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Simulation Study on Reinforcing Overburden to Prevent and Cure the Rupture of Shaft Lining 被引量:13
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作者 周国庆 崔广心 +5 位作者 吕恒林 黄家会 陈先德 曹祖民 于远成 王以全 《International Journal of Mining Science and Technology》 SCIE EI 1999年第1期1-7,共7页
For preventing and curing the rupture disaster of shaft lining effectively, according to the additional force theory of shaft lining fracture, more than forty tests were carried out on the large scale test rig on the ... For preventing and curing the rupture disaster of shaft lining effectively, according to the additional force theory of shaft lining fracture, more than forty tests were carried out on the large scale test rig on the basis of simulating theory. The influence of the position of aquifer, the reinforcing scope of aquifer, reinforcing distance and the strength of grouting cemented mixture on the value and variation law of the axial additional force on shaft lining is studied. The relationships between the reinforcing parameters and the axial additional force on shaft lining are obtained, which provides the theoretic foundation and construction design parameters for the method of reinforcing strata by grouting to prevent and cure tbe rupture disaster of shart lining. 展开更多
关键词 treatment of the RUPTURE of shaft lining reinforcing STRATUM simulated test reinforing parameters
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Theoretical Investigation on Vertical Additional Force on Shaft Lining in Special Stratum 被引量:4
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作者 杨维好 付厚利 《International Journal of Mining Science and Technology》 SCIE EI 1999年第2期129-135,共7页
The model of skaft lining under force is developed on the basis of the special stratum condition led to sbart cracking- The model is broken into 3 sub-questions to solve separately. According to the principle of super... The model of skaft lining under force is developed on the basis of the special stratum condition led to sbart cracking- The model is broken into 3 sub-questions to solve separately. According to the principle of superposition and strain compatibility, a second kind Fredholm integral equation is generated.A theoretical solution to vertical additional force on shaft lining is obtained by numerical method to the integral equation. 展开更多
关键词 shaft lining VERTICAL additional force SPECIAL STRATA
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Research on Stress and Strength of High Strength Reinforced Concrete Drilling Shaft Lining in Thick Top Soils 被引量:11
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作者 YAO Zhi-shu CHANG Hua RONG Chuan-xin 《Journal of China University of Mining and Technology》 EI 2007年第3期432-435,共4页
High strength reinforced concrete drilling shaft linings have been adopted to solve the difficult problem of supporting coal drilling shafts penetrating through thick top soils. Through model experiments the stress an... High strength reinforced concrete drilling shaft linings have been adopted to solve the difficult problem of supporting coal drilling shafts penetrating through thick top soils. Through model experiments the stress and strength of such shaft linings are studied. The test results indicate that the load beating capacity of the shaft lining is very high and that the main factors affecting the load bearing capacity are the concrete strength, the ratio of lining thickness to inner radius