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A Method for the Damage Detection of Pile Foundation in High-Pile Wharf Based on A Curvature Mode Deletion Model 被引量:1
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作者 WANG Qi-ming ZHU Rui-hu +3 位作者 ZHENG Jin-hai WANG Ning LUO Meng-yan CHE Yu-fei 《China Ocean Engineering》 SCIE EI CSCD 2020年第6期871-880,共10页
As the top of the pile foundation in high-pile wharf is connected to the superstructure and most of the pile bodies are located below the water surface, traditional damage detection methods are greatly limited in thei... As the top of the pile foundation in high-pile wharf is connected to the superstructure and most of the pile bodies are located below the water surface, traditional damage detection methods are greatly limited in their application to pile foundation in service. In the present study, a new method for pile foundation damage detection is developed based on the curve shape of the curvature mode difference(CMD) before and after damage. In the method, the influence at each node on the overall CMD curve shape is analyzed through a data deletion model, statistical characteristic indexes are established to reflect the difference between damaged and undamaged units, and structural damage is accurately detected. The effectiveness and robustness of the method are verified by a finite element model(FEM) of high-pile wharf under different damage conditions and different intensities of Gaussian white noise. The applicability of the method is then experimentally validated by a physical model of high-pile wharf. Both the FEM and the experimental results show that the method is capable of detecting pile foundation damage in noisy curvature mode and has strong application potential. 展开更多
关键词 high-pile wharf pile foundation curvature mode data deletion model damage detection
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The Research on Safety Evaluation of High-pile Wharf Structure
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作者 Li Jue long Xing Jianchun +1 位作者 Li Hairui Yang Qiliang 《仪器仪表学报》 EI CAS CSCD 北大核心 2013年第S1期178-184,共7页
Due to a combination of the sea erosion,the ship collision,the change of ground condition,the effect of alternative static and dynamic load and the material deterioration,the structure of high-pile wharf is easily dam... Due to a combination of the sea erosion,the ship collision,the change of ground condition,the effect of alternative static and dynamic load and the material deterioration,the structure of high-pile wharf is easily damaged.Once the structure of high-pile wharf destroyed,it is bound to be a great threat to the safety of various facilities and personnel in the port.Given all of that,the multi-level comprehensive evaluation method based on the extension theory is proposed in this paper.Using this method to assess the safety of high-pile wharf structure,the reasonable advice on its maintenance and reinforcement can be given in time.What’s more,the method is simple and can give more objective result of the evaluation. 展开更多
关键词 high-pile wharf safety evaluation EXTENSION theory ANALYTICAL HIERARCHY process
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Research on Deformation and Force of Bridge Pile Foundation on High and Steep Slope in Mountainous Area 被引量:2
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作者 Mingyue Zhang Hao Luo 《World Journal of Engineering and Technology》 2020年第3期551-564,共14页
