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1)  middle-pier
中墩
1.
Experimental study on water-wing phenomena for middle-piers of discharge tunnels;
泄洪洞中墩水翅现象的试验研究
2.
In the paper, the studies of water-wings were reviewed and the works were proformed of the water-wings induced by the middle-pier of a discharge tunnel according to the model tests and theoretic analysis.
本文在回顾水翅现象研究现状的基础上,以试验研究和理论分析相结合的方法,着重对泄洪洞中墩水翅现象和水翅防治进行了研究,主要研究内容和成果如下: (1)依据量纲分析理论,对水翅现象的影响因素进行了分析,可知水翅现象与泄洪洞有压段出口Fr_0、水流对冲长度L_d和水面下凹深度H_(cs)有关。
2)  pier in water
水中墩
3)  middle-pier cofferdam
中墩围堰
4)  central pier
中隔墩
1.
Analysis of influence factors on deformation of high slope and central pier of TGP permanent shiplock;
三峡船闸高边坡及中隔墩变形影响因素分析
2.
Northward deformation is monitored during the excavation period with various devices installed on the surface and inside the rock mass of the central pier between the double chambers of the permanent shiplock of the Three Gorges Project in China.
三峡永久船闸中隔墩在开挖期间出现了北倾变形现象。
3.
There are different points of view about the deformation mechanism of the central pier of the permanent shiplock of the Three Gorges Project.
鉴于目前对中隔墩变形机制认识仍不统一,运用数值模拟方法研究了不同开挖顺序对中隔墩变形机制的影响,并进行了岩体参数的敏感性分析。
5)  medium high pier
中高墩
6)  division pier
中隔墩
1.
The double-line five-step shiplock of the TGP retains a rock mass division pier with 60 m width,which reduces engineering investment greatly.
三峡双线五级船闸两线间保留60 m宽的岩体中隔墩,可大大节约工程投资。
2.
The reserved rock mass between two lines of TGP permanent ship lock is used as their division pier, which is obviously superior in economy to the scheme of removing the rock mass and constructing a concrete division pier at its location.
施工中遇到的中隔墩表层岩体裂缝、直立墙顶几何滑移块体等岩石力学问题通过现场动态设计,分别制定了详细的工程处理对策,大量监测数据表明,中隔墩的岩体利用与加固是成功和安全的。
3.
The cracks on the concrete surface of the Permanent shiplock s division pier are related to the slope stability and safety during running.
永久船闸中隔墩找平混凝土面裂缝关系到边垃的稳定和运行安全,对永久船闸中隔墩裂缝的情况进行调查,结合地质条件、变形监测系统、裂缝理论分析和中隔墩三维有限元分析计算,分析了裂缝的成因,并提出了工程措施。
补充资料:泥墩墩
1.土墩子。比喻呆板无用的人。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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