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Study on creep deformation and energy development of underground surrounding rock under four‐dimensional support
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作者 Zhanguo Ma Junyu Sun +3 位作者 Peng Gong Pengfei Yan Nan Cui Ruichong Zhang 《Deep Underground Science and Engineering》 2024年第1期25-38,共14页
There is an urgent need to develop optimal solutions for deformation control of deep high‐stress roadways,one of the critical problems in underground engineering.The previously proposed four‐dimensional support(here... There is an urgent need to develop optimal solutions for deformation control of deep high‐stress roadways,one of the critical problems in underground engineering.The previously proposed four‐dimensional support(hereinafter 4D support),as a new support technology,can set the roadway surrounding rock under three‐dimensional pressure in the new balanced structure,and prevent instability of surrounding rock in underground engineering.However,the influence of roadway depth and creep deformation on the surrounding rock supported by 4D support is still unknown.This study investigated the influence of roadway depth and creep deformation time on the instability of surrounding rock by analyzing the energy development.The elastic strain energy was analyzed using the program redeveloped in FLAC3D.The numerical simulation results indicate that the combined support mode of 4D roof supports and conventional side supports is highly applicable to the stability control of surrounding rock with a roadway depth exceeding 520 m.With the increase of roadway depth,4D support can effectively restrain the area and depth of plastic deformation in the surrounding rock.Further,4D support limits the accumulation range and rate of elastic strain energy as the creep deformation time increases.4D support can effectively reduce the plastic deformation of roadway surrounding rock and maintain the stability for a long deformation period of 6 months.As confirmed by in situ monitoring results,4D support is more effective for the long‐term stability control of surrounding rock than conventional support. 展开更多
关键词 coal mines elastic strain energy four‐dimensional support large roadway depth long‐term stability control plastic deformation surrounding rock
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Discussion on Construction Technology and Welding Deformation of High-Rise Steel Frame Structure
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作者 Sijin He Xinzhong Leng 《Journal of World Architecture》 2023年第5期23-28,共6页
Because of urbanization,land resources in China’s cities has become increasingly scarce.Therefore,modern buildings are becoming taller,making high-rise steel frame structures the new favorite of the construction indu... Because of urbanization,land resources in China’s cities has become increasingly scarce.Therefore,modern buildings are becoming taller,making high-rise steel frame structures the new favorite of the construction industry.However,the construction of high-rise steel frame structures requires advanced technology.If the construction technology is effectively implemented