and the reinforcement ratio. Based on the limit equilibrium conditions and the strength theory of concrete under multi-axial compressive stressed state, a formula for calculating the load-beating capacity of a high strength reinforced concrete shaft lining was obtained. Because the concrete in a shaft lining is in a multi-axial compressive stress state the compressive strength increases to a great extent compared to uni-axial loading. Based on experiment a formula for the gain factor in compressive strength was obtained: it can be used in the structural design of the shaft lining. These results have provided a basis for sound engineering practice when designing this kind of shaft lining structure. 展开更多
关键词 shaft sinking by drilling method shaft lining highstrength concrete STRENGTH designing method
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Numerical simulation of the temperature field within new type of monolayer freezing-shaft lining 被引量:4
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作者 CHEN, Xiaoxiang YANG, Weihao 《Mining Science and Technology》 EI CAS 2010年第2期198-203,共6页
Numerical simulation was used to estimate the temperature field within a poured concrete,mono-layer freezing-shaft lining.The affects from various factors were investigated.The maximum temperature within the lining in... Numerical simulation was used to estimate the temperature field within a poured concrete,mono-layer freezing-shaft lining.The affects from various factors were investigated.The maximum temperature within the lining increases as the lining thickness increases,decreases as the soil-side wall temperature decreases,decreases as the air temperature inside the shaft decreases and decreases as the air velocity inside the shaft increases.The compression speed of an insulating foam layer affects the maximum temperature difference between the interior and the sidewalls.The maximum temperature difference between the interior and the sidewalls approaches or exceeds the maximum allowable for the curing of poured concrete structures.Attention should be paid to the question of the lining cracking during the curing period.The temperature gradient in the vertical direction may be minimized by preventing air contact against the steel connection board supporting the base of the freshly poured section. 展开更多
关键词 new type MONOLAYER freezing shaft lining temperature field numerical simulation
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A methodology for lining design of circular mine shafts in different rock masses 被引量:2
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作者 Ozturk Hasan Guler Erdogan 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第5期761-768,共8页
In this study, the finite element numerical modelling of 2D shaft sections in a Hoek–Brown medium are carried out in a non-hydrostatic stress state in an attempt to predict pressures developing around mine shafts. An... In this study, the finite element numerical modelling of 2D shaft sections in a Hoek–Brown medium are carried out in a non-hydrostatic stress state in an attempt to predict pressures developing around mine shafts. An iterative process of applying support pressure until observing no failure zone around the shaft is used to simulate the required lining support pressure for different shaft models. Later, regression analysis is carried out to find a generic shaft pressure equation representing the rock mass and the stress state. Finally, the developed pressure equation which shows a good agreement with a case study is used in elastic ‘‘thick-walled cylinder" equation to calculate the lining thickness required to prevent the development of a failure zone around the shaft. At the end of the study, a user-friendly object-oriented computer program ‘‘Shaft 2D" is developed to simplify the rigorous shaft lining thickness calculation process. 展开更多
