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煤炭采矿中的支护结构健康监测与故障诊断技术的研究
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作者 谢洪路 《家电维修》 2024年第7期92-94,共3页
随着社会经济的发展和科技的进步,煤炭采矿业作为能源产业的重要组成部分,其安全性和效率性受到了广泛关注。其中,支护结构健康监测与故障诊断技术在保障安全生产、提高采矿效率以及推动数字化矿山建设方面有着重要的意义。本文介绍了... 随着社会经济的发展和科技的进步,煤炭采矿业作为能源产业的重要组成部分,其安全性和效率性受到了广泛关注。其中,支护结构健康监测与故障诊断技术在保障安全生产、提高采矿效率以及推动数字化矿山建设方面有着重要的意义。本文介绍了传统支护结构监测方法和智能传感器在支护结构监测中的应用,以及数据采集与处理技术、监测数据远程传输与存储技术。此外,还介绍了支护结构故障诊断技术与多参数融合分析技术在支护结构故障诊断中的应用,特别是深度学习技术在支护结构故障诊断中的潜在应用。 展开更多
关键词 支护结构健康监测 故障诊断 煤炭采矿 智能传感器
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超深基坑关键部位的支护和监测控制
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作者 陈志樟 刘永军 邢向东 《建筑施工》 2012年第7期641-643,共3页
某电力生产调度中心和某办公金融及商务中心工程,核心筒和电梯井部位最大实际挖深分别达到19.85m和18.45m,下部承压水的抗突涌安全度低,承压水头大,其基坑北侧紧邻江干渠,南侧又为正在带电运行的变电所的l一主变和运行架构区,... 某电力生产调度中心和某办公金融及商务中心工程,核心筒和电梯井部位最大实际挖深分别达到19.85m和18.45m,下部承压水的抗突涌安全度低,承压水头大,其基坑北侧紧邻江干渠,南侧又为正在带电运行的变电所的l一主变和运行架构区,周边环境条件极为复杂,给施工带来不少困难。阐述了关键部位的基坑支护设计、土方开挖实施要点,并对关键部位的基坑监测技术措施进行探讨和研究,取得了明显的效果。 展开更多
关键词 深基坑 关键部位 支护结构土方开挖监测
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公路边坡监测与信息化施工 被引量:6
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作者 陈平 朱赞凌 +1 位作者 陈念斯 李森 《华东公路》 北大核心 2003年第3期60-63,共4页
介绍了公路边坡监测和信息化施工的重要意义 ;阐述公路边坡监测的常用仪器及其使用条件 ;说明公路边坡的监测方法和原则及包括坡体监测和支护结构监测两个方面。通过实例阐明信息化施工可以保证边坡的稳定性、正确指导施工并尽可能地节... 介绍了公路边坡监测和信息化施工的重要意义 ;阐述公路边坡监测的常用仪器及其使用条件 ;说明公路边坡的监测方法和原则及包括坡体监测和支护结构监测两个方面。通过实例阐明信息化施工可以保证边坡的稳定性、正确指导施工并尽可能地节约工期。 展开更多
关键词 公路工程 边坡 监测方法 坡体监测 支护结构监测 稳定性 信息化施工 安全性
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绥芬河市澳普尔广场及酒店改扩建工程深基坑支护
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作者 闫志彬 《黑龙江科技信息》 2010年第22期305-305,共1页
绥芬河市澳普尔广场及酒店改扩建工程位于低山丘陵地区,基坑挖深12M~21.8M属于深基坑,开挖深度范围内的土层第三和四层为强风化安山玢岩和中风化安山玢岩,岩块坚硬,机掘不易;基坑东、南侧与原有4层和9层建筑最小距离分别为2.4m和3.5m,... 绥芬河市澳普尔广场及酒店改扩建工程位于低山丘陵地区,基坑挖深12M~21.8M属于深基坑,开挖深度范围内的土层第三和四层为强风化安山玢岩和中风化安山玢岩,岩块坚硬,机掘不易;基坑东、南侧与原有4层和9层建筑最小距离分别为2.4m和3.5m,位于凸入基坑的阳角处,属不利位置,施工和支护监测难度较大。依据本场地岩土工程地质条件、场地条件、基坑开挖深度,边坡在无相邻建筑采用土钉墙结构支护体系;在有相邻建筑采用悬臂桩结构支护体系即人工挖孔桩和土层锚杆相结合的支护方式,人工挖孔桩施工遇安山玢岩配合风镐进行施工,土层锚杆采用ф150螺旋钻成孔。岩石采用地质钻机与风动潜孔锤成孔。监测结果显示,基坑关键部位变形各项指标均未达到预警值。 展开更多
关键词 基坑 安山玢岩 土钉挡土墙支护 人工挖孔桩 土层锚杆 基坑支护结构监测
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Sensor monitoring of a newly designed foundation pit supporting structure 被引量:3
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作者 杨宇友 吕建国 +1 位作者 黄学刚 涂晓明 《Journal of Central South University》 SCIE EI CAS 2013年第4期1064-1070,共7页
A new type of pit supporting structure, which was tested and verified using the sensor monitoring technology, was presented. The new supporting structure is assembled by prefabricated steel structural units. The adjac... A new type of pit supporting structure, which was tested and verified using the sensor monitoring technology, was presented. The new supporting structure is assembled by prefabricated steel structural units. The adjacent steel structural units are jointed with fasteners, and each steel structural unit has a certain radian and is welded by two steel tubes and one piece of steel disc. In order to test and verify the reliability of the new supporting structure, the field tests are designed. The main monitoring programs include the hoop stress of supporting structure, lateral earth pressure, and soil deformation. The monitoring data of the field tests show that the new supporting structure is convenient, reliable and safe. 展开更多
关键词 foundation pit supporting structure sensor monitoring earth pressure horizontal displacement
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Rapid excavation with a newly developed retaining system: Spiral assembly steel structure
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作者 关成立 杨宇友 王成彪 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2719-2729,共11页
The spiral assembly steel structure, a newly developed retaining wall for the rapid excavation of small-sized foundation pits in unsaturated soil, is presented. This new type of retaining structure is prefabricated in... The spiral assembly steel structure, a newly developed retaining wall for the rapid excavation of small-sized foundation pits in unsaturated soil, is presented. This new type of retaining structure is prefabricated in the factory and is assembled on site in the excavation of a pit. This retaining structure is composed of several prefabricated steel structural units, in which the adjacent steel structural units are joined with connectors. Each steel structural unit has one steel pipe in the radial direction and is welded to a single piece of steel plate. After full installation in situ, the retaining structure becomes a cylindrical steel structure. With the protection afforded by this new type of retaining structure, excavation work can be completed within 24 h to a depth up to 5 m. In order to verify the reliability and effectiveness of this new retaining structure, field construction tests were conducted in Beijing, China. The test construction was monitored. The monitoring program included measuring stress in the structure, lateral earth pressure, and lateral deformation of the surrounding soil. The monitoring data from the field test were compared with the theoretical results. The results show that the proposed new structure is reliable and effective. 展开更多
关键词 working shaft rapid excavation retaining structure field construction monitoring
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