and the welding techniques of the construction personnel align with the requirements for high-rise steel frame structures,it can help mitigate deformations in the steel structure,thus preserving the overall construction quality of high-rise steel frame structures.To enhance the applicability of steel frame structures in high-rise buildings,this paper focuses on analyzing the optimization path for the construction process of high-rise steel frame structures.It introduces a tailored approach to control welding-induced deformations in steel frame structures,aiming to make a valuable contribution to the advancement of China’s construction industry. 展开更多
关键词 High-rise steel frame structure Construction technology Welding deformation Structural stability
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Deformation Mechanism and Stability of a Rocky Slope 被引量:4
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作者 黄润秋 肖华波 +1 位作者 巨能攀 赵建军 《Journal of China University of Geosciences》 SCIE CAS CSCD 2007年第1期77-84,共8页
A high slope is located on the side of the spillway at a hydropower station in Southwest China, which has some weak inter-layers inclining outwards. Parts of the slope show heavy weathering and unloading. There appear... A high slope is located on the side of the spillway at a hydropower station in Southwest China, which has some weak inter-layers inclining outwards. Parts of the slope show heavy weathering and unloading. There appeared deformation and tensile crack either on the surface or on the afteredge of the slope during excavation, and under a platform (elev. 488 m), two levels of slopes collapsed on the downriver side. Based on the investigation in situ and the analysis of the geological structure, the conceptual model of deformation and failure mechanism was erected for this slope. Furthermore, the deformation characteristics were studied with FLAC^3D numerical simulation. Comprehensive analysis shows that the whole deformation of the slope is unloading rebound in certain depth scope and the whole body does not slide along any weak interlayer. In addition, two parts with prominent local deformation in the shallow layer of the slope show the models of "creep sfiding-tensile cracking" and "slidlng-tensile cracking", respectively. Based on the above analysis, the corresponding project of support and reinforcement is proposed to make the slope more stable. 展开更多
关键词 high rock slope deformation and failure mechanism stability SUPPORT
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Stability and reinforcement analyses of high arch dams by considering deformation effects 被引量:1
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作者 Qiang Yang Yaoru Liu +1 位作者 Yingru Chen Weiyuan Zhou 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE 2010年第4期305-313,共9页