关键词 lining thickness shaft support shaft Non-hydrostatic stress
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Experimental study on sliding shaft lining mechanical mechanisms under ground subsidence conditions 被引量:11
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作者 姚直书 杨俊杰 孙文若 《Journal of Coal Science & Engineering(China)》 2003年第1期95-99,共5页
Aimed at more than 60 shaft linings damaged in Huaibei, Datun, Xuzhou and Yanzhou mine areas, this paper presents a new type of sliding shaft lining with asphalt blocks sliding layer. By model test, it is obtained tha... Aimed at more than 60 shaft linings damaged in Huaibei, Datun, Xuzhou and Yanzhou mine areas, this paper presents a new type of sliding shaft lining with asphalt blocks sliding layer. By model test, it is obtained that the deformation characteristics and the mechanical mechanisms of the sliding shaft lining under the condition of ground subsidence. The research results provide a testing basis for the sliding shaft lining design. By now, this kind of sliding shaft lining had been applied in 9 shafts in China and Bangladesh. 展开更多
关键词 shaft lining asphalt blocks sliding layer constrictive layer model test
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Failure Patterns and Energy Analysis of Shaft Lining Concrete in Simulated Deep Underground Environments 被引量:2
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作者 ZHOU Yucheng LIU Juanhong +1 位作者 YANG Haitao JI Hongguang 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第2期418-430,共13页
The failure patterns and energy evolution of three types of shaft lining concrete subjected to static and dynamic loading were reported.The energy and damage characteristics of concrete were determined by means of a u... The failure patterns and energy evolution of three types of shaft lining concrete subjected to static and dynamic loading were reported.The energy and damage characteristics of concrete were determined by means of a uniaxial hydraulic servo machine,acoustic emission (AE) equipment,a split Hopkinson pressure bar (SHPB) and an ultrasonic wave analyser.The experimental results indicate that the confluence of multiple cracks forms a penetrating cross section in normal high-strength concrete (NHSC) under the condition of static loading,while the elastic energy that surges out at failure can cause tremendous damage when subjected to dynamic loading.A single crack was split into multiple propagation directions due to the presence of fibres in steel fibre-reinforced concrete (SFRC);adding fibre to concrete should be an effective way to dissipate energy.The non-steam-cured reactive powder concrete (NSC-RPC) designed in this paper can store and dissipate more energy than normal concrete,as NSC-RPC exhibits a strong ability to resist impact.Applying NSC-RPC to the long-service material of a shaft lining structure in deep underground engineering is quite effective. 展开更多
关键词 shaft lining concrete failure pattern energy evolution non-steam-cured reactive powder concrete
