| 注册
首页|期刊导航|太阳能|东营市某5MW屋顶分布式光伏发电项目的设计

东营市某5MW屋顶分布式光伏发电项目的设计

李梦琪 王甜 孙凤超 李想 刘睿东 王璐璐

太阳能Issue(6):59-66,8.
太阳能Issue(6):59-66,8.DOI:10.19911/j.1003-0417.tyn20250316.01

东营市某5MW屋顶分布式光伏发电项目的设计

DESIGN OF A 5 MW ROOFTOP DISTRIBUTED PV POWER GENERATION PROJECT IN DONGYING CITY

李梦琪 1王甜 2孙凤超 1李想 1刘睿东 1王璐璐1

作者信息

  • 1. 山东石油化工学院 石油工程学院,东营 257061
  • 2. 山东石油化工学院 石油工程学院,东营 257061||油气藏高效勘探开发与地质工程一体化山东省工程研究中心,东营 257061
  • 折叠

摘要

Abstract

Driven by the accelerated transformation of the global energy structure and China's goals of emission peak and carbon neutrality,in order to promote the low-carbon transformation of enterprise energy consumption structure,this paper proposes to construct a 5 MW rooftop distributed PV power generation project using the rooftop resources of a high energy consuming enterprise in Dongying City.Firstly,based on the characteristics of the rooftop of the factory building,a design scheme for its distributed PV power generation system is proposed from four perspectives:core equipment selection,PV bracket selection,PV array design,and power generation performance evaluation.Then an analysis is conducted on the configuration of the energy storage system.Finally,an analysis is conducted on the environmental benefits of this project.The research results show that:1)This PV power generation system design adopts mono-Si PV modules with a peak power of 580 W,a string inverter with a rated output power of 100 kW,a steel fixed PV bracket,and an optimal installation tilt angle of 32° for PV modules.The single PV string is composed of 17 PV modules connected in series.And an energy storage system has been configured.2)The initial PR during the operation period of this PV power generation system reaches 89.21%,with an average annual equivalent full load hours of 1269 h.Adopting the"self-consumption"mode,it can meet the real-time energy demand of 25.18%to 43.00%of the enterprise.3)This project achieving a cumulative net carbon reduction of 121100 t throughout the entire lifecycle,the carbon emission intensity per unit of power generation is 80 g CO2/(kW·h),which is 90.24%lower than coal-fired power generation.This project can achieve carbon balance in the 5 year,combining the dual advantages of low-carbon emission reduction and energy efficiency improvement in industrial scenarios,providing a scalable engineering paradigm for low-carbon transformation in manufacturing intensive areas.

关键词

屋顶分布式光伏发电/建筑屋顶/光伏组件/方案设计/环境效益

Key words

rooftop distributed PV power generation/building rooftops/PV modules/solution design/environment benefits

分类

信息技术与安全科学

引用本文复制引用

李梦琪,王甜,孙凤超,李想,刘睿东,王璐璐..东营市某5MW屋顶分布式光伏发电项目的设计[J].太阳能,2026,(6):59-66,8.

基金项目

东营市科学发展基金项目(DJB2023029) (DJB2023029)

山东石油化工学院校级大创项目(DC2024030) (DC2024030)

太阳能

1003-0417

访问量0
|
下载量0
段落导航相关论文