With the rapid development of my country’s economy, the demand for infrastructure construction is also increasing. However, in most areas of China, the terrains are mountainous and hilly. Some projects have to be bui... With the rapid development of my country’s economy, the demand for infrastructure construction is also increasing. However, in most areas of China, the terrains are mountainous and hilly. Some projects have to be built on steep slopes. Choosing viaducts or half-bridges on high-steep slopes is not only conducive to the protection of the surrounding environment, but also conducive to the stability of the slope. Bridges usually choose the form of pile </span><span style="font-family:Verdana;">foundation-high pier bridge. This paper uses numerical simulation to study and analyze the bridge pile foundation of the slope section. Relying on actual</span><span style="font-family:Verdana;"> engineering, use the finite element software ABAQUS6.14 to establish a three-dimensional finite element model to study the bearing mechanism and mechanical characteristics of the pile foundation under vertical load, horizontal load and inclined load, discuss the influence of the nature of the soil around the pile and the stiffness of the pile body on the deformation and internal force of the bridge pile foundation in the slope section. The analysis results show that the horizontal load has a great influence on the horizontal displacement of the pile, but has a small influence on the vertical displacement, and the vertical load is just the opposite. Inclined load has obvious “p-Δ” effect. The increase in soil elastic modulus and pile stiffness will reduce the displacement of the pile foundation, but after reaching a certain range, the displacement of the pile foundation will tend to be stable. Therefore, in actual engineering, if the displacement of the pile foundation fails to meet the requirements, the hardness of the soil and the stiffness of the pile can be appropriately increased, but not blindly. 展开更多
关键词 high and Steep Slope Bridge pile Foundation Force and Deformation Analysis Influencing Factors
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Simplified Calculation Methods for All-Vertical-Piled Wharf in Offshore Deep Water 被引量:3
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作者 WANG Yuan-zhan HE Lin-lin 《China Ocean Engineering》 SCIE EI CSCD 2017年第2期182-191,共10页
All-vertical-piled wharf is a kind of high-piled wharf, but it is extremely different from the traditional ones in some aspects, such as the structural property, bearing characteristics, failure mechanism, and static ... All-vertical-piled wharf is a kind of high-piled wharf, but it is extremely different from the traditional ones in some aspects, such as the structural property, bearing characteristics, failure mechanism, and static or dynamic calculation methods. In this paper, the finite element method (FEM) and theoretical analysis method are combined to analyze the structural property, bearing behavior and failure mode of the all-vertical-piled wharf in offshore deep water, and to establish simplified calculation methods determining the horizontal static ultimate bearing capacity and the dynamic response for the all-vertical-piled wharf. Firstly, the bearing capability and failure mechanism for all-vertical-piled wharf are studied by use of FEM, and the failure criterion is put forward for all-vertical-piled wharf based on the 'plastic hinge'. According to the failure criterion and P-Y curve method, the simplified calculation method of the horizontal static ultimate bearing capacity for all-vertical-piled wharf is proposed, and it is verified that the simplified method is reasonable by comparison with the FEM. Secondly, the displacement dynamic magnification factor for the all-vertical-piled wharf under wave cyclic loads and ship impact loads is calculated by the FEM and the theory formula based on the single degree of freedom (SDOF) system. The results obtained by the two methods are in good agreement with each other, and the simplified calculation method of the displacement dynamic magnification factor for all-vertical-piled wharf under dynamic loads is proposed. Then the simplified calculation method determining the dynamic response for the all-vertical-piled wharf is proposed in combination with P-Y curve method. That is, the dynamic response of the structure can be obtained through the static calculation results of P-Y curve method multiplied by the displacement dynamic magnification factor. The feasibility of the simplified dynamic response method is verified by comparison with the FEM under different conditions. 展开更多