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Forced Axial and Torsional Vibrations of a Shaft Line Using the Transfer Matrix Method Related to Solution Coefficients 被引量:2
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作者 Kandouci Chahr-Eddine Adjal Yassine 《Journal of Marine Science and Application》 2014年第2期200-205,共6页
This present paper deals with a mathematical description of linear axial and torsional vibrations. The normal and tangential stress tensor components produced by axial-torsional deformations and vibrations in the prop... This present paper deals with a mathematical description of linear axial and torsional vibrations. The normal and tangential stress tensor components produced by axial-torsional deformations and vibrations in the propeller and intermediate shafts, under the influence of propeller-induced static and variable hydrodynamic excitations are also studied. The transfer matrix method related to the constant coefficients of differential equation solutions is used. The advantage of the latter as compared with a well-known method of transfer matrix associated with state vector is the possibility of reducing the number of multiplied matrices when adjacent shaft segments have the same material properties and diameters. The results show that there is no risk of buckling and confirm that the strength of the shaft line depends on the value of the static tangential stresses which is the most important component of the stress tensor. 展开更多
关键词 shaft line stress tensor vibration axial vibration torsional vibration transfer matrix constant coefficient vector
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MECHANICAL ANALYSIS OF SHAFT LINING WHEN THE STRATUM SETTLEMENT RESULTING FROM WATER DRAINAGE 被引量:1
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作者 蒋斌松 《Journal of Coal Science & Engineering(China)》 1997年第2期51-56,共6页
Based on the stratum settlement resulting from water drainage, this paper establishes the calculating method of stresses and displacements of shaft lining and stratum by using Fourier integration, obtains the calculat... Based on the stratum settlement resulting from water drainage, this paper establishes the calculating method of stresses and displacements of shaft lining and stratum by using Fourier integration, obtains the calculating formulas of tangiential load which shaft lining is subjected to, and provides theoretical basis for design of shaft lining. 展开更多
关键词 stratum settlement resulting from water drainage mechanical analysis of shaft lining Fourier integration
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Impact of Underground Mining on Shaft Lining and Aquifer in Eastern China
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作者 Qing Yu Hideki Shimada +1 位作者 Takashi Sasaoka Kikuo Matsui 《Open Journal of Geology》 2012年第3期158-164,共7页
Serious shaft lining ruptures have often occurred in the eastern part of China since 1987 due to the complicated geological conditions. This paper tries to find out the relationship between mechanisms of shaft lining ... Serious shaft lining ruptures have often occurred in the eastern part of China since 1987 due to the complicated geological conditions. This paper tries to find out the relationship between mechanisms of shaft lining rupture and the underground mining process. The analysis is based on the existence typical engineering and geological conditions in eastern China;the impact of underground mining on the shaft lining and aquifer layer is analyzed by using numerical method. The impact factors such as different depths, thicknesses, mining widths of coal seam and different distances to the shaft are used in the analysis. The mining area under the aquifer which near the shaft lining has a significant impact on the shaft lining due to mining process, and increases the risk of occurrence of shaft lining rupture. 展开更多
