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风电场站建筑零碳综合用能技术研究

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为了解决风电场站内办公类建筑的用能问题,实现建筑用能的零碳排放,以锦州地区某风电项目办公楼为例,设计一种以太阳能、空气能等可再生能源为主的多能互补供能系统,介绍了太阳能光伏组件、太阳能集热器、空气源热泵、相变水箱的选型依据及方法,并为该系统配套了智能耦合控制系统.实践结果表明:采用该系统后,该建筑的年发电量为245 767.8 kW·h,二氧化碳的年减排量为188 946.8 t,日集热效率可达60%,相变储能水箱的蓄放热能力约提高55%,多能互补供能系统的综合能效比控制在1.8左右,太阳能的全年保证率为 28%~29%,年费用在12 000元以内,符合我国的"双碳"战略目标.
Research on Zero-carbon Multi-energy Coupling Technology of Wind Farm Station Building
This paper proposes a multi-energy complementarity system for office buildings in wind farm stations,with the goal of achieving"zero carbon"emissions for building energy usage.Taking a certain office building in a wind power project in Jinzhou as an example,a multi-energy complementary energy system is designed for this building,which uses clean renewable energy sources such as solar energy and air energy as the main energy source.The system design involves the selection basis and method of solar photovoltaic modules,solar collectors,air source heat pumps,and phase-change water tanks.An intelligent coupling control system is also provided to achieve automatic operation.The system design has achieved a daily collection efficiency of 60%,a carbon dioxide emission reduction of 188 946.8 tons per year,and an annual electricity generation of 245 767.8 kilowatt-hours.The total energy efficiency ratio of the system is controlled at around 1.8,and annual cost within 12 000 yuan.This system is accord with the"double carbon"strategic goal.

Solar energyAir energyMulti-energy CouplingZero carbon buildings

赵笑言、高继录、史建军、雷凯超、胜兴

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中电投东北能源科技有限公司 创新与研发部,辽宁 沈阳 110015

沈阳工程学院 能源与动力学院,辽宁 沈阳 110136

太阳能 空气能 多能耦合 零碳建筑

2024

沈阳工程学院学报(自然科学版)
沈阳工程学院

沈阳工程学院学报(自然科学版)

影响因子:0.467
ISSN:1673-1603
年,卷(期):2024.20(1)
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