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等跨度变截面钢箱梁桥顶推施工过程受力分析及关键技术研究 被引量:3
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作者 庞振宇 《交通世界》 2022年第30期70-72,共3页
首先介绍和分析了桥梁顶推施工法,随后基于顶推施工工艺特点,并依托某高速公路桥工程施工实例,通过有限元数值模拟与理论分析,研究等跨度变截面钢箱梁桥顶推施工过程中梁体受力情况,最后提出钢箱梁顶推施工过程桥梁受力规律,分析变截面... 首先介绍和分析了桥梁顶推施工法,随后基于顶推施工工艺特点,并依托某高速公路桥工程施工实例,通过有限元数值模拟与理论分析,研究等跨度变截面钢箱梁桥顶推施工过程中梁体受力情况,最后提出钢箱梁顶推施工过程桥梁受力规律,分析变截面顶推桥梁施工关键问题并给出解决办法,旨在为类似工程提供参考与借鉴。 展开更多
关键词 等跨度变截面钢箱梁 顶推施工 受力分析
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两端铰支二跨梁的临界压力分析
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作者 罗高作 王妙立 《黄石高等专科学校学报》 2002年第1期29-31,共3页
推导出了两端铰支二跨梁的临界压力表达式 ,具体导出了两跨长度相等情况下的临界压力计算公式 。
关键词 失稳 临界压力 两端铰支二跨梁 多跨连续梁 等跨度 欧拉公式
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Calculation of Maximum Allowable Free Span Length and Safety Assessment of the DF1-1 Submarine Pipeline 被引量:4
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作者 XU Jishang LI Guangxue +2 位作者 Juan J. Horrillo YANG Rongmin CAO Lihua 《Journal of Ocean University of China》 SCIE CAS 2010年第1期1-10,共10页
The DFI-1 submarine pipeline was investigated using a dual-frequency side-scan sonar and a swath sounder system. More than a hundred scour pits under the pipeline were found, most of which have caused the span of the ... The DFI-1 submarine pipeline was investigated using a dual-frequency side-scan sonar and a swath sounder system. More than a hundred scour pits under the pipeline were found, most of which have caused the span of the pipeline to increase and threatened its safety. The maximum allowable free span length (MAFSL) of the pipeline was determined through the limitations re- garding maximum allowable stress under static or quasi-static loads and the onset of Vortex Induced Vibrations (VIV) under different hydrodynamic actions. The results show that the MAFSL under static conditions is 56m. However, the MAFSLs are 30m and 20m under ordinary weather conditions and hurricane-induced currents for the 100-year return period, respectively, to avoid VIV as cal- culated by using the highest safety class factor. It is suggested that spanning pipelines longer than 20 m should be supported. Addi- tionally, eight successive spans which may also threaten the pipeline were proposed. The most hazardous scour pits are along the pipeline section from KP42 to KP51. 展开更多
关键词 submarine pipeline SCOUR SPAN safety assessment Vortex Induced Vibrations (VIV) maximum allowable span length
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Development of a new type of foam concrete and its application on stability analysis of large-span soft rock tunnel 被引量:6
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作者 王辉 陈卫忠 +2 位作者 谭贤君 田洪铭 曹俊杰 《Journal of Central South University》 SCIE EI CAS 2012年第11期3305-3310,共6页
The long-term stability of large-span soft rock tunnel is influenced greatly by the creep effect of surrounding rock.The development of a new type of foam concrete which has the property of high compressibility and lo... The long-term stability of large-span soft rock tunnel is influenced greatly by the creep effect of surrounding rock.The development of a new type of foam concrete which has the property of high compressibility and low ductility was introduced.And it was made as filling material of reserved deformation layer between the first lining and the second lining used in large-span soft rock tunnel.The effect of the new type of foam concrete was simulated as filling material of reserved deformation layer using numerical simulation.Through the comparison with the common large-span soft rock tunnel,the vault settlement and surrounding convergence are reduced by about 61% and 45%,respectively,after creep of 100 a.And in the second lining,the plastic zone reduces apparently and the maximum equivalent plastic strain decreases relatively.So,it can be found that the application of the new type of foam concrete as the filling material of reserved deformation layer can relieve the excessive force in second lining induced by rock creep,reduce its deformation and improve the stability of tunnel. 展开更多
关键词 foam concrete large-span soft rock tunnel stability analysis numerical simulation
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Simplified design of rock cavern concrete lining to resist shock loading 被引量:3
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作者 ZHAO P J LOK T S +1 位作者 殷志强 周子龙 《Journal of Central South University》 SCIE EI CAS 2010年第5期1087-1094,共8页
A simplified method was proposed for the design of concrete lining in underground rock cavern/tunnel against shock loading. The loading may result from the detonation of explosives on ground surface or ground penetrat... A simplified method was proposed for the design of concrete lining in underground rock cavern/tunnel against shock loading. The loading may result from the detonation of explosives on ground surface or ground penetration projectiles exploding adjacent to the cavern/tunnel. The resulting problem necessitates the solution of the dynamics of a beam loaded by a transient pressure uniformly distributed over the span. According to mechanical characteristics of the system with rock bolt and shotcrete, a dynamic support design method based on equivalent single degree of freedom (SDOF) was put forward. The SDOF method was applied to obtaining the maximum displacement at the mid-span of the beam, which is often the controlling factor in the blast-resistant design. In the formulation of the problem, the proposed method combines the phenomena of spalling and structural dynamics theory. An example is provided to demonstrate the applicability of this simplified method. 展开更多
关键词 tunnel lining design shock loading dynamic response rock cavern
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