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Thermal performance of cast-in-place piles with artificial ground freezing in permafrost regions
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作者 WANG Xinbin CHEN Kun +3 位作者 YU Qihao GUO Lei YOU Yanhui JIN Mingyang 《Journal of Mountain Science》 SCIE CSCD 2024年第4期1307-1328,共22页
During the construction of cast-in-place piles in warm permafrost,the heat carried by concrete and the cement hydration reaction can cause strong thermal disturbance to the surrounding permafrost.Since the bearing cap... During the construction of cast-in-place piles in warm permafrost,the heat carried by concrete and the cement hydration reaction can cause strong thermal disturbance to the surrounding permafrost.Since the bearing capacity of the pile is quite small before the full freeze-back,the quick refreezing of the native soils surrounding the cast-in-place pile has become the focus of the infrastructure construction in permafrost.To solve this problem,this paper innovatively puts forward the application of the artificial ground freezing(AGF)method at the end of the curing period of cast-in-place piles in permafrost.A field test on the AGF was conducted at the Beiluhe Observation and Research Station of Frozen Soil Engineering and Environment(34°51.2'N,92°56.4'E)in the Qinghai Tibet Plateau(QTP),and then a 3-D numerical model was established to investigate the thermal performance of piles using AGF under different engineering conditions.Additionally,the long-term thermal performance of piles after the completion of AGF under different conditions was estimated.Field experiment results demonstrate that AGF is an effective method to reduce the refreezing time of the soil surrounding the piles constructed in permafrost terrain,with the ability to reduce the pile-soil interface temperatures to below the natural ground temperature within 3 days.Numerical results further prove that AGF still has a good cooling effect even under unfavorable engineering conditions such as high pouring temperature,large pile diameter,and large pile length.Consequently,the application of this method is meaningful to save the subsequent latency time and solve the problem of thermal disturbance in pile construction in permafrost.The research results are highly relevant for the spread of AGF technology and the rapid building of pile foundations in permafrost. 展开更多
关键词 Permafrost engineering cast-in-place pile Artificial ground freezing Thermal performance.
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Field observation of the thermal disturbance and freezeback processes of cast-in-place pile foundations in warm permafrost regions
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作者 Xin Hou Ji Chen +4 位作者 YouQian Liu PengFei Rui JingYi Zhao ShouHong Zhang HaiMing Dang 《Research in Cold and Arid Regions》 CSCD 2023年第1期18-26,共9页
The bearing capacity of pile foundations is affected by the temperature of the frozen soil around pile foundations.The construction process and the hydration heat of cast-in-place(CIP)pile foundations affect the therm... The bearing capacity of pile foundations is affected by the temperature of the frozen soil around pile foundations.The construction process and the hydration heat of cast-in-place(CIP)pile foundations affect the thermal stability of permafrost.In this paper,temperature data from inside multiple CIP piles,borehole observations of ground thermal status adjacent to the foundations and local weather stations were monitored in warm permafrost regions to study the thermal influence process of CIP pile foundations.The following conclusions are drawn from the field observation data.(1)The early temperature change process of different CIP piles is different,and the differences gradually diminish over time.(2)The initial concrete temperature is linearly related with the air temperature,net radiation and wind speed within 1 h before the completion of concrete pouring;the contributions of the air temperature,net radiation,and wind speed to the initial concrete temperature are 51.9%,20.3%and 27.9%,respectively.(3)The outer boundary of the thermal disturbance annulus is approximately 2 m away from the pile center.It took more than 224 days for the soil around the CIP piles to return to the natural permafrost temperature at the study site. 展开更多
关键词 PERMAFROST cast-in-place pile foundations Thermal disturbance Freezeback process Initial concrete temperature
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Quality Control Measures of Bored Pile in Bridge Construction
