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1)  deep fracture
深部裂缝
1.
The deep fractures are well developed at the left abutment slope.
从工程地质类比的角度对锦屏一级水电站坝区4个边坡工程地质条件进行了详细比较,指出了区域的地壳活动水平和构造应力场强度是普斯罗沟左岸边坡深部裂缝形成的本质原因和前提条件,但是仅仅具备这个条件并不一定在边坡内部出现深部拉裂,普斯罗沟左岸边坡的边坡坡体结构以及岩性组合是深部裂缝形成的物质基础。
2.
The deep fracture regularity of Pusiluogou left abutment slope at Jinping first stage hydropower station is comprehensively studied; and four deformation models of deep fracture are put forward; they are gentle shear and steep tension, gentle shear-tension belt, steep shear and gentle tension as well as tension respectively.
通过对锦屏一级水电站普斯罗沟坝址左岸深部裂缝的发育特点及规律的研究,提出了深部裂缝4种变形模式,即缓剪陡张型、缓倾张剪带型、顺剪反张型和引张型。
2)  deep fractures
深部裂缝
1.
Study on the mechanism of the deep fractures of the left abutment slope at the Jinping first stage hydropower station;
锦屏一级水电站普斯罗沟左岸深部裂缝成因的工程地质分析
2.
At first,the slope geological conditions as well as dam site geostress and deep fractures in the left bank of Jinping first stage hydropower station have been investigated.
对锦屏一级水电站边坡工程地质条件、坝址区实测地应力分布及左岸深部裂缝发育规律进行全面分析,采用UDEC和3DEC离散元程序模拟锦屏一级水电站河谷的演化发展,对河谷边坡不同演化阶段应力场的变化规律及变形与卸荷分带规律进行深入分析。
3)  deep crack
深部裂缝
1.
On the basis of introducing the distribution character of the deep cracks in the left bank of some hydropower station, the deformation features and slope stability under the condition of engineering loading were calculated and analyzed by FLAC 3D .
简要介绍了某水电站下坝址区左岸深部裂缝的发育分布特征 ,在此基础上 ,采用FLAC3D就深裂缝的存在对工程荷载作用下坝基岩体的变形和稳定性状况进行了初步分析和评价 ,结果表明 ,尽管左岸边坡中存在深裂缝 ,但岸坡在工程荷载作用下变形较小 ,整体稳定性仍较好。
2.
But there is a series of sheeted crack or zone of crack inside normal unloading zone that was named as deep crack.
对涉及的工程岸坡在正常卸荷带以内发育的一系列张性破裂或破裂带,称之为“深部裂缝”。
4)  deep-seated rupture zone
深部裂缝带
1.
In hydraulic engineering,deep-seated rupture zones have been discovered in some dam areas,such as Heishanxia of Huanghe River,Jinpingshan of Yalongjiang River and others.
黄河黑山峡大柳树坝址、雅砻江锦屏普斯罗坝址及其他一些水电工程区,在勘探过程相继发现了一种新的地质构造现象———深部裂缝带,并且多出现在我国强震活跃地区和强震发生断裂带上,沿断裂带历史上强震活动频繁;深部裂缝带向地下延伸超过300 m,远远超出地表卸荷带的影响深度,故与强地震作用时岩体构造动力效应密切相关;讨论了根据弹性波作用下岩体的动力学响应,阐述了深部裂缝带发生的地震学原因。
5)  Deep fracture
深裂缝
1.
The application of RaA testing technique on researching deep fracture belts in a rockslope;
氡(RaA)测试技术在某岩质边坡卸荷深裂缝带研究中的应用
2.
But there is a series of sheeted fracture or zone of fracture that was named as deep fracture is relate to a project.
对涉及的工程岸坡在正常卸荷带以内发育了一系列张性破裂或破裂带,称之为"深拉裂缝",其分布规律的研究对其成因有着主要的作用,并在地层岩性、地质构造、河谷地貌、现今地应力场调查研究和深裂缝统计分析、声波测试、氡气测试、方解石测年、地应力测试等多种测试手段研究的基础上,对深裂缝的分布规律做了较为充分的论证。
6)  crack depth
裂缝深度
1.
Determination of crack depth in reinforced-concrete structure by the ultrasonic testing method;
超声平测法检测钢筋混凝土结构裂缝深度
2.
Considering the influence of the environment and the direction of electrical current on the conductive capacity of crack,the change of apparent resistivity with crack depth was obtained by numerical simulation method.
在考虑到干燥环境、潮湿环境和输入电流方向对裂缝导电能力影响的前提下,采用数值模拟技术探讨了表观电阻率随裂缝深度的变化规律,并将实际裂缝简化为等效裂缝,进而提出裂缝等效电路和等效电阻的方法,研究了表观电阻率与裂缝密实度的关系。
补充资料:白银有色金属公司深部铜矿主井和副井


白银有色金属公司深部铜矿主井和副井


白银有色金属公司深部铜矿主井和副井
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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