conversion efficiency was about 7.03%, 0.98%, and 10.42% higher than lead-acid battery HPGHP, 18.56%, 1.98%, and 27.2% higher than conventional GEHP. In addition, energy consumption analysis indicates that the annual primary energy rate (PER) of LiFePO_4 battery HPGHP was about 39.85%, 28.35%, and 8.4% higher than electrical heat pump (EHP), GEHP and lead-acid battery HPGHP.
机译:混合动力燃气发动机热泵(HPGHP)是一种新型空调系统,它使用电力电池作为辅助电源以实现高效的发动机操作。考虑到外部负荷的频繁变化可能导致电池频繁充电/放电,并对能量转换效率产生不利影响,磷酸铁锂(LiFePo_4)电池用作辅助电源,以分析其经济性能。提出了一种基于发动机经济区和电池状态的动态能量控制策略,实现了燃气发动机和电动机的功率分布。通过分析燃料消耗率,能量转换效率和能耗,确认了LiFepo_4电池HPGHP的卓越性能。测试结果表明,低负荷,中负荷和高负荷条件下LiFePO_4电池HPGHP的最小汽油消耗率为12.2%,1.07%,低于铅酸电池HPGHP的12.2%,1.07%和6.54%。相同的能量转化效率约为7.03%,0.98%,高于铅酸电池HPGHP,18.56%,1.98%,比常规Gehp高出27.2%。此外,能量消耗分析表明,比电热泵(EHP),GeHP和铅酸电池HPGHP,生命速率分析的年一次初级能量率(每周)约为39.85%,28.35%,28.35%和8.4%。

著录项

  • 来源
    《Energy 》 |2021年第2期| 118913.1-118913.11| 共11页
  • 作者单位

    School of Energy and Power Engineering Nanjing Institute of Technology Nanjing 211167 PR China;

    School of Energy and Environment Southeast University Nanjing 210096 PR China;

    School of Energy and Power Engineering Nanjing Institute of Technology Nanjing 211167 PR China;

    School of Energy and Environment Southeast University Nanjing 210096 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HPGHP; LiFePO_4 battery; Management control strategy; Economic performance;

    机译:HPGHP;Lifepo_4电池;管理控制策略;经济表现;

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