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作者 Lin Nan Guangjun Li +3 位作者 Yan Liu Xu Meng Yingying Ye Zhongyang Sun 《Journal of World Architecture》 2023年第2期47-52,共6页
In order to improve the quality of bored piles in bridge construction and ensure the overall quality of the bridge,we analyzed a series of problems in the construction process of bored piles,then propose corresponding... In order to improve the quality of bored piles in bridge construction and ensure the overall quality of the bridge,we analyzed a series of problems in the construction process of bored piles,then propose corresponding quality control measures,in hopes of improving quality control of bored piles in bridge construction in our country. 展开更多
关键词 Bridge construction bored pile Quality control
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Refreezing of cast-in-place piles under various engineering conditions 被引量:9
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作者 Lei Guo QiHao Yu +2 位作者 XiaoNing Li XinBin Wang YongYu Yue 《Research in Cold and Arid Regions》 CSCD 2015年第4期376-383,共8页
In the construction of the Qinghai-Tibet Power Transmission Line (QTPTL), cast-in-place piles (CIPPs) are widely applied in areas with unfavorable geological conditions. The thermal regime around piles in permafro... In the construction of the Qinghai-Tibet Power Transmission Line (QTPTL), cast-in-place piles (CIPPs) are widely applied in areas with unfavorable geological conditions. The thermal regime around piles in permafrost regions greatly affects the stability of the towers as well as the operation of the QTPTL. The casting of piles will markedly affect the thermal regime of the surrounding permafrost because of the casting temperature and the hydration heat of cement. Based on the typical geological and engineering conditions along the QTPTL, thermal disturbance ofa CIPP to surrounding permafrost under different casting seasons, pile depths, and casting temperatures were simulated. The results show that the casting season (summer versus winter) can influence the refreezing process of CIPPs, within the first 6 m of pile depth. Sixty days after being cast, CIPPs greater than 6 m in depth can be frozen regardless of which season they were cast, and the foundation could be reffozen after a cold season. Comparing the refreezing characteristics of CIPPs cast in different seasons also showed that, without considering the ground surface conditions, warm seasons are more suitable for casting piles. With the increase of pile depth, the thermal effect of a CIPP on the surrounding soil mainly expands vertically, while the lateral heat disturbance changes little. Deeper, longer CIPPs have better stability. The casting temperature clearly affects the thermal disturbance, and the radius of the melting circle increases with rising casting temperature. The optimal casting temperature is between 2 ℃ and 9 ℃. 展开更多
关键词 cast-in-place pile hydration heat REFREEZING engineering factor PERMAFROST
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Regressive approach for predicting bearing capacity of bored piles from cone penetration test data 被引量:3
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作者 Iyad S. Alkroosh Mohammad Bahadori +1 位作者 Hamid Nikraz Alireza Bahadori 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2015年第5期584-592,共9页
In this study, th e least sq u are su p p o rt v ecto r m achine (LSSVM) alg o rith m w as applied to predicting th ebearing capacity o f b ored piles e m b ed d ed in sand an d m ixed soils. Pile g eo m etry an d c... In this study, th e least sq u are su p p o rt v ecto r m achine (LSSVM) alg o rith m w as applied to predicting th ebearing capacity o f b ored piles e m b ed d ed in sand an d m ixed soils. Pile g eo m etry an d cone p e n e tra tio nte s t (CPT) resu lts w ere used as in p u t variables for pred ictio n o f pile bearin g capacity. The d ata u se d w erecollected from th e existing litera tu re an d consisted o f 50 case records. The application o f LSSVM w ascarried o u t by dividing th e d ata into th re e se ts: a train in g se t for learning th e pro b lem an d obtain in g arelationship b e tw e e n in p u t variables an d pile bearin g capacity, and testin g an d validation sets forevaluation o f th e predictive an d g en eralization ability o f th e o b tain ed relationship. The predictions o f pilebearing capacity by LSSVM w ere evaluated by com paring w ith ex p erim en tal d ata an d w ith th o se bytrad itio n al CPT-based m eth o d s and th e gene ex pression pro g ram m in g (GEP) m odel. It w as found th a t th eLSSVM perform s w ell w ith coefficient o f d eterm in atio n , m ean, an d sta n d ard dev iatio n equivalent to 0.99,1.03, an d 0.08, respectively, for th e testin g set, an d 1, 1.04, an d 0.11, respectively, for th e v alidation set. Thelow values o f th e calculated m ean squared e rro r an d m ean ab so lu te e rro r indicated th a t th e LSSVM w asaccurate in p redicting th e pile bearing capacity. The results o f com parison also show ed th a t th e p roposedalg o rith m p red icted th e pile bearin g capacity m ore accurately th a n th e trad itio n al m eth o d s including th eGEP m odel. 展开更多