关键词 shaft lining IMPACT UNDERGROUND MINING AQUIFER Numerical Simulation
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STUDIES ON VERTICAL SHAFTLINING STRUCTURE ADAPTABLE TO SUBSIDENCE
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作者 刘全林 杨俊杰 樊平 《Journal of Coal Science & Engineering(China)》 1996年第1期45-50,共6页
Subsidence results in a negative force of friction on the outer surface of the shaft lining. This negative force has in recent years led to damage or even destruction of over 20shafts. In the light of this shaft failu... Subsidence results in a negative force of friction on the outer surface of the shaft lining. This negative force has in recent years led to damage or even destruction of over 20shafts. In the light of this shaft failure mechanism, analytic comparison is conducted on three shaft lining structures as to their respective behaviour under the negative force of friction, by making use of modelling tests. A new shaft lining structure is therefore proposed which is designed to be adaptable to subsidence and found to be rational. Finally designing principles are given. 展开更多
关键词 surface subsidence modelling test shaft lining COMPRESSIBLE slipping
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Analysis and interpretation on the concrete quality of shaft lining by elastic wave technique
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《Journal of Coal Science & Engineering(China)》 2012年第1期14-17,共4页
The quality problem of the concrete body and backwall grouting of shaft lining must be taken into consideration during the engineering construction of the shaft. Detection and evaluation are needed to determine the pa... The quality problem of the concrete body and backwall grouting of shaft lining must be taken into consideration during the engineering construction of the shaft. Detection and evaluation are needed to determine the parameters such as the location and depth of drilling. The record of elastic wave can be gained through laying the surveying lines of the ring and ver- tical direction in the shaft lining by the elastic wave method. And specifically, through analyzing the different parameters of seismic attribute such as the velocity of high frequency reflection wave, amplitude and frequency, the abnormal range on the wall or under the wall can be forecasted. The concrete quality of shallow layer in the shaft lining can be evaluated through the velocity of surfer wave. Using the evaluating technique of comprehensive frequency and the phase feature of waveform, the basic features such as inner construction, wall back filling and failure depth of shaft lining can be interpreted from qualitatively to half quantitatively, and the interpreting section can be drawn. The results show that the detection effect for the shaft quality is significant by elastic wave technique, and the delineation of abnormal areas is accurate. Its guidance function is better for pro- duction. 展开更多
关键词 concrete quality of shaft lining elastic wave technique analysis and interpretation method backwall grouting
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水力耦合下井壁混凝土渗流动态及其损伤特性
