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Full-Link Energy Efficiency Analysis of Wind Powered Heating System based on Energy Flow Chart

机译:基于能量流图的风电供暖系统全链路能效分析

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As an active attempt in the transformation of clean energy, wind powered heating system has attracted increasing attention in recent years. However, how to evaluate its energy efficiency has not been discussed in depth. This paper applies energy flow chart to analyze the whole-link energy efficiency considering source-load matching mode meticulously. Firstly, statistics on heat demand and clean electricity supply is analyzed in detail from perspectives including quantity, time, space and trend. Subsequently, a time sequence simulation model with wind power accommodation and efficiency taken into account is established to calculate the energy flow for each link of the system. Indicators are proposed from two aspects of energy and exergy which will be calculated based on the energy flow method. Case study is based on practice data of the Northern Hebei Province. Results show that the matching mode of source and load has an important effect on energy efficiency, for instance, the energy consumption increases 7.78kgce/GJ in the later stage of heating season compared with the medium stage. And if the system is designed reasonablly, wind power-to-heat system could be competitive compared with the traditional coal-fired heating system with less than half energy consumption, nearly twice thermal efficiency, and higher exergetic efficiency.
机译:作为清洁能源转型的积极尝试,近年来,风能供暖系统受到越来越多的关注。但是,如何评估其能量效率尚未深入讨论。本文应用能流图,仔细分析了考虑源-负载匹配方式的全链路能效。首先,从数量,时间,空间和趋势等方面详细分析了供热和清洁电力供应的统计数据。随后,建立考虑了风能调节和效率的时序仿真模型,以计算系统每个链接的能量流。从能量和火用两个方面提出了指标,这些指标将根据能量流方法进行计算。案例研究基于河北省北部的实践数据。结果表明,源和负荷的匹配方式对能源效率有重要影响,例如,供暖季节后期能源消耗比中期增加7.78kgce / GJ。而且,如果合理设计该系统,与传统的燃煤供暖系统相比,风能制热系统的能耗不到一半,热效率几乎提高了一倍,并且热能利用率更高。

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