The strict definition and logical description of the concept of structure stability and failure are presented. The criterion of structure stability is developed based on plastic complementary energy and its variation.... The strict definition and logical description of the concept of structure stability and failure are presented. The criterion of structure stability is developed based on plastic complementary energy and its variation. It is presented that the principle of minimum plastic complementary energy is the combination of structure equilibrium, coordination condition of deformation and constitutive relationship. Based on the above arguments, the deformation reinforcement theory is developed. The structure global stability can be described by the relationship between the global degree of safety of structure and the plastic complementary energy. Correspondingly, the new idea is used in the evaluations of global stability, anchorage force of dam-toe, fracture of dam-heel and treatment of faults of high arch dams in China. The results show that the deformation reinforcement theory provides a uniform and practical theoretical framework and a valuable solution for the analysis of global stability, dam-heel cracking, dam-toe anchorage and reinforcement of faults of high arch dams and their foundations. 展开更多
关键词 deformation reinforcement theory structure stability unbalanced force plastic complementary energy high arch dams
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Stability influence factors analysis and construction of a deep beam anchorage structure in roadway roof 被引量:8
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作者 Xie Shengrong Gao Mingming +4 位作者 Chen Dongdong Sun Yanding Pan Hao Su Hai Lan Shizhong 《International Journal of Mining Science and Technology》 EI CSCD 2018年第3期445-451,共7页
Deep beam anchorage structures based on spatial distribution analysis of the cable prestressed field have been proposed for roadway roof support, Stability and other factors that influence deep beam structures are stu... Deep beam anchorage structures based on spatial distribution analysis of the cable prestressed field have been proposed for roadway roof support, Stability and other factors that influence deep beam structures are studied in this paper using mechanical calculations, numerical analysis and field measurements, A mechanical model of deep beam structure subjected to multiple loading is established, including analysis of roof support in the return airway of S1203 working face in the Yuwu coal mine, China, The expression of maximum shear stress in the deep beam structure is deduced according to the stress superposition criterion, It is found that the primary factors affecting deep beam structure stability are deep beam thickness, cable pre-tension and cable spacing, The variation of maximum shear stress distribution and prestressed field diffusion effects according to various factors are analyzed using Matlah and FLAC3DTM software, and practical support parameters of the S1203 return airway roof are determined, According to the observations of rock pressure, there is no evidence of roof separation, and the maximum values of roof subsidence and convergence of wall rock are 72 and 48 mm, respectively, The results show that the proposed roof support design with a deep beam structure is feasible and achieves effective control of the roadway roof, 展开更多
关键词 Support structure Deep beam Maximum shear stress Influencing factors stability control Roadway roof