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作者 薛维培 周亚亚 +4 位作者 程桦 姚直书 荣传新 王中建 吴浩 《煤田地质与勘探》 北大核心 2026年第2期136-146,共11页
【目的】井壁混凝土作为煤矿竖井衬砌支护结构材料,其渗流性能及力学特性对结构安全至关重要;且由于井壁混凝土处于地下水位以下,所处应力环境与地表混凝土相比存在极大差别。【方法】为研究三轴受力状态下地下水渗流对井壁混凝土性能... 【目的】井壁混凝土作为煤矿竖井衬砌支护结构材料,其渗流性能及力学特性对结构安全至关重要;且由于井壁混凝土处于地下水位以下,所处应力环境与地表混凝土相比存在极大差别。【方法】为研究三轴受力状态下地下水渗流对井壁混凝土性能的影响,采用配备渗流装置的伺服压力试验机进行水力耦合加载,获得不同位置的渗透率、弹性体积应变、裂纹体积应变、损伤力学等参数。【结果和结论】渗透率演化经历下降、平稳和上升3个阶段。下降阶段占峰前6.93%,降幅32.21%~67.14%;平稳阶段试件处于弹性状态;上升阶段伴随内部裂纹增多,渗透率最高增幅达到17.55倍。以弹性阶段为分界线,建立前后两部分渗透率随应力演化的数学模型,分别符合指数函数和幂函数关系。根据体积应变曲线特征,确定井壁混凝土加载过程中的起裂应力点和损伤应力点。同围压下孔隙水压增大时,初始渗透率上升均幅为48.94%;起裂应力、损伤应力和峰值应力平均下降5.60%。同孔隙水压下增加围压时,初始渗透率降低均幅为16.62%;起裂应力、损伤应力和峰值应力平均上升25.55%。三轴压缩过程中渗透率演化与损伤发展轨迹相似,损伤增速点略早于渗透率上升点,据此给出渗透率与损伤、孔隙水压之间的计算模型。研究成果对完善煤矿竖井衬砌工程多场耦合理论及保障工程安全具有重要的参考价值。 展开更多
关键词 煤矿 竖井 井壁混凝土 三轴压缩 渗流动态 损伤力学特性
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煤矿超深立井井壁设计关键技术研究与应用
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作者 冯冠学 周晓敏 +1 位作者 陈金明 付腾飞 《建井技术》 2026年第1期1-6,31,共7页
随着我国中东部地区浅部优质煤炭资源日趋枯竭,煤炭资源开发向深部转移已成为保障国家能源安全的战略选择。超深立井(深度超过千米)作为开拓深部资源的关键通道,其井壁结构面临高地压、高水压、高地温以及复杂地层(易胀缩土层、易失稳... 随着我国中东部地区浅部优质煤炭资源日趋枯竭,煤炭资源开发向深部转移已成为保障国家能源安全的战略选择。超深立井(深度超过千米)作为开拓深部资源的关键通道,其井壁结构面临高地压、高水压、高地温以及复杂地层(易胀缩土层、易失稳岩土层、难注浆地层、难冻结地层)的严峻挑战。传统井壁设计理论,如基于拉麦公式的《煤矿立井井筒及硐室设计规范》(GB 50384—2016),在超深条件下存在将井壁与围岩割裂、荷载取值困难、水压折减系数范围宽泛、大深度冻结压力无据可依等问题,导致计算井壁厚度过大(常超过2.0 m),甚至无法施工。为解决这一制约行业发展的关键技术难题,系统研究并提出了“井壁与围岩共同承载”新理论,建立了相应的力学模型与井壁厚度计算表达式。在磁西一号矿井副立井(亚洲第一深井,1 341.6 m)设计中,主要应用“井壁与围岩共同承载”新理论,将千米以深井壁厚度从传统计算的2.2 m优化至0.8~0.9 m。在西部地区葫芦素矿井(主井φ9.6 m,副井φ10.0 m)设计施工中,实现了井壁厚度减薄,主、副井节约投资1.1亿元。工程实践验证了新理论的正确性与先进性,为煤矿深部井筒建设提供了全新的技术路径,推动了行业技术进步。 展开更多
关键词 深部煤炭资源开发 超深立井 井壁设计理论 协同承载理论 井壁厚度优化
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海则滩煤矿井壁结构参数分析与应用
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作者 樊玮晔 《陕西煤炭》 2026年第1期147-152,共6页
【目的】针对海则滩煤矿含水层丰富、地层不稳定等复杂地质条件引起的井筒施工难度大、安全性差等问题,开展井壁结构分析,并确定施工方案。【方法】首先分析了海则滩煤矿地质特征,为避免钻井法施工造成的废泥浆难处理、大直径钻井技术... 【目的】针对海则滩煤矿含水层丰富、地层不稳定等复杂地质条件引起的井筒施工难度大、安全性差等问题,开展井壁结构分析,并确定施工方案。【方法】首先分析了海则滩煤矿地质特征,为避免钻井法施工造成的废泥浆难处理、大直径钻井技术不成熟和井筒的垂直度难以保证等问题,提出了基于冻结方法的凿井方式。通过井壁结构参数分析,计算井壁参数。【结果及结论】现场实践表明,该方案有效提高了井筒试挖段井帮稳定性,为井筒表土段外壁高效掘砌创造了良好的冻结条件,取得了良好的施工效果。 展开更多
关键词 冻结法 立井施工 井壁结构 凿井方法
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汽车驱动桥40MnB钢半轴多道次热模锻工艺及自动化生产线研究
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作者 李倩秋 《锻压技术》 北大核心 2026年第1期124-136,共13页
针对目前汽车驱动桥半轴生产过程中存在的锻件余量大、劳动强度高等问题,提出一种驱动桥半轴多道次热模锻工艺,并结合工艺设计了一条基于机器人上下料的驱动桥半轴全自动化生产线,以达到降低成本、提高生产效率的目的。首先,对驱动桥半... 针对目前汽车驱动桥半轴生产过程中存在的锻件余量大、劳动强度高等问题,提出一种驱动桥半轴多道次热模锻工艺,并结合工艺设计了一条基于机器人上下料的驱动桥半轴全自动化生产线,以达到降低成本、提高生产效率的目的。首先,对驱动桥半轴所用材料40MnB钢的热变形行为及热加工图进行研究,得到40MnB钢最佳加工工艺参数为:变形温度为1050~1150℃、应变速率为0.2~0.5 s^(-1)。然后,将试验得到的数据导入至数值模拟软件中进行驱动桥半轴多道次热模锻工艺模拟,分析成形过程中上冲头的载荷-时间曲线、工件的等效应力分布。根据模拟结果,结合自动化生产线机器人上下料的需求,设计了相应的移动式模具结构,并进行了驱动桥半轴多道次热模锻工艺试验,验证所提出工艺的可行性。最后,对设备进行布局优化,设计了全自动化生产线,对生产线主要设备的动作逻辑图进行分析,实现了驱动桥半轴全自动化生产。 展开更多
关键词 驱动桥半轴 热加工图 多道次热模锻 模具设计 自动化生产线
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CURRENT TECHNOLOGY AND INNOVATIONS IN FREEZE SHAFT SINKING IN CHINA
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作者 张铭 翁家杰 夏正明 《Journal of China University of Mining and Technology》 1991年第1期72-78,共7页