关键词 all-vertical-piled wharf failure criterion plastic hinge dynamic amplification coefficient simplified calculation methods
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Effects of riverbed scour on seismic performance of high-rise pile cap foundation 被引量:5
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作者 Han Zhenfeng Ye Aijun Fan Lichu 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2010年第4期533-543,共11页
To explore the seismic performance of a high-rise pile cap foundation with riverbed scour, a finite element model for foundations is introduced in the OpenSees finite element framework. In the model, a fiber element i... To explore the seismic performance of a high-rise pile cap foundation with riverbed scour, a finite element model for foundations is introduced in the OpenSees finite element framework. In the model, a fiber element is used to simulate the pile shaft, a nonlinear p-y element is used to simulate the soil-pile interaction, and the p-factor method is used to reflect the group effects. A global and local scour model is proposed, in which two parameters, the scour depth of the same row of piles and the difference in the scour depth of the upstream pile and the downstream pile, are included to study the influence of scour on the foundation. Several elasto-plastic static pushover analyses are performed on this finite element model. The analysis results indicate that the seismic capacity (or supply) of the foundation is in the worst condition when the predicted deepest global scout depth is reached, and the capacity becomes larger when the local scour depth is below the predicted deepest global scout depth. Therefore, to evaluate the seismic capacity of a foundation, only the predicted deepest global scout depth should be considered. The method used in this paper can be also applied to foundations with other soil types. 展开更多
关键词 riverbed scour high-rise pile cap pile group fiber element seismic capacity PUSHOVER p-y element
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Model tests on XCC-piled embankment under dynamic train load of high-speed railways 被引量:6
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作者 Niu Tingting Liu Hanlong +1 位作者 Ding Xuanming Zheng Changjie 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第3期581-594,共14页
Piled embankments,which offer many advantages,are increasingly popular in construction of high-speed railways in China.Although the performance of piled embankment under static loading is well-known,the behavior under... Piled embankments,which offer many advantages,are increasingly popular in construction of high-speed railways in China.Although the performance of piled embankment under static loading is well-known,the behavior under the dynamic train load of a high-speed railway is not yet understood.In light of this,a heavily instrumented piled embankment model was set up,and a model test was carried out,in which a servo-hydraulic actuator outputting M-shaped waves was adopted to simulate the process of a running train.Earth pressure,settlement,strain in the geogrid and pile and excess pore water pressure were measured.The results show that the soil arching height under the dynamic train load of a high-speed railway is shorter than under static loading.The growth trend for accumulated settlement slowed down after long-term vibration although there was still a tendency for it to increase.Accumulated geogrid strain has an increasing tendency after long-term vibration.The closer the embankment edge,the greater the geogrid strain over the subsoil.Strains in the pile were smaller under dynamic train loads,and their distribution was different from that under static loading.At the same elevation,excess pore water pressure under the track slab was greater than that under the embankment shoulder. 展开更多
