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浅谈加强水电政工队伍建设与管理工作
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作者 罗彬 《中国高新技术企业》 2015年第22期183-184,共2页
由于我国水电政工队伍与水电工程行业未来的发展有较为密切的关系,所以应当契合时代发展的趋势,结合现当代社会的实际情况,对水电政工队伍进行科学的建设,并积极采取各种可行性较高的措施来提高水电政工队伍建设的管理水平与综合资质。... 由于我国水电政工队伍与水电工程行业未来的发展有较为密切的关系,所以应当契合时代发展的趋势,结合现当代社会的实际情况,对水电政工队伍进行科学的建设,并积极采取各种可行性较高的措施来提高水电政工队伍建设的管理水平与综合资质。文章对水电政工队伍的建设与管理工作进行了剖析。 展开更多
关键词 水电政工队伍 水电工程行业 队伍建设 队伍管理 人力资源管理
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Upper Lillooet River Hydroelectric Project: The Challenges of Constructing a Power Tunnel for Run-of-River Hydro Projects in Mountainous British Columbia 被引量:1
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作者 Nichole Boultbee Oliver Robson +1 位作者 Serge Moalli Rich Humphries 《Engineering》 2018年第2期96-102,共7页
The Upper Lillooet River Hydroelectric Project (ULHP) is a run-of-river power generation scheme located near Pemberton, British Columbia, Canada, consisting of two separate hydroelectric facilities (HEFs) with a c... The Upper Lillooet River Hydroelectric Project (ULHP) is a run-of-river power generation scheme located near Pemberton, British Columbia, Canada, consisting of two separate hydroelectric facilities (HEFs) with a combined capacity of 106.7 MW. These HEFs are owned by the Upper Lillooet River Power Limited Partnership and the Boulder Creek Power Limited Partnership, and civil and tunnel construction was completed by CRT-ebc. The Upper Lillooet River HEF includes the excavation ofa 6 m wide by 5.5 m high and approximately 2500 m long tunnel along the Upper Lillooet River Valley. The project is in a moun- tainous area; severe restrictions imposed by weather conditions and the presence of sensitive wildlife species constrained the site operations in order to limit environmental impacts. The site is adjacent to the Mount Meager Volcanic Complex, the most recently active volcano in Western Canada. Tunneling conditions were very challenging, including a section through deposits associated with the most recent eruption from Mount Meager Volcanic Complex (-2360 years before the present). This tunnel section included welded breccia and unconsolidated deposits composed of loose pumice, organics (that represent an old forest floor), and till, before entering the underlying tonalite bedrock. The construction of this section of the tunnel required cover grouting, umbrella support, and excavation with a combination of road header, hydraulic hammer, and drilling-and-blasting method. This paper provides an overview of the project, a summary of the key design and construction schedule challenges, and a description of the successful excavation of the tunnel through deposits associated with the recent volcanic activity. 展开更多
关键词 Run-of-river hydro project Power tunnel Umbrella support Canopy tubes Volcanic depositsPumiceRoadheader Environmental constraints
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