This paper gives a brief review of the development of shaft sinking by artificial ground freezing since 1949 when new China was founded. Several shaft freezing schemes which have been successfully applied from the eco... This paper gives a brief review of the development of shaft sinking by artificial ground freezing since 1949 when new China was founded. Several shaft freezing schemes which have been successfully applied from the economic and safe viewpoints are presented. Current technology and some innovative techniques, especially the shaft lining which have experienced major improvements over the last four decades ,are briefly reviewed. The technique of the in-situ pour concrete incorporating ailica fume with higher early strength under low temperature curing conditions is described. The temperature field in shaft freezing and its finite difference solution are given in this paper. A recently developed method combining freeze wall model test with back analysis technique based on numerical simulation is also described. 展开更多
关键词 ground freezing shaft lining temperature field back analysis
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中国立井冻结井壁技术的发展与展望 被引量:4
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作者 杨维好 黄书翔 +8 位作者 王衍森 李伟 杨志江 任彦龙 韩涛 张驰 张涛 骆汀汀 张雨 《煤炭学报》 北大核心 2025年第1期92-114,共23页
分析了“深部化”和“大型化”趋势对中国深井井筒的设计、施工与运维带来的严峻挑战。总结经验教训,指出冻结法是复杂条件下深井井筒施工最主要的地层堵水与加固工法。回顾了2002年以前国内外冻结井壁技术的状况。概述了2002年以来我国... 分析了“深部化”和“大型化”趋势对中国深井井筒的设计、施工与运维带来的严峻挑战。总结经验教训,指出冻结法是复杂条件下深井井筒施工最主要的地层堵水与加固工法。回顾了2002年以前国内外冻结井壁技术的状况。概述了2002年以来我国在400~800 m深厚土层中和在500~1000 m深厚富水岩层中冻结井壁技术取得的重大突破及其应用情况,包括:冻结井筒C60~C100、CF80~CF110高承载力混凝土井壁设计与施工技术,深厚土层中冻结井壁破裂灾害防治技术,深厚富水岩层中低渗漏单层井壁技术等。针对2002年以来中国冻结井壁技术的发展,总结了井壁材料的进步;介绍了横截面、纵剖面井壁结构的发展;归纳了对土层的初始水平水土压力、内层井壁承受的水压、冻结压力、富水岩层中孔隙水引起的井壁水力荷载、井壁竖直附加力等的新认识;简述了井壁力学模型,高径向承载力井壁和内层可缩井壁的力学特性,双层复合井壁之内、外壁厚度的设计理论,含水岩层中单层井壁厚度的设计理论和内层可缩井壁的设计理论等的新进展;介绍了大厚度井壁裂漏机理及防裂技术、井壁腐蚀破坏及防治技术、信息化施工技术,以及内层可缩井壁和低渗漏单层井壁的施工工艺。针对我国在1500 m超深土层中以及3000 m深厚富水岩层中冻结井壁技术将面临的挑战,指出应重点研究:深厚土层中冻结井筒掘进期间浅部外壁破裂新机理,超深土的力学特性,高强、高性能筑壁材料与构件,超高承载力井壁结构及其力学特性,超深冻结井壁设计理论与施工技术等。 展开更多
关键词 深厚土层 深厚富水岩层 立井 冻结法凿井 冻结井壁 井壁结构 井壁材料 井壁外载 冻结壁 力学特性 设计理论 施工技术
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深立井钻井法凿井超高强钢筋RPC井壁力学特性 被引量:2
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作者 姚直书 方玉 +2 位作者 程桦 许永杰 王佳奇 《采矿与安全工程学报》 北大核心 2025年第5期1029-1041,共13页
为解决我国西部地区深立井钻井井筒“一钻(扩)成井”的支护难题,提出采用新型超高强钢筋活性粉末混凝土(RPC)井壁结构。首先,基于量纲分析法推导超高强钢筋RPC井壁结构模拟试验相似准则;搭建井壁模型三轴加载与测试系统,并以C70高强钢... 为解决我国西部地区深立井钻井井筒“一钻(扩)成井”的支护难题,提出采用新型超高强钢筋活性粉末混凝土(RPC)井壁结构。首先,基于量纲分析法推导超高强钢筋RPC井壁结构模拟试验相似准则;搭建井壁模型三轴加载与测试系统,并以C70高强钢筋混凝土钻井井壁为对照组,开展标准养护和蒸压养护制度下的相似模型试验,研究该新型井壁的力学特性与破坏特征。结果显示,超高强钢筋RPC井壁的混凝土环向应变较C70钢筋混凝土钻井井壁增加82.97%~119.02%,呈现典型延性压剪破坏特征,且在外荷载作用下RPC抗压强度提高系数达到1.226~1.339。然后,利用Bresler八面体应力理论建立超高强RPC强度准则及抗压强度提高系数计算公式,结合量纲理论与回归分析法构建新型井壁极限承载力计算公式。最后,结合因素定量分析发现,钢筋配筋率对新型井壁极限承载力提高贡献有限。同等条件下,采用新型超高强RPC140筑壁材料较C70高强混凝土,钻井井壁承载力提高69.3%、支护深度增加65.1%。研究结果对实现我国西部地区深立井钻井井筒快速施工具有重要工程应用价值。 展开更多
关键词 深立井井筒 钻井法凿井 RPC 超高强钻井井壁 力学特性
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城轨交通地下空间网络化拓建关键技术
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作者 戴志仁 张莎莎 +6 位作者 李国良 邹维列 冯虎 李明宇 贾建伟 杨志全 韩雪 《铁道工程学报》 北大核心 2025年第10期89-95,共7页
研究目的:随着我国新型城镇化战略的深入实施,中心城区人口不断聚集,既有地下空间的改造、拓建,是实现地下空间资源充分利用的重要手段,城市轨道交通地下空间的网络化拓建正是典型代表。基于目前地下空间改扩建类型及存在问题的调研,对... 研究目的:随着我国新型城镇化战略的深入实施,中心城区人口不断聚集,既有地下空间的改造、拓建,是实现地下空间资源充分利用的重要手段,城市轨道交通地下空间的网络化拓建正是典型代表。基于目前地下空间改扩建类型及存在问题的调研,对新建与改拓建地下工程的差异进行系统分析,提出既有城轨交通地下空间横向与竖向拓建关键技术。研究结论:(1)从三个维度对城市轨道交通地下结构的改拓建工程进行了分类,从横向连通接驳、竖向增层与交叉穿越两个方面对各类城轨交通地下工程的拓建技术进行了分析;(2)研究提出的大刚度C型咬合梁在接驳连通方面可实现新旧结构接缝部位的零渗漏目标,明确了竖向支撑是实现既有隧道扩挖期间拱顶应力释放、沉降变形控制的关键;(3)提出了基于中洞法的竖向荷载主动托换体系可实现运营车站下方零距离增层拓建,进一步针对运营隧道上方的跨越拓建,提出了基坑或竖井跳挖技术,可有效应对隧道上方地层卸载引起的回弹隆起变形;(4)本研究结论可为地下空间改扩建工程提供借鉴。 展开更多
关键词 轨道交通 地下空间 拓建 C型咬合梁 主动托换 跳挖竖井
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