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昆明冶金职业大学学报 ›› 2026, Vol. 42 ›› Issue (3): 60-.DOI: 10.3969/j.issn.1009-0479.2026.03.009

• 机械设计制造与自动化技术 • 上一篇    下一篇

“双碳” 目标下钢铁企业分布式光伏发电项目设计策略

  

  1. (昆明冶金职业大学电气与机械学院,云南昆明650033)
  • 出版日期:2026-08-31 发布日期:2026-09-04
  • 作者简介:王小虎(1986-),男,云南勐腊人,正高级工程师,工学硕士,主要从事电气自动化和新能源研究。

Design Strategy of Distributed Photovoltaic Power Generation Project in Iron and Steel Enterprises Under "Carbon Peak and Carbon Neutrality" Target

  1. (FacultyofElectricalandMechanicalEngineering,KunmingMetallurgyUniversity,Kunming650033,China)
  • Online:2026-08-31 Published:2026-09-04

摘要: 在 “碳达峰、碳中和” 战略目标下,钢铁工业兼具高耗能、高碳排放特征,面临外购火电成本高、厂区闲置空间利用率低的双重难题。本文以某钢铁企业屋顶分布式光伏项目为研究对象,系统开展太阳能资源评估、光伏系统设计、并网方案制定及发电量与减排效益测算。研究结果表明,该项目利用 12.6 万 m² 厂房屋顶,采用 620Wp N 型单晶硅组件,总装机规模达 11.28MWp;通过 “自发自用” 并网模式接入厂区 10kV 电网,年平均上网电量 1380.60 万 kWh,可年均节约标煤 4151.46t,减少 CO₂排放 7469.05t。本研究验证了钢铁厂区闲置空间与分布式光伏结合的技术可行性,为钢铁行业向低碳方向发展提供了可供参考的实践依据。

关键词: “双碳”目标, 钢铁企业, 分布式光伏, 光伏系统设计, 并网方案, 节能减排

Abstract:

 Under the strategic target of "Carbon Peak and Carbon Neutrality", the iron and steel industry, as a high energy consumption and high carbon emission industry, is facing the dual problems of high cost of purchasing thermal power and low utilization rate of idle space in the plant area. In this paper, the rooftop distributed photovoltaic project of an iron and steel enterprise is taken as the research object, and the solar energy resource assessment, photovoltaic system design, grid‑connected scheme formulation, power generation and emission reduction benefit calculation are systematically carried out. The results show that the project uses 126000 square meters of factory roof, 620 Wp N‑type monocrystalline silicon modules, and the total installed capacity is 11.28 MWp. It is connected to the 10 kV power grid in the plant area through the "self‑generation and self‑use" grid connection mode, with an average annual on‑grid electricity of 13.806 million kWh, which can save 4151.46 t of standard coal and reduce 7469.05 t of CO₂ emissions. This study verifies the feasibility of the combination of idle space in steel plant and distributed photovoltaic, provides a reference technical path for the development of low‑carbon steel industry.

Key words:  "Carbon Peak and Carbon Neutrality" project, iron and steel enterprises, distributed photovoltaic (PV), PV system design, grid?connection scheme, energy conservation and emission reduction

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