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Deformation mechanism of surrounding rocks and key control technology for a roadway driven along goaf in fully mechanized top-coal caving face 被引量:10
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作者 李学华 《Journal of Coal Science & Engineering(China)》 2003年第1期28-32,共5页
The variation of the stress in the bolted surrounding rocks structure of the roadway driven along goaf in a fully mechanized top coal caving face with moderate stable conditions are studied by using numerical calculat... The variation of the stress in the bolted surrounding rocks structure of the roadway driven along goaf in a fully mechanized top coal caving face with moderate stable conditions are studied by using numerical calculation. The essential deformation characteristics of the surrounding rocks in this kind of roadway are obtained and the key technology of bolting support used under these conditions is put forward. 展开更多
关键词 moderate stability gob side entry driving in a fully mechanized top coal caving face stress deformation bolting support
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Influence of flange location on axial deformation stability of double-hat structure
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作者 武雪原 夏勇 周青 《Journal of Beijing Institute of Technology》 EI CAS 2012年第1期41-49,共9页
A new structural configuration with better impact stability for increasing energy absorbing efficiency is found. Based on finite element analysis, deformation modes of double-hat structure under axial impact loading a... A new structural configuration with better impact stability for increasing energy absorbing efficiency is found. Based on finite element analysis, deformation modes of double-hat structure under axial impact loading are categorized to find the main reasons that affect deformation stability. It is revealed that, in a double-hat structure, the location of the flanges is highly related to the deform- ation mode and energy absorbing efficiency. Moving the flanges away from their traditional mid-loca- tion may result in more regular and stable deformation mode and achieve higher energy absorbing ef- ficiency. The flange offset value needs to be controlled within a certain range, otherwise, the doub- le-hat structure would tend to deform like a top-hat structure and the energy absorbing efficiency could be compromised. These findings and analyses lead to a new structural design configuration- asymmetric flange locations--for enhancing the deformation mode stability in double-hat structures. 展开更多
关键词 double-hat structure structural stability plastic deformation energy absorbing effi- ciency
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Cable-truss supporting system for gob-side entry driving in deep mine and its application 被引量:3
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作者 Yin Qian Jing Hongwen +3 位作者 Dai Dapeng Zhu Tantan Zhao Honghui Meng Bo 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第5期885-893,共9页
