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大气科学的工程化建设 被引量:4
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作者 温克刚 李黄 +1 位作者 李泽椿 陈新强 《中国工程科学》 2000年第5期72-76,共5页
文章概述了大气科学的涵义及其对人类生存和发展的重要性 ,包括防灾减灾、气候资源的开发利用、生态环境的保护、水资源的可持续利用等。大气科学造福人类的途径是通过大气信息的开发利用 ,而必须按信息工程的特点进行工程化。简要回顾... 文章概述了大气科学的涵义及其对人类生存和发展的重要性 ,包括防灾减灾、气候资源的开发利用、生态环境的保护、水资源的可持续利用等。大气科学造福人类的途径是通过大气信息的开发利用 ,而必须按信息工程的特点进行工程化。简要回顾气象主要工程建设的基本情况及其应用效益 ,提出未来 30年内的发展和大气科学工程建设的基本思路、需要建设的若干骨干工程 :大气监测自动化系统工程、短期气候预测业务系统工程、卫星综合应用业务系统延伸工程、中尺度 (局地 )数值天气预报业务系统工程、人工影响天气系统工程、气象服务体系工程等 。 展开更多
关键词 大气科学 工程化建设 大气监测自动化系统工程 气候预测业务系统工程 人工影响天气工程
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Optimization of key technologies of penstock shaft construction for a pumped storage power station
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作者 ZHENG Jingxing CHEN Jianhua +4 位作者 HUANG Wenfeng YIN Jingke ZHANG Peng ZHANG Rui XIONG Fuyou 《水利水电技术(中英文)》 北大核心 2024年第S2期329-339,共11页
Completing the principal engineering components of a pumped storage power station spans between 50 and 60 months,from the inception of construction to the commencement of power generation by the first unit.The filling... Completing the principal engineering components of a pumped storage power station spans between 50 and 60 months,from the inception of construction to the commencement of power generation by the first unit.The filling of the penstock with water represents a critical phase preceding the production of electricity by the first unit.During this interval,the construction of the diversion shaft presents multiple challenges,including intricate construction procedures,considerable construction difficulty,elevated safety risks,and quality control issues.To address this issue,this study uses CFD software to analyze the flow field,pressure gradient,and head loss of shaft curved section with different curvature radius,and examines several key technologies by drawing on the practice of diversion shaft construction at the Meizhou pumped storage power station.These technologies include optimizing the curvature radius of the curved section of diversion shaft,reverse-well excavation for the shaft,and sliding-up for the lining concrete.It is found that as the curvature radius of shaft curved section reduces from 4 to 2 times the shaft diameter,the hydraulic characteristic index does not change much,and the increase of head loss accounts for about 0.18%of the total head loss of the water conveyance system.The result show that optimizing the curvature radius from 4 times to 2 times the shaft diameter is feasible and reasonable,and several improved technical measures have been proposed,such as stabilizing drill rods,mechanical scraper systems,and control technology of the relationship between concrete setting time and formwork sliding.Their implementation effectively mitigates difficulties and safety risks during shaft construction,expedites the project schedule,enhances engineering quality,and creates a 41-month timeline for the principal engineering schedule for the first power unit generation in China. 展开更多
关键词 hydroelectric engineering construction period record engineering technology optimization shaft construction curvature radius
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