关键词 bored piles Cone penetration test(CPT) Bearing capacity Least square support vector machine(LSSVM) TRAINING VALIDATION
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A case study on behaviors of composite soil nailed wall with bored piles in a deep excavation 被引量:7
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作者 ZHU Feng-bin MIAO Lin-chang +1 位作者 GU Huan-da CHENG Yue-hong 《Journal of Central South University》 SCIE EI CAS 2013年第7期2017-2024,共8页
深挖掘的一个完全的盒子被探索。根据实际工作条件, 3D 非线性的有限元素过程被用来模仿合成土壤支持的深挖掘有在软土壤的无聊的堆积的钉的墙。修改凸轮泥土模特儿在数字模拟作为土壤的组成的关系被雇用。从数字分析的结果与领域数据... 深挖掘的一个完全的盒子被探索。根据实际工作条件, 3D 非线性的有限元素过程被用来模仿合成土壤支持的深挖掘有在软土壤的无聊的堆积的钉的墙。修改凸轮泥土模特儿在数字模拟作为土壤的组成的关系被雇用。从数字分析的结果与领域数据被适合很好,它显示使用的研究途径是可靠的。基于数据和钉的合成土壤的四个不同模式支持的深挖掘的数字结果围的地,重要角落效果深在 3D 被成立挖掘。如果无聊的堆积或土壤锚在钉的合成土壤被认为墙,他们对减少的变丑和在深挖掘附近的无聊的堆积,混合堆积的水泥,土壤锚,土壤钉和土壤的内部力量有益。而且,效果由于无聊的堆积比从土壤锚推出的那些更重要。上面提及的所有证明合成土壤与无聊的堆积钉了墙在深挖掘是可行的。 展开更多
关键词 深基坑施工 复合土钉墙 钻孔灌注桩 行为 数值模拟 土的本构关系 现场数据 有限元程序
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Comparative Examinations of Single Bored Piles Using International Codes
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作者 Mohamed Mosad El-Gendy Ibrahim A. El Araby Mohamed A. Kamal 《Engineering(科研)》 2013年第10期796-806,共11页
This paper presents some aspects of the load-settlement behavior for large diameter bored piles using four different international codes, namely: ECP 202 [1], DIN 4014 [2], AASHTO [3] and French Code [4]. Ultimate cap... This paper presents some aspects of the load-settlement behavior for large diameter bored piles using four different international codes, namely: ECP 202 [1], DIN 4014 [2], AASHTO [3] and French Code [4]. Ultimate capacities for 38 pile load tests founded in realistic multi-layered soils in Delta and Port Saidareas atEgyptare evaluated using modified Chin (1970) method and compared to ultimate load predictions obtained by the aforementioned codes. Many statistical analyses were conducted on the total pile loads and individual contributions of tip and skin resistances. Based on code predictions of ultimate pile loads, an empirical modified load-settlement model is proposed. This model will simplify to a great extent the analysis of piled-raft systems as it can effortlessly predict pile settlement due to the load on pile itself. Comparisons showed that the pile load test is an irreplaceable process for determining the ultimate capacity of piles. 展开更多
关键词 bored piles ULTIMATE pile Load International CODES Empirical Function
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Dynamic estimation and reliability control of quality assurance for bored piles
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作者 赵文艺 徐志军 +1 位作者 郑俊杰 边晓亚 《Journal of Central South University》 SCIE EI CAS 2014年第3期1148-1157,共10页
A systematic method was proposed to estimate the occurrence probability of defective piles(OPDP) from a site according to quality assurance inspection. The OPDP was firstly suggested as the criterion to weight the per... A systematic method was proposed to estimate the occurrence probability of defective piles(OPDP) from a site according to quality assurance inspection. The OPDP was firstly suggested as the criterion to weight the performance of a pile foundation. Its prior distribution and updating distribution were deduced to follow Beta distributions. To calibrate the OPDP, a dynamic estimation model was established according to the relationships between prior mean and variance and updating mean and variance. Finally, a reliability-control method dealing with uncertainties arising from quality assurance inspection was formalized to judge whether all the bored piles from a site can be accepted. It is exemplified that the OPDP can be substantially improved when more definite prior information and sampling formation become available. For the example studied herein, the Bayesian estimator of updating variance for OPDP is reduced from 0.0037 to 0.0014 for the first inspection, from 0.0014 to 0.0009 for the second inspection, and with less uncertainty by incorporating experience information. 展开更多
