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大型地下洞室群主洞室规模优化及支护设计研究

周述达 裴启涛 张存慧   

  • 出版日期:2016-09-29 发布日期:2016-09-29

Study on scale optimization of main cavern and support design for large underground cavern group

  • Online:2016-09-29 Published:2016-09-29

摘要: 通过对乌东德水电站岩锚梁体型、蜗壳开挖结构及母线廊道内电气设备布置等方面的研究,对主厂房洞室规模进行了合理优化。基于对国内17个已建水电站地下厂房资料进行统计分析,建立了厂房不同部位长短锚杆与洞室规模之间的关系,同时结合规范初步确定了厂房不同部位的支护方案及参数。在此基础上,构建三维数值模型,进一步分析不同工况下洞室群围岩的稳定性。研究结果表明:优化后的水电站地下厂房布置紧凑,厂房规模大幅降低,与同期建设的白鹤滩水电站相比,其跨顺比、长垂比降幅分别达10.6%和15.7%;施加的围岩支护可以较好地控制围岩变形,且有锚索支护工况在保障洞室稳定安全方面较优,围岩整体稳定性较好,进一步验证了支护方案设计的合理性和有效性。研究成果可为类似地下工程的安全建设提供借鉴。

关键词: 洞室群规模, 支护设计, 围岩稳定性, 优化分析, 地下工程

Abstract:

Through analyzing the size of rock-anchored crane beam, excavation structure of spiral case, electrical equipment layout of bus corridor and so on, the main cavern scale of Wudongde Hydropower Station is optimized. In addition, the relationship between the length of anchor rods and cavern scale at different parts of underground powerhouse is established by analyzing the data of 17 built domestic underground powerhouses. Combing with present specification, support schemes and parameters for different parts of the powerhouse are determined preliminarily. On this basis, a three dimensional numerical model is set up, and the stability of the surrounding rock for underground powerhouse cavern group under different conditions is analyzed. It can be shown that the layout of optimized underground powerhouse cavern group is extremely compact, and the powerhouse size decreases significantly. Compared with Baihetan Hydropower Station in the same period, the reduction percentage of ratio of plant span to spiral case size along the flow direction, and the ratio of plant length to spiral case size along the vertical flow direction is 10.6% and 15.7% respectively. Moreover, the deformation of surrounding rock can be controlled well by the determined rock support. Compared with other methods, the cable support method is advantageous to keeping cavern group stability and security, which has proved effectiveness and reasonability of the support design. Therefore,the results provide reference to construction safety of similar underground engineering.

Key words: scale of cavern group, support design, stability of surrounding rock, optimization analysis, underground engineering