关键词 piled embankment model test dynamic train load of high-speed railways XCC-pile M-shaped wave
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Experimental Investigation of Irregular Wave Uplift Force on Deck of Exposed High-Pile Jetties 被引量:3
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作者 陈国平 孟艳秋 严士常 《China Ocean Engineering》 SCIE EI 2010年第1期67-78,共12页
A laboratory setup was developed to investigate irregular wave uplift loads on exposed high-pile jetties. It is shown that the dimensionless uplift load increases to the maximum with an increasing relative clearance a... A laboratory setup was developed to investigate irregular wave uplift loads on exposed high-pile jetties. It is shown that the dimensionless uplift load increases to the maximum with an increasing relative clearance and then decreases. The relative clearance corresponding to the peak force is linked to a range from 0.4 to 0.8. When the relative clearance exceeds a certain value, the wave can not reach the underside of the deck and the force becomes zero. Distinct trends of dimensionless force with a relative width of deck show that the force tends to decrease as the relative deck width increases, and then the decrease slows down after the relative deck width increases or decreases to a certain value. The pressure distribution length associated with the maximum uplift force is equivalent to the wave contact width x. When x is larger than the width of deck B, it is taken as B. The statistical distribution of loads obeys the Weibull distribution. The results from the analyses of the real data suggest a new dimensionless prediction model on wave-in-deck uplift loads and the conversion ratio between wave loads at different exceedance probabilities. A comparison is made between the new prediction model and the existing widely used three prediction models. These results are used as useful references for structural design of the jetty. 展开更多
关键词 irregular wave uplift force high-pile jetty
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Dynamic Characteristics and Simplified Numerical Methods of An All-Vertical-Piled Wharf in Offshore Deep Water 被引量:5
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作者 张华庆 孙熙平 +2 位作者 王元战 尹纪龙 王朝阳 《China Ocean Engineering》 SCIE EI CSCD 2015年第5期705-718,共14页
There has been a growing trend in the development of offshore deep-water ports in China. For such deep sea projects, all-vertical-piled wharves are suitable structures and generally located in open waters, greatly aff... There has been a growing trend in the development of offshore deep-water ports in China. For such deep sea projects, all-vertical-piled wharves are suitable structures and generally located in open waters, greatly affected by wave action. Currently, no systematic studies or simplified numerical methods are available for deriving the dynamic characteristics and dynamic responses of all-vertical-piled wharves under wave cyclic loads. In this article, we compare the dynamic characteristics of an all-vertical-piled wharf with those of a traditional inshore high-piled wharf through numerical analysis; our research reveals that the vibration period of an all-vertical-piled wharf under cyclic loading is longer than that of an inshore high-piled wharf and is much closer to the period of the loading wave. Therefore, dynamic