Design and research on monitoring system of soil and water conservation measures in power grid engineering

Ping Liu, Shenghui Wang, Ying Zhang, Jianbo Shi, Xin Liu, Lei Li
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Abstract

The characteristics of pipe network construction and the influence of power transmission and transformation project on soil and water loss were analyzed, and it was proposed that the filter head would produce a certain amount of soil and water loss. Based on the current status and characteristics of soil and water protection, as well as the related soil and water protection measures and monitoring schemes of power transmission and transformation projects, a reasonable and feasible soil and water protection management system of power transmission and transformation projects has been established. The present situation of water loss is objectively reflected in the construction project, and targeted measures are taken. Soil and water conservation measures provide scientific basis for reducing man-made soil and water loss caused by the construction of power grid. Considering the demand of environmental impact assessment and information management of water conservancy projects in the process of power grid engineering research and design and construction management, mobile GIS technology is used to further extend and expand the traditional environmental impact assessment and water conservancy protection platform. Data such as high-resolution images, basic geographic information, environmental assessment and water conservancy special data based on B/S architecture can be quickly uploaded to mobile terminals to realize offline data download, online map viewing and data functions. Field collection and automatic data upload in the era of mobile Internet smart grid environmental design and operation of a new way has been developed.
电网工程水土保持监测系统的设计与研究
分析了管网建设特点和输变电工程对水土流失的影响,提出过滤头会产生一定的水土流失。根据输变电工程水土保护的现状和特点,结合输变电工程的相关水土保护措施和监测方案,建立了合理可行的输变电工程水土保护管理体系。在建设项目中客观反映失水现状,并有针对性地采取措施。水土保持措施为减少电网建设造成的人为水土流失提供了科学依据。考虑到电网工程研究设计和施工管理过程中对水利工程环境影响评价和信息管理的需求,利用移动GIS技术对传统的环境影响评价和水利保护平台进行了进一步的延伸和拓展。基于B/S架构的高分辨率图像、基础地理信息、环评、水利专项数据等数据可以快速上传到移动端,实现离线数据下载、在线地图查看和数据功能。在移动互联网时代,现场采集和数据自动上传为智能电网环境设计和运行开辟了一种新的方式。
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