ImageVerifierCode 换一换
格式:DOC , 页数:39 ,大小:2.21MB ,
资源ID:21263      下载积分:10 金币
验证码下载
登录下载
邮箱地址:
验证码: 获取验证码
温馨提示:
支付成功后,系统会自动生成账号(用户名为邮箱地址,密码是验证码),方便下次登录下载和查询订单;
特别说明:
请自助下载,系统不会自动发送文件的哦; 如果您已付费,想二次下载,请登录后访问:我的下载记录
支付方式: 支付宝   
验证码:   换一换

 

温馨提示:由于个人手机设置不同,如果发现不能下载,请复制以下地址【https://www.thwenku.com/down/21263.html】到电脑端继续下载(重复下载不扣费)。

已注册用户请登录:
账号:
密码:
验证码:   换一换
  忘记密码?
三方登录: 微信登录   QQ登录  
下载须知

1: 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。
2: 试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。
3: 文件的所有权益归上传用户所有。
4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
5. 本站仅提供交流平台,并不能对任何下载内容负责。
6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。

版权提示 | 免责声明

本文(外文翻译-RQD值计算中最佳临界值和长度尺寸的确定.doc)为本站会员主动上传,图海文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知图海文库(发送邮件至admin@thwenku.com或直接QQ联系客服),我们立即给予删除!

外文翻译-RQD值计算中最佳临界值和长度尺寸的确定.doc

1、外文原文:Determination of the optimal threshold and length measurements for RQD calculationsWen Zhang, Qing Wang, Jian-ping Chen n, Chun Tan, Xiao-qing Yuan, Fu-jun ZhouCollege of Construction Engineering, Jilin University, Changchun 130026, China1 IntroductionThe rock quality designation (RQD) is dened

2、 as the percentage of a scanline consisting of spacing values greater than or equal to 4 in. (100 mm) 1. RQD is widely used around the world as an important parameter for rock mass quality classication.The value of 4 in. (100 mm) has not been proven as the most reasonable threshold. For layered rock

3、 masses, the rock surface spacings are larger than 100mm, but usually not larger than200 mm. The RQD is then 100%, which is incompatible with the actual rock mass quality. The generalized RQD, where the threshold is an arbitrary positive value 2, is introduced in actual engineering practices to obta

4、in a better reection of the inhomogeneous nature of rock masses. To identify the optimal threshold value, Harrison 3 presented equations derived by analyzing fracture frequencies with different distributions, which could expand the range of RQD values. Wang et al. 4 have determined the RQD value in

5、the extension direction of a tunnel by computer modeling in three-dimensional (3-D) space. They have investigated the variations in RQD values with the changes in thresholds.The actual direction of a scanline (core run) is vertical. Given that a rock mass is anisotropic, the RQD value of a single ve

6、rtical scanline could not reect the overall degree of the rock mass quality. Priest and Hudson 2 have studied RQD and proposed a relationship between the fracture frequency and RQD on the assumption that the overall fracture spacing follows a negative exponential distribution. Sen and Kaiz 5,6 have

7、studied the RQD along a scanline with any specic orientation, and established a relationship between the RQD value and fracture frequency along the chosen orientation. Chen 7 has studied RQD values along different scanlines produced automatically by a computer program in all directions in two-dimens

8、ional(2-D) space.An RQD is sometimes expensive to obtain (e.g., in extremely hard rock masses).Therefore, the relationships of the RQD with rock mass parameters, such as fracture frequency, deformation modulus, volumetric joint count, and permeability coefcient, have been established813.Snow12 has p

9、ointed out that the RQD and fracture frequency decreases with increasing depth. Jiang et al.13 have established the relationships of the RQD with the volumetric joint count and permeability coefcient in a granite region.The RQD should be considered as a variable value because it is a function of dis

10、continuity numbers and spacings, which are stochastic1416. In the current study, 3-Dfracture network numerical modeling is applied and scanlines in different directions are set in 3-D space to investigate the homogenous features of a rock mass. RQD values are calculated by a self-written program, an

11、d the statistical features of these RQD values are examined. Given that the threshold and scanline length are essential for RQD calculation, the optimum threshold and mini- mum appropriate scanline length are studied.2 General engineering situation and database2.1Collection of structural dataThe stu

12、died rock mass is located in the dam area of the Baihetan hydropower station in southwest China. The construction of the station project is currently at the feasibility study stage. A double-curvature arch dam will be used for the Baihetan station. The dam is approximately 277m high, with a water su

13、rface elevation of 590m, dam crest of 825m, and storage water level of 820m. The maximum generation capacity of the station is 59.55 billion kWh.The dam area is in the middle of a mountain canyon geomorphology, and the valley in the dam area has an asymmetric V-shape. Cliffs are widely distributed u

14、nderneath at an elevation of 9001100m on the left bank and 10001400m on the right bank. The top of the elevation is predominated by mesas or gentle slopes.The rock mass in the dam area is mainly composed of basalt from the Permian period (P2b), and the overlying rock mass is sandy shale from the Tri

15、assic period (T1f). The riverbed and mesa are composed of alluvium, diluvium, and eluvium deposits from the Quaternary period. Given that the dam will be built upon the basalt area, the characteristic features of basalt play an important role in the engineering stability of the dam.Fig1. Pole and st

16、rike rose diagrams of the fracture sets (the strike satises the right hand rule). (a)Set 1, (b) set 2, (c) set 3 and (d) set 4.Whereas the weathering degree and depth gradually decrease from higher to lower elevations.The occurrence of the rock formation is at N301501E, SE151251. The protogenic columnar joints of the basalt at shallow depths are inhomogeneously developed. The columnar joints could

网站客服QQ:2356858848

  客服联系电话:18503783681

copyright@ 2008-2022 thwenku网站版权所有

ICP备案:豫ICP备2022023751号-1


>


客服