calculation and analysis should be conducted when designing and calculating the characteristics of an all-vertical-piled wharf. We establish a dynamic finite element model to examine the dynamic response of an all-vertical-piled wharf under wave cyclic loads and compare the results with those under wave equivalent static load; the comparison indicates that dynamic amplification of the structure is evident when the wave dynamic load effect is taken into account. Furthermore, a simplified dynamic numerical method for calculating the dynamic response of an all-vertical-piled wharf is established based on the P-Y curve. Compared with finite element analysis, the simplified method is more convenient to use and applicable to large structural deformation while considering the soil non-linearity. We confirmed that the simplified method has acceptable accuracy and can be used in engineering applications. 展开更多
关键词 offshore deep water port all-vertical-piled wharf dynamic characteristics wave cyclic loads dynamic response simplified calculating methods
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In-Situ Test on Fatigue Characteristics of Top-Mounted Dividable Pile-Board Subgrade for High-Speed Railway 被引量:5
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作者 苏谦 白皓 +1 位作者 王迅 蒋浩然 《Journal of Southwest Jiaotong University(English Edition)》 2010年第1期8-12,共5页
To simulate the fatigue characteristics of the pile-board structure under long-term dynamic load, using the in-situ dynamic testing system DTS-1, the forced vibration loading was repeated one million times at differen... To simulate the fatigue characteristics of the pile-board structure under long-term dynamic load, using the in-situ dynamic testing system DTS-1, the forced vibration loading was repeated one million times at different cross-sections of the pile-board structure for high-speed railway. The dynamic deformation, permanent deformation and dynamic stress of main reinforcements were measured. The test results show that the dynamic responses of the pile-board structure almost did not vary with the forced vibration times under the simulated trainload. After one million times of forced vibration, the permanent deformations of the midspan section of intermediate span and midspan section of side span were 0.7 mm and 0. 6 mm, respectively, and there was no accumulative plastic deformation at the bearing section of intermediate span. 展开更多
关键词 high-speed railway Top-mounted dividable pile-board structure In-situ test Forced vibration test Fatigue characteristics
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Analysis of Soil arching effect for Blind sheet-pile wharf based on ABAQUS
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作者 LIU YaWei WANG LiJuan 《International English Education Research》 2016年第4期51-54,共4页
Combined with practical engineering, based on the introduction of soil arching theory, we explore the impact of barrier piles in blind sheet-pile bank connecting structure. Besides, we build a plane strain model by AB... Combined with practical engineering, based on the introduction of soil arching theory, we explore the impact of barrier piles in blind sheet-pile bank connecting structure. Besides, we build a plane strain model by ABAQUS sot'cware to study the impact of cross section type, the pile spacing and soil properties on soil arching effect. We find that cross section type of the pile has a certain influence on soil stress distribution in front of the barrier piles by comparing circular cross section and rectangular cross section. We also find that clear distance between the barrier piles and cohesive force of the soil have a great influence on that impact. We can increase clear distance between the barrier piles appropriately to improve the efficiency of construction and reduce the proiect cost. 展开更多