关键词 可靠性控制 质量保证 钻孔桩 动态估计 BAYES估计 不确定性 先验信息 Beta版
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Physical modeling of behaviors of cast-in-place concrete piled raft compared to free-standing pile group in sand 被引量:1
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作者 Mehdi Sharafkhah Issa Shooshpasha 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2018年第4期703-716,共14页
Similar to free-standing pile groups, piled raft foundations are conventionally designed in which the piles carry the total load of structure and the raft bearing capacity is not taken into account. Numerous studies i... Similar to free-standing pile groups, piled raft foundations are conventionally designed in which the piles carry the total load of structure and the raft bearing capacity is not taken into account. Numerous studies indicated that this method is too conservative. Only when the pile cap is elevated from the ground level,the raft bearing contribution can be neglected. In a piled raft foundation, pileesoileraft interaction is complicated. Although several numerical studies have been carried out to analyze the behaviors of piled raft foundations, very few experimental studies are reported in the literature. The available laboratory studies mainly focused on steel piles. The present study aims to compare the behaviors of piled raft foundations with free-standing pile groups in sand, using laboratory physical models. Cast-in-place concrete piles and concrete raft are used for the tests. The tests are conducted on single pile, single pile in pile group, unpiled raft, free-standing pile group and piled raft foundation. We examine the effects of the number of piles, the pile installation method and the interaction between different components of foundation. The results indicate that the ultimate bearing capacity of the piled raft foundation is considerably higher than that of the free-standing pile group with the same number of piles. With installation of the single pile in the group, the pile bearing capacity and stiffness increase. Installation of the piles beneath the raft decreases the bearing capacity of the raft. When the raft bearing capacity is not included in the design process, the allowable bearing capacity of the piled raft is underestimated by more than 200%. This deviation intensifies with increasing spacing of the piles. 展开更多
关键词 Free-standing pile group piled raft pileesoileraft interaction Physical modeling cast-in-place concrete piles
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Field study of plastic tube cast-in-place concrete pile
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作者 陈永辉 曹德洪 +2 位作者 王新泉 杜海伟 张霆 《Journal of Central South University》 SCIE EI CAS 2008年第S2期195-202,共8页
The compositions, technical principles and construction equipments of a new piling method used for ground improvement plastic tube cast-in-place concrete pile were introduced. The results from static load tests on sin... The compositions, technical principles and construction equipments of a new piling method used for ground improvement plastic tube cast-in-place concrete pile were introduced. The results from static load tests on single piles with different forms of pile shoes and on their composite foundations were analyzed. The distribution patterns of axial force, shaft friction and toe resistance were studied based on the measurements taken from buried strain gauges. From the point of engineering application, the pile has merits in convenient quality control, high bearing capacity and reliable quality, showing higher reasonability, advancement and suitability than other ground improvement methods. The pile can be adopted properly to take place of ordinary ground improvement method, achieving greater economical and social benefits. 展开更多
关键词 PLASTIC tube cast-in-place concrete pile SOFT ground improvement pile-supported type reinforced EMBANKMENT CONSTRUCTION equipment CONSTRUCTION workmanship
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Influence of the penetration of adjacent X-section cast-in-place concrete(XCC)pile on the existing XCC pile in sand
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作者 Peng ZHOU Jianhui XU +3 位作者 Changjie XU Guangwei CAO Jie CUP Xuanming DING 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2024年第7期557-572,共16页