In order to solve the large deformation controlling problem for surrounding rock of gob-side entry driving under common cable anchor support in deep mine, site survey, physical modeling experiment, numerical simulatio... In order to solve the large deformation controlling problem for surrounding rock of gob-side entry driving under common cable anchor support in deep mine, site survey, physical modeling experiment, numerical simulation and field measurement were synthetically used to analyze the deformation and failure characteristics of surrounding rock. Besides, applicability analysis, prestress field distribution characteristics of surrounding rock and the control effect on large deformation of surrounding rock were also further studied for the gob-side entry driving in deep mine using the cable-truss supporting system. The results show that, first, compared with no support and traditional bolt anchor support, roof cable-truss system can effectively restrain the initiation and propagation of tensile cracks in the roof surrounding rock and arc shear cracks in the two sides, moreover, the broken development of surrounding rock, roof separation and extrusion deformation between the two sides of the roadway are all controlled; second, a prestressed belt of trapezoidal shape is generated in the surrounding rock by the cable-truss supporting system, and the prestress field range is wide. Especially, the prestress concentration belt in the shallow surrounding rock can greatly improve the anchoring strength and deformation resisting capability of the rock stratum;third, an optimized support system of ‘‘roof and side anchor net beam, roof cable-truss supporting system and anchor cable of the narrow coal pillar" was put forward, and the support optimization design and field industrial test were conducted for the gob-side entry driving of the working face 5302 in Tangkou Mine, from which a good supporting effect was obtained. 展开更多
关键词 Deep mine Gob-side entry driving Cable-truss supporting system deformation and failure stability
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薄壁结构件的正向吸附辅助支撑钻削工艺研究
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作者 王福吉 王一成 +2 位作者 付饶 杜长霖 赵猛 《航空制造技术》 CSCD 北大核心 2024年第7期54-60,共7页
航空航天领域中薄壁结构件的连接装配要求加工高精度的连接孔,但此类结构件钻削加工时变形大、易振动,严重影响制孔精度和表面质量,传统装夹方法存在装夹跨距大、难以充分有效支撑等问题。本文提出通过正向吸附辅助支撑,提高薄壁结构件... 航空航天领域中薄壁结构件的连接装配要求加工高精度的连接孔,但此类结构件钻削加工时变形大、易振动,严重影响制孔精度和表面质量,传统装夹方法存在装夹跨距大、难以充分有效支撑等问题。本文提出通过正向吸附辅助支撑,提高薄壁结构件加工时的局部刚度,进而提高薄壁结构件的加工质量,并通过仿真和试验相结合的方式研究了正向吸附辅助支撑对薄壁结构件钻削加工的影响。结果表明,在本文仿真和试验条件下,正向吸附辅助支撑可使钻削位置刚度提升40倍以上,孔壁粗糙度值降低67%以上,圆度公差降低60%以上,孔径偏差降低50%以上,同一孔的靠近出口、入口位置的孔径偏差降低90%以上。可见,正向吸附辅助支撑可显著提高薄壁结构件的制孔精度和质量。 展开更多
关键词 正向吸附辅助支撑 薄壁结构件 钻削 刚度 变形
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装配式地连墙接缝变形特性研究
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作者 刘永超 贺文贤 +4 位作者 李泽源 王川 石长城 王成 陆鸿宇 《建筑科学与工程学报》 CAS 北大核心 2024年第2期75-84,共10页
为了研究接缝对装配式地连墙变形特性的影响并采取合理的改进措施,采用现场试验的方法将局部现浇地连墙替换为装配式地连墙,并对其实测的变形数据进行了对比分析;在实测数据分析的基础上,通过PLAXIS2D有限元软件模拟分析了不同深度横向... 为了研究接缝对装配式地连墙变形特性的影响并采取合理的改进措施,采用现场试验的方法将局部现浇地连墙替换为装配式地连墙,并对其实测的变形数据进行了对比分析;在实测数据分析的基础上,通过PLAXIS2D有限元软件模拟分析了不同深度横向接缝对装配式地连墙变形特性的影响规律;通过PLAXIS3D有限元软件对比了现浇墙与装配式地连墙水平方向及竖直方向变形形态,分析了竖向接缝对装配式地连墙变形特性的影响规律;最后,针对实测数据显示出的变形偏大问题,提出了改变冠梁刚度、围檩刚度、墙幅宽度、支撑位置4种改进措施,并通过PLAXIS3D有限元软件进行了验证。结果表明:装配式地连墙的接缝对墙体的刚度存在弱化作用,增大了其变形程度;位于坑底以上的横向接头失效时,墙体水平位移会显著增大,位于坑底以下的横向接头失效时,不会引起墙体水平位移的显著增大;竖向接头会显著减小装配式墙体的整体刚度,使其协同变形能力变差,变形更加难以控制;适当调节支撑位置可有效缓解墙幅间的错动和减小墙体变形。 展开更多