关键词 Blind sheet-pile wharf barrier piles earth pressure soil arching effect
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Settlement Characteristics of Cement Fly-Ash GravelPile-Plate Composite Foundation of High-Speed Railway
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作者 朱明 冷旷代 马建林 《Journal of Southwest Jiaotong University(English Edition)》 2010年第1期13-18,共6页
Field tests on settlement characteristics were carried out on the cement fly-ash gravel (CFG) pile-plate composite foundation on Beijing-Xuzhou section of Beijing-Shanghai high-speed railway. The settlements of the ... Field tests on settlement characteristics were carried out on the cement fly-ash gravel (CFG) pile-plate composite foundation on Beijing-Xuzhou section of Beijing-Shanghai high-speed railway. The settlements of the piles and the soil between pries were measured and analyzed. The results show that the settlement-time dependency experienced three phases: rapid development phase, stable development phase and stable phase. Therefore, surcharge preloading was necessary to reduce the settlement after construction. The finite element software Plaxis was used to calculate the deformations of the pile top and the soil between piles at the embankment center, as well as the settlements of CFG pile reinforcement area and the underlying stratum under surcharge preloading. The calculation results and the field test results were compared and analyzed. Both the results show that the settlement of the composite foundation mainly occured in underlying stratum. The settlement characteristics of pile-plate composite foundation under high embankment are also concluded. 展开更多
关键词 high-speed railway CFG pile-plate composite foundation Settlement characteristics Field test
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南京某高桩码头靠泊能力仿真分析与在线监测预警
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作者 王承强 王臣 +2 位作者 梁桂兰 贾宇 王恩准 《水运工程》 2024年第7期185-192,共8页
高桩码头服役环境复杂,码头结构在数十年的运行期内会发生不同程度的损伤,影响码头的安全运营。在码头运行过程中,船舶荷载是高桩码头结构的主要荷载,对码头结构的安全性、耐久性影响较大。本文对南京港某码头靠泊能力进行了有限元仿真... 高桩码头服役环境复杂,码头结构在数十年的运行期内会发生不同程度的损伤,影响码头的安全运营。在码头运行过程中,船舶荷载是高桩码头结构的主要荷载,对码头结构的安全性、耐久性影响较大。本文对南京港某码头靠泊能力进行了有限元仿真分析,提出船舶靠泊过程中的三级安全预警阈值;结合长期在线监测,为码头结构安全服役提供技术支撑。研究结果表明:在船舶撞击1#排架的情况下,船舶撞击力达到238 kN时,码头结构响应达到三级预警指标,码头位移为3.8 mm,桩基顶部应变为69×10-6;船舶撞击力达到323 kN时,码头结构响应达到二级预警指标,码头位移为5.1 mm,桩基顶部应变为100×10-6;船舶撞击力达到471 kN,码头结构响应达到一级预警指标码头位移为7.5 mm,桩基顶部应变为156×10-6。在线监测预警结果表明,码头结构具备5 000吨级船舶靠泊能力,在规范靠泊的前提下,能够满足8 000吨级船舶靠泊的结构安全要求。 展开更多
关键词 高桩码头 靠泊 动位移 动应变 监测预警 阈值
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高桩码头结构安全监测预警模型及工程应用
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作者 王承强 王臣 +1 位作者 贾宇 梁桂兰 《水运工程》 2024年第4期15-21,共7页
高桩码头结构在服役期内会出现不同程度的损伤,导致码头结构安全性降低。为保证码头长期安全运行,可通过实时监测确定码头运行状态并及时预警。提出一种高桩码头结构安全监测预警模型,采用不同结构状态的设计控制值作为不同级别的预警阈... 高桩码头结构在服役期内会出现不同程度的损伤,导致码头结构安全性降低。为保证码头长期安全运行,可通过实时监测确定码头运行状态并及时预警。提出一种高桩码头结构安全监测预警模型,采用不同结构状态的设计控制值作为不同级别的预警阈值,每级预警阈值对应不同的风险程度,针对不同级别的预警提出相应处置措施。将该预警模型应用于南京港某高桩码头的安全监测,对可变荷载作用下码头结构位移和桩基应变进行实时监测,并计算设置码头结构位移和桩基应变三级安全预警阈值。结果表明,码头安全预警阈值的设置及安全告警的应对措施科学有效,实现了码头结构全工况整体技术状态评估和安全预警。 展开更多
关键词 高桩码头 可变荷载 动位移 动应变 安全监测 阈值
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基于无基准动态位移监测的江苏某高桩码头变位特征与安全预警
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作者 王承强 贾宇 +2 位作者 王臣 王恩准 刘志浩 《水运工程》 2024年第2期35-42,48,共9页
高桩码头服役环境复杂,船舶与门机等可变荷载作用下结构变位安全问题突出。然而,高桩码头通常不具备参照基准,且在离岸严苛条件下服役是常态,动态位移监测成为挑战。采用码头无基准动态位移监测技术,对江苏某高桩码头进行实时位移监测... 高桩码头服役环境复杂,船舶与门机等可变荷载作用下结构变位安全问题突出。然而,高桩码头通常不具备参照基准,且在离岸严苛条件下服役是常态,动态位移监测成为挑战。采用码头无基准动态位移监测技术,对江苏某高桩码头进行实时位移监测。详细分析门机作业和船舶撞击条件下码头位移响应规律,基于码头适用性、安全性提出该码头的两级预警指标。结合数值仿真计算,提出该码头不同吨级船舶靠泊建议。研究表明:门机的作业位置是影响码头位移响应大小的直接因素。码头第一结构段在船舶撞击作用下,因引桥等边界条件的影响,导致A_(2)监测点的位移响应在X、Y方向上均较大。一级预警指标由码头主要荷载作用组合的最大值推算,位移响应值为15.39 mm。二级预警指标由混凝土抗拉极限应力值为评判标准,位移响应值为19.14 mm。相应地,1万吨级船舶靠泊时法向速度不应超过0.19 m/s, 5 000吨级船舶靠泊时法向速度不应超过0.22 m/s。 展开更多
