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首页> 外文期刊>Heat transfer >Energetic and exergetic investigation on lauric and stearic acid phase-change material-based thermal energy storage system integrated with engine exhaust
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Energetic and exergetic investigation on lauric and stearic acid phase-change material-based thermal energy storage system integrated with engine exhaust

机译:基于月桂酸和硬脂酸相变材料的热能存储系统与发动机排气的能量和能量研究

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摘要

Energy and exergy analysis comparison of lauric and stearic acid phase-change material (PCM)-based energy storage system integrated with engine exhaust have been investigated in the present study, which provides more realistic assessment than the conventional energy analysis. On the basis of thermodynamic laws, energy, exergy, charging efficiencies, and availability of PCM thermal storage with various mass fractions have been investigated at engine full load. The exergy saved for PCMs in the overall system is quantified and were compared. The results revealed a considerable enhancement in energy and exergy efficiency for thermal energy storage with lauric acid PCM due to its enhanced thermophysical properties. Energy and exergy of the storage medium for lauric acid PCM with 0.4 kg mass fraction, increased by 68% and 57.5% compared with stearic acid PCM thermal storage integrated with a diesel engine. Also, energy and exergy efficiency of charging and integrating the system with stearic acid PCM decrease with increase in mass fractions. Thus, lauric acid PCM can be used as thermal storage medium at high temperatures for exhaust heat recovery from engines and also an option for green technology.
机译:本研究研究了月桂酸和硬脂酸相变材料(PCM)与发动机废气集成的储能系统的能量和火用分析比较,它比常规的能量分析提供了更现实的评估。根据热力学定律,已经研究了发动机满负荷时能量,火用,充电效率以及具有各种质量分数的PCM热存储的可用性。量化并比较了整个系统中为PCM节省的火用。结果表明,由于具有增强的热物理性能,月桂酸PCM的热能存储在能量和火用效率上有了显着提高。与集成有柴油发动机的硬脂酸PCM蓄热器相比,质量分数为0.4 kg的月桂酸PCM的存储介质的能量和火用分别提高了68%和57.5%。此外,随着质量分数的增加,将系统与硬脂酸PCM充电和集成的能量和火用效率降低。因此,月桂酸PCM可用作高温下的蓄热介质,用于从发动机回收余热,也是绿色技术的一种选择。

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