关键词 装配式地连墙 变形特性 支护结构 接缝
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滇中芹河隧洞软岩破碎段围岩大变形与支护结构相互作用研究
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作者 付敬 吴帆 +1 位作者 张雨霆 覃然 《长江科学院院报》 CSCD 北大核心 2024年第3期171-177,185,共8页
软岩大变形是滇中引水工程建设中较为突出的工程地质问题之一,以大楚段芹河隧洞4#支洞为研究对象开展软岩大变形特征及承载结构受力研究。4#支洞在施工过程中发生影响洞室稳定的问题,洞周围岩大变形不同程度侵限,导致钢拱架扭曲断裂、... 软岩大变形是滇中引水工程建设中较为突出的工程地质问题之一,以大楚段芹河隧洞4#支洞为研究对象开展软岩大变形特征及承载结构受力研究。4#支洞在施工过程中发生影响洞室稳定的问题,洞周围岩大变形不同程度侵限,导致钢拱架扭曲断裂、喷混凝土掉落现象时有发生。为了充分认识隧洞变形特征、破坏模式及成因机制,结合工程地质勘察、现场监控量测、数值反演及施工模拟分析等手段和方法对其进行综合研究。研究成果表明:破碎软岩洞段施工期围岩监测变形量大、变形速率较快,变形具有明显的时效性;围岩完整性差,洞周变形差异大;围岩以剪切破坏为主;围岩时效变形对支护结构受力影响大,部分承载结构受力超限,导致局部结构破坏。可见,针对破碎的软岩隧洞施工,需要采取超前注浆、减少减小施工扰动、及时跟进初期支护、尽快封闭成环,加强施工期围岩变形监测,选取合理的衬砌支护时机,实时指导和优化隧洞支护结构施工设计。 展开更多
关键词 破碎软岩 大变形 支护结构 蠕变 拱架断裂
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大型航天器结构热稳定性试验系统设计与实现
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作者 吴东亮 刘泽元 +2 位作者 朱琳 郭子寅 陶东兴 《计算机测量与控制》 2024年第9期322-327,335,共7页
结构形面热稳定性是航天器结构设计的重要指标之一,对航天器在轨真空低温环境下功能与性能的实现具有重要作用,为确保航天器结构热稳性设计的正确性,需在地面开展空间环境热稳定性测试试验;针对大尺寸结构高精度、高频率热变形测量需求... 结构形面热稳定性是航天器结构设计的重要指标之一,对航天器在轨真空低温环境下功能与性能的实现具有重要作用,为确保航天器结构热稳性设计的正确性,需在地面开展空间环境热稳定性测试试验;针对大尺寸结构高精度、高频率热变形测量需求开展研究,采用光学摄影原位变形测量技术,设计了多相机融合测量系统架构及测量方法,有效保证了大型结构最优变形测量场的构建,并通过系统机电、图像采集装置的智能化同步控制设计,实现了图像数据的空间位置属性的自动匹配;通过试验验证,结果表明该系统可满足真空低温环境下尺寸不小于4 m的瞬态、高精度结构变形测量,最小测量周期可达90 s,单向测量精度优于28μm,测试过程运行稳定可靠。 展开更多
关键词 大型航天器 结构 热稳定性 变形测量 系统设计
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盾构机始发井深基坑力学和变形特性离心模型试验研究
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作者 孙慧 李波 +1 位作者 王志鹏 王帅 《岩土工程学报》 EI CAS CSCD 北大核心 2024年第S01期244-248,共5页
为探究盾构机始发井深基坑开挖过程中周边土体的应力、变形和土压力分布规律,通过对工程原型进行概化,在典型土层条件下,采用停机-开挖-支护的模拟方式开展了方形基坑和圆形基坑两种方案共2组离心模型试验,从地连墙的弯矩和其后土体的... 为探究盾构机始发井深基坑开挖过程中周边土体的应力、变形和土压力分布规律,通过对工程原型进行概化,在典型土层条件下,采用停机-开挖-支护的模拟方式开展了方形基坑和圆形基坑两种方案共2组离心模型试验,从地连墙的弯矩和其后土体的水平位移、基坑外侧土压力分布以及地表沉降等角度,对比分析了两种盾构机始发井深基坑开挖过程的工程特性。结果表明:地面沉降随基坑开挖深度增大逐渐增加,形成沉降槽状;地连墙土压力变化呈非线性,随着基坑开挖不断深入的,离地表较近处的土压力逐渐变大,而深处的土压力则逐渐减小;在第5步开挖时2组模型地下连续墙水平位移均达到最大值,圆形基坑是方形基坑的1.4倍,同时地连墙的弯矩也达到最大值,圆形基坑比方形基坑小320 kN·m。研究成果可为深埋隧道深基坑的优化设计和开挖提供指导。 展开更多
关键词 盾构机始发井 深基坑 支护结构 离心模型 变形 弯矩 土压力
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锚杆钻车运行中支护承载结构及围岩受力变形分析
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作者 王雁冰 梅洪嘉 +3 位作者 张京泉 李凯 刘珍 李杨 《安徽理工大学学报(自然科学版)》 CAS 2024年第1期1-11,共11页
目的针对单轨液压锚杆钻车运行过程中支护承载结构及围岩受力变形难以观测分析的问题。方法利用研发的CMMD4-35煤矿用单轨液压锚杆钻车,结合长城五矿1902S回风巷巷道现场情况综合分析钻车在大断面大倾角巷道动态运行的支护、承载及围岩... 目的针对单轨液压锚杆钻车运行过程中支护承载结构及围岩受力变形难以观测分析的问题。方法利用研发的CMMD4-35煤矿用单轨液压锚杆钻车,结合长城五矿1902S回风巷巷道现场情况综合分析钻车在大断面大倾角巷道动态运行的支护、承载及围岩协同受力变形特征。结果研究表明,钻车运行过程中吊挂板的受力变形在悬吊点处均达到峰值,工字钢在悬吊点的部分位移最小,与钻车直接接触的部分受力最大;锚索中部主要受到拉应力,靠近巷道一侧主要受到剪应力,而巷道两帮的锚杆拉应力主要分布在靠近巷道内部一侧;巷道顶板悬吊点处位移最大,两帮靠近顶板位移高于底板处,而巷道偏向低帮处底板的位移大于高帮处;以单轨液压锚杆钻车为核心的新型配套工艺可以有效控制围岩变形,支护效果良好,比传统以掘锚一体机为中心的机器化工艺掘进效率更高。结论研究明确了CMMD4-35煤矿用单轨液压锚杆钻车在实际应用的可行性,解决了现有掘锚一体机难以在复杂地质条件下大断面煤巷自动化掘进支护的问题,提升了煤巷支护效果掘进效率,为CMMD4-35煤矿用单轨液压锚杆钻车的现场应用提供了理论依据。 展开更多
关键词 锚杆钻车 锚杆锚索 承载结构 支护结构 巷道围岩 受力变形
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杭州电竞中心车辐式索承网格屋盖结构设计
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作者 熊森 冯孝宾 +2 位作者 朱铭超 张卫 李朋 《建筑结构》 北大核心 2024年第17期16-22,共7页