关键词 高桩码头 动态位移 船舶撞击 门机荷载 安全预警
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高桩码头系缆墩和钢联桥一体化结构创新设计
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作者 郭大维 符成 林岳 《水运工程》 2024年第3期64-68,73,共6页
针对由装卸平台、系缆墩、钢联桥组成的一字形布置高桩墩式码头,常规的设计思路考虑三者独立受力,弱化各结构之间的传力效应。从三者协同受力的角度出发,提出一种适应于特定布置形式的系缆墩和钢联桥一体化结构设计方案,结合工程案例介... 针对由装卸平台、系缆墩、钢联桥组成的一字形布置高桩墩式码头,常规的设计思路考虑三者独立受力,弱化各结构之间的传力效应。从三者协同受力的角度出发,提出一种适应于特定布置形式的系缆墩和钢联桥一体化结构设计方案,结合工程案例介绍该结构的形式和受力分析方法,并从受力和造价方面与传统的高桩墩台方案进行比较。结果表明:在满足使用功能的前提下,一体化方案有利于发挥结构的整体受力优势,减少系缆墩和钢联桥的工程量,降低工程造价。 展开更多
关键词 高桩码头 系缆墩 钢联桥 一体化结构
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嵌岩低桩承台锁口钢管桩围堰设计与施工技术 被引量:2
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作者 别士勇 李江 安浩兵 《世界桥梁》 北大核心 2024年第2期43-49,共7页
昌九高铁扬子洲赣江公铁大桥西支主桥为(48+144+320+144+48)m无砟轨道钢箱桁组合梁斜拉桥。桥塔墩位于通航河道内,桥位处河床覆盖层浅,基岩强度高,基础由大直径钻孔桩和矩形嵌岩低桩承台组成,承台采用锁口钢管桩围堰施工方案。G33号主... 昌九高铁扬子洲赣江公铁大桥西支主桥为(48+144+320+144+48)m无砟轨道钢箱桁组合梁斜拉桥。桥塔墩位于通航河道内,桥位处河床覆盖层浅,基岩强度高,基础由大直径钻孔桩和矩形嵌岩低桩承台组成,承台采用锁口钢管桩围堰施工方案。G33号主墩围堰平面设计尺寸54.56 m×28.52 m,锁口钢管桩采用Q345B材质∅1020 mm螺旋钢管,长28 m,钢管桩之间采用C-T形锁扣连接;围堰设置4层内支撑,单层内支撑设3道对撑,内支撑四角设型钢斜撑;基底设置混凝土垫层参与围堰结构受力。围堰采用XR360旋挖钻机在岩层中引孔,孔内换填细砂后插打钢管桩,钢管桩壁内、外两侧换填砂采用高压旋喷注浆加固。围堰设置智能化监测系统,对围堰受力、变形等进行实时动态监控。实践证明,该桥围堰结构安全可靠、止水效果良好、施工快捷高效。 展开更多
关键词 公路铁路两用桥 围堰 锁口钢管桩 引孔 换填细砂 高压旋喷注浆 围堰设计 施工技术
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基于弹道亏损形状特征的堆积脉冲识别方法
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作者 王明 周建斌 +3 位作者 王怀平 汪雪元 刘易 洪旭 《原子能科学技术》 EI CSCD 北大核心 2024年第1期231-238,共8页
识别与拒绝堆积脉冲是提升高辐射环境下X荧光光谱性能的有效方法。本文提出一种堆积脉冲甄别方法,该方法首先将原始脉冲成形为三角脉冲和梯形脉冲;然后计算其幅度比值,该比值称为时不变脉冲形状标签(TIPS);最后通过TIPS的大小判别脉冲... 识别与拒绝堆积脉冲是提升高辐射环境下X荧光光谱性能的有效方法。本文提出一种堆积脉冲甄别方法,该方法首先将原始脉冲成形为三角脉冲和梯形脉冲;然后计算其幅度比值,该比值称为时不变脉冲形状标签(TIPS);最后通过TIPS的大小判别脉冲是否堆积。这种方法不需要测量脉冲宽度,且不受脉冲幅度变化的影响。与逆锯齿波成形器相比,三角脉冲成形器能更有效地抑制TIPS展宽,从而有利于甄别堆积脉冲。在1.22×10^(6)s^(-1)通过率下,使用该方法识别铅黄铜样品中堆积脉冲。结果表明,当非堆积脉冲损失率为15%时,准确率、召回率及F1得分分别提升到73.55%、78.75%和76.06%,铜的Kα峰峰总比提高到76.60%。本文提出的方法可以有效识别堆积脉冲和提高能谱的峰总比。 展开更多
关键词 反堆积 高计数率 脉冲形状甄别 弹道亏损
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桩端岩溶三维超声成像方法及应用研究
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作者 孙红林 张邦 +4 位作者 刘铁华 刘铁 化希瑞 陈健 汪文刚 《铁道工程学报》 EI CSCD 北大核心 2024年第2期26-32,37,共8页
研究目的:岩溶地区大直径桩基础受桩端岩溶的威胁大,探查不清或处理不当时可能会出现桩基承载力不足等严重工程质量问题,现有探测方法难以在桩底复杂泥水环境下实现桩端三维精细化探测。本文基于超声相控阵全聚焦成像原理,提出一种全新... 研究目的:岩溶地区大直径桩基础受桩端岩溶的威胁大,探查不清或处理不当时可能会出现桩基承载力不足等严重工程质量问题,现有探测方法难以在桩底复杂泥水环境下实现桩端三维精细化探测。本文基于超声相控阵全聚焦成像原理,提出一种全新的桩端岩溶三维探测方法,以实现对桩端一定范围内地质结构进行三维高精度成像。研究结论:(1)本方法和装备在桩底采集超声数据并成像,可对桩端一定深度和冲切角范围内岩溶三维高精度成像;(2)足尺模型试验表明本装备可探测桩端10 m以内溶洞且探测精度优于0.1 m;(3)工程实践表明本装备可有效查明桩端岩溶、破碎裂隙,探测结果准确可靠;(4)本装备能适应桩底各种恶劣的环境,探测过程简单高效,时效性强,对保障岩溶区桩基施工安全与质量控制具有重要的意义。 展开更多
关键词 大直径桩 岩溶探测 超声相控 三维成像 高精度
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自平衡法和高应变检测在码头灌注桩中的应用
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作者 张丽珍 王东静 《水运工程》 2024年第8期134-138,234,共6页
海南某高桩码头工程地质条件特殊,表面覆盖硬岩层,下部为黏土层,码头基础采用灌注桩结构,以硬黏土层为持力层。施工后分别采用自平衡法静载试验和高应变法检测桩基承载力,将检测结果与规范理论计算结果进行比较。结果表明,通过自平衡检... 海南某高桩码头工程地质条件特殊,表面覆盖硬岩层,下部为黏土层,码头基础采用灌注桩结构,以硬黏土层为持力层。施工后分别采用自平衡法静载试验和高应变法检测桩基承载力,将检测结果与规范理论计算结果进行比较。结果表明,通过自平衡检测的荷载-位移关系曲线判断,桩端依旧处于弹性阶段,并根据在加载过程中桩身轴力沿桩身轴向的分布情况,可分别判断各桩侧摩阻力、端承载力的发挥值,从而判断桩阻力并没有全部发挥,桩基的实际极限承载力大于试验值。高应变检测法检测桩侧摩阻力结果大于理论计算结果,桩端承载力小于理论计算结果,总桩基承载力二者比较接近,因此可以作为静载试桩的辅助验证。在港口码头工程中采用自平衡静载测试法,并用高应变检测法进行验证,可以解决水域条件下大质量桩基承载力的检测问题。 展开更多
关键词 自平衡法静载试验 高应变检测 桩基承载力 码头灌注桩
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重力式码头升级改造板桩墙后土压力分布
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作者 彭志豪 陈海燕 《水运工程》 2024年第4期37-41,共5页
针对重力式码头升级改造新建板桩墙方案板桩墙后土压力分布问题,开展新建板桩墙距已有重力式墙身不同距离的土压力分布规律研究。采用有限元数值模拟和理论公式计算对比分析,得出作用在前板桩墙上的土压力小于理论主动土压力,即存在贮... 针对重力式码头升级改造新建板桩墙方案板桩墙后土压力分布问题,开展新建板桩墙距已有重力式墙身不同距离的土压力分布规律研究。采用有限元数值模拟和理论公式计算对比分析,得出作用在前板桩墙上的土压力小于理论主动土压力,即存在贮仓效应的结论。建议重力式码头改造工程设置前板桩墙时,采用公式合理选取贮仓尺寸,或根据新建板桩墙距已有码头墙身的距离采用有限元计算作用在板桩墙上的土压力,避免保守或激进设计。 展开更多
关键词 重力式码头 升级改造 新建板桩墙 贮仓压力 土压力分布
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