摘要
常规海上平台采用普通LED照明,灯具节能技术已达到瓶颈,照明负荷及电费优化困难。随着国家对碳达峰、碳中和的持续推进,海上油气平台对设备节能环保、节能降碳高度重视。智慧照明系统以照明灯具为智能联接管控对象,通过可靠的物联网技术和设备,实现了照明灯具的照度调节、能效监测、故障告警、寿命预测、信息追溯等功能,达到了高效率、精细化、低成本的照明管理。以海上某新建平台为例,对平台采用常规LED照明方案与基于物联网的智慧照明方案进行了详细对比分析,根据分析结果可知,采用智慧照明系统节电量约41.3%,年减少CO_(2)排放39.17 t,年节煤量约13.89 tce,节能降碳效果显著,可为后续油气田工程建设提供重要的参考借鉴。
The conventional offshore platforms are provided with ordinary LED lighting.However,the energy conservation technology of lamps has reached the bottleneck,and it is difficult to optimize the lighting load and electricity bill.With the continuous promotion of carbon peak and carbon neutrality,the offshore oil and gas platforms has attached great importance to energy conservation,environmental protection,energy conservation and carbon reduction of equipment.The intelligent lighting system takes the lighting lamps as the intelligent connection control objects.Through reliable Internet of Things technology and equipment,the lighting lamps have been realized the illumination adjustment,energy efficiency monitoring,fault alarm,life prediction,information traceability and other functions,which achieves high efficiency,fine and low-cost lighting management.Taking a new platform as example,a detailed comparison and analysis of conventional LED lighting scheme and smart lighting scheme based on the Internet of things are made.According to the analysis results,the intelligent lighting system is saved about 41.3%of electricity,reduced the carbon dioxide emission by 39.17 t per year.Even more to the point,the coal saving amount is about 13.89 tce per year,and the energy conservation and carbon reduction effect is remarkable,which can be provided important reference for subsequent oil and gas field engineering construction.
作者
封园
FENG Yuan(Bohai Oil Research Institute of Tianjin Company,CNOOC)
出处
《石油石化节能与计量》
CAS
2024年第2期23-26,共4页
Energy Conservation and Measurement in Petroleum & Petrochemical Industry
关键词
海上平台
智慧照明系统
LoRa通讯
节能降碳
offshore platform
intelligent lighting system
LoRa communication
energy conservation and carbon reduction