索承网格结构是一种新型空间结构形式,广泛应用于大跨度空间结构中。针对杭州电竞中心车辐式索承网格屋盖结构进行分析和设计,采用MIDAS有限元软件进行索张拉施工方案设计与仿真,采用ABAQUS有限元软件进行稳定性分析和大震动力弹塑性分... 索承网格结构是一种新型空间结构形式,广泛应用于大跨度空间结构中。针对杭州电竞中心车辐式索承网格屋盖结构进行分析和设计,采用MIDAS有限元软件进行索张拉施工方案设计与仿真,采用ABAQUS有限元软件进行稳定性分析和大震动力弹塑性分析。分析结果表明:在施工过程各个阶段,屋盖钢结构构件应力比始终小于1,索拉力小于索破断力的30%;施工完成时,与设计值相比,屋盖结构最大竖向位移和索内拉力的误差分别为6%和4%;屋盖结构稳定安全系数为9.63,单层网壳结构稳定安全系数为31.2,均大于规范规定的2.0,屋盖结构稳定性满足要求;初始缺陷对本工程单层网壳的影响很小;在大震作用下,屋盖结构构件均未出现塑性变形,且预应力拉索不退张。 展开更多
关键词 杭州亚运会 杭州电竞中心 钢结构屋盖 车辐式索承网格结构 索张拉施工模拟 稳定性分析
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17m超高坐地式玻璃肋幕墙系统结构性能和试验研究 被引量:1
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作者 孙淑萍 李永春 +2 位作者 喻庆先 杜玉芬 徐诚 《价值工程》 2024年第2期92-94,共3页
文章以泰康大厦工程为背景,针对超高坐地式玻璃肋幕墙系统进行了大风压作用下的结构性能和位移能力试验研究,通过有限元、试验、理论三者进行对比分析。研究表明,该幕墙系统不仅满足1.75kPa风压作用下的结构性能要求和2.63kPa大风压下... 文章以泰康大厦工程为背景,针对超高坐地式玻璃肋幕墙系统进行了大风压作用下的结构性能和位移能力试验研究,通过有限元、试验、理论三者进行对比分析。研究表明,该幕墙系统不仅满足1.75kPa风压作用下的结构性能要求和2.63kPa大风压下结构的安全性能要求,而且满足三个方向位移能力的要求。充分说明17m超高坐地式玻璃肋幕墙系统的设计方案安全可行,设计方案和试验结果可为今后超高坐地式玻璃肋幕墙系统的设计提供支持。 展开更多
关键词 超高玻璃肋 幕墙系统 结构性能 位移能力 坐地式 非线性 稳定性
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排桩复合土钉支护结构水平位移简化计算方法
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作者 郭院成 杨武帅 +2 位作者 刘煜 马锴 李永辉 《四川建筑科学研究》 2024年第4期33-39,共7页
针对排桩复合土钉支护结构,基于其受力变形机理,引入了土钉钉头与排桩在相应位置处变形协调的基本假定,考虑了分步开挖施工工况,采用增量法建立了考虑施工过程影响的排桩复合土钉支护结构水平位移简化计算方法。算例及工程实例计算的对... 针对排桩复合土钉支护结构,基于其受力变形机理,引入了土钉钉头与排桩在相应位置处变形协调的基本假定,考虑了分步开挖施工工况,采用增量法建立了考虑施工过程影响的排桩复合土钉支护结构水平位移简化计算方法。算例及工程实例计算的对比分析表明,所建立的排桩复合土钉支护结构水平位移简化计算方法具有工程适用性。 展开更多
关键词 基坑工程 复合支护结构 水平位移 增量法 受力变形机理
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西安国际文化传播中心大跨斜幕墙支承结构设计
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作者 王洪臣 张涛 +1 位作者 周文兵 韦孙印 《建筑结构》 北大核心 2024年第5期46-50,共5页
西安国际文化传播中心大跨斜幕墙支承采用竖向张弦桁架结构体系,结构造型独特新颖。对其结构选型和受力特点进行了重点介绍。采用MIDAS Gen软件建立有限元模型,进行非线性静力及抗震分析计算,同时采用ANSYS软件对考虑几何与材料双重非... 西安国际文化传播中心大跨斜幕墙支承采用竖向张弦桁架结构体系,结构造型独特新颖。对其结构选型和受力特点进行了重点介绍。采用MIDAS Gen软件建立有限元模型,进行非线性静力及抗震分析计算,同时采用ANSYS软件对考虑几何与材料双重非线性的结构整体稳定性进行了详细分析,探讨了安全系数取值等。分析结果及实际使用效果表明,幕墙支承满足正常使用的各项要求,并具有良好的抗震性能。 展开更多
关键词 西安国际文化传播中心 大跨斜幕墙 支承结构 张弦桁架 非线性分析 抗震计算 稳定分析
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柔性光伏支架基础设计与分析
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作者 曾鹏 《低温建筑技术》 2024年第3期160-163,共4页
为研究柔性光伏支架桩基在局部淤泥质土较厚区域的水平承载力和稳定性,文中通过江苏某渔光互补发电项目,采用规范公式进行了相关验算,并对水平力作用下桩土共同作用进行有限元分析验证。结果表明,柔性光伏支架桩基设计规范方法与有限元... 为研究柔性光伏支架桩基在局部淤泥质土较厚区域的水平承载力和稳定性,文中通过江苏某渔光互补发电项目,采用规范公式进行了相关验算,并对水平力作用下桩土共同作用进行有限元分析验证。结果表明,柔性光伏支架桩基设计规范方法与有限元结果较为相符,桩基的水平承载力和稳定性满足规范要求。总结分析锚杆抗拔承载力的计算方法和深厚淤泥质土区域光伏锚杆的加强措施。相关结论可为同类项目设计提供参考。 展开更多
关键词 柔性光伏支架 桩水平力 桩稳定分析 锚杆
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木材加工超薄圆锯片基体结构对其稳定性的影响 被引量:1
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作者 曹华楠 孟令鑫 +2 位作者 时君友 温明宇 李传信 《林产工业》 北大核心 2024年第4期35-41,共7页
木材加工超薄圆锯片的稳定性是影响锯切质量的重要因素之一,圆锯片的稳定性会随着锯身厚度的减小而降低。在切削木材过程中产生大量切削热会使锯身发生热形变,进而导致锯片稳定性降低。提高圆锯片切削稳定性传统的方法主要在生产工艺上... 木材加工超薄圆锯片的稳定性是影响锯切质量的重要因素之一,圆锯片的稳定性会随着锯身厚度的减小而降低。在切削木材过程中产生大量切削热会使锯身发生热形变,进而导致锯片稳定性降低。提高圆锯片切削稳定性传统的方法主要在生产工艺上通过对锯身施加预应力,抵消切削热对锯身形变的影响。本文通过改变锯身的基体结构,对不同基体材料的木工圆锯片进行基体几何处理,使其能够在切削木材过程中抵消热应力,从而提高切削稳定性。 展开更多
关键词 木工圆锯片 超薄圆锯片 基体结构 稳定性 抗形变能力
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