A series of small-scale 1g X-section cast-in-place concrete(XCC)pile-penetration model tests were conducted to study the effects of soil density and pile geometry on the lateral responses of an existing pile and the v... A series of small-scale 1g X-section cast-in-place concrete(XCC)pile-penetration model tests were conducted to study the effects of soil density and pile geometry on the lateral responses of an existing pile and the variations in surrounding soil stress.The results showed that the bending patterns of existing XCC piles varied with penetration depth.The lateral response of the existing pile was sensitive to the change in relative density and pile geometry.For example,the bending moment of the existing pile increased along with these parameters.The development of the radial stressσ′r/σ′v0 of the soil around an existing pile showed different trends at various depths during the penetration of the adjacent pile.Moreover,the change in radial stress during the penetration of the XCC pile did not exhibit the“h/R effect”that was observed in the free-field soil,due to the shielding effect of the existing piles.The peak value of radial stressσ′r_max/σ′v0 decreased exponentially as the radial distance r/R increased.The attenuation ofσ′r_max/σ′v0 with r/R in the loose sand was faster than in the medium-dense or dense sands.Theσ′r_max/σ′v0 at the same soil location increased with the cross-section geometry parameter. 展开更多
关键词 X-section cast-in-place concrete(XCC)pile Test PENETRATION SAND Lateral response Radial stress
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Evaluation of the Ultimate Capacity of Friction Piles 被引量:1
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作者 Wael N. Abd Elsamee 《Engineering(科研)》 2012年第11期778-789,共12页
The precise prediction of maximum load carrying capacity of bored piles is a complex problem because the load is a function of a large number of factors. These factors include method of boring, method of concreting, q... The precise prediction of maximum load carrying capacity of bored piles is a complex problem because the load is a function of a large number of factors. These factors include method of boring, method of concreting, quality of concrete, expertise of the construction staff, the ground conditions and the pile geometry. To ascertain the field performance and estimate load carrying capacities of piles, in-situ pile load tests are conducted. Due to practical and time constraints, it is not possible to load the pile up-to failure. In this study, field pile load test data is analyzed to estimate the ultimate load for friction piles. The analysis is based on three pile load test results. The tests are conducted at the site of The Cultural and Recreational Complex project in Port Said, Egypt. Three pile load tests are performed on bored piles of 900 mm diameter and 50 m length. Geotechnical investigations at the site are carried out to a maximum depth of 60 m. Ultimate capacities of piles are determined according to different methods including Egyptian Code of practice (2005), Tan-gent-tangent, Hansen (1963), Chin (1970), Ahmed and Pise (1997) and Decourt (1999). It was concluded that approxi- mately 8% of the ultimate load is resisted by bearing at the base of the pile, and that up to 92% of the load is resisted by friction along the shaft. Based on a comparison of pile capacity predictions using different method, recommendations are made. A new method is proposed to calculate the ultimate capacity of the pile from pile load test data. The ultimate capacity of the bored piles predicted using the proposed method appears to be reliable and compares well to different available methods. 展开更多
关键词 SOIL pile Capacity bored pile FRICTION pile pile LOAD
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黏性土中桩侧后注浆单桩抗压承载性能室内模型试验研究
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作者 赵春风 刘鹏伟 +1 位作者 赵程 张家奇 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第4期23-28,共6页
后注浆技术的应用能有效减少桩周土体扰动和泥皮等造成的不利影响,从而提高钻孔灌注桩的承载力。目前有关后注浆技术的研究多集中于桩端后注浆,少有涉及桩侧后注浆,影响了桩侧后注浆技术进一步推广应用。根据桩侧后注浆工艺,开展单桩抗... 后注浆技术的应用能有效减少桩周土体扰动和泥皮等造成的不利影响,从而提高钻孔灌注桩的承载力。目前有关后注浆技术的研究多集中于桩端后注浆,少有涉及桩侧后注浆,影响了桩侧后注浆技术进一步推广应用。根据桩侧后注浆工艺,开展单桩抗压室内试验,以研究桩侧后注浆量对单桩抗压承载性能的影响。结果表明:在荷载水平较大的工况下,相较于桩侧后注浆量为1 L的单桩,注浆量为2、3 L时单桩极限抗压承载力分别提高18.2%和66.0%,提高幅度与注浆量呈正相关,并且可以在很大程度上减小桩顶沉降量;桩侧后注浆桩桩身轴力在侧注浆点位附近减小较快,在整个加载过程中桩端附近处桩身轴力值均比较低,单桩受压表现为摩擦桩;水泥浆液同时存在上返和下劈扩散,在室内试验条件下,两者扩散高度均约为14倍桩径,在浆液扩散段桩侧摩阻力得到显著提高,且越靠近注浆点位提高程度越明显。 展开更多
关键词 钻孔灌注桩 承载力 后注浆 注浆量 浆液扩散高度
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软土地区轨道交通桥梁下方灌注桩小净距施工影响
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作者 朱兆斌 《城市轨道交通研究》 北大核心 2024年第7期152-157,163,共7页
[目的]我国沿海软土地区灌注桩与运营轨道交通桥梁、桥墩间小净距的施工影响正成为制约城市轨道交通规划与建设的又一瓶颈因素,因此有必要研究小净距钻孔灌注桩施工对周围地层和桥墩的变形影响。[方法]以浙江某城市道路桩板结构形式下... [目的]我国沿海软土地区灌注桩与运营轨道交通桥梁、桥墩间小净距的施工影响正成为制约城市轨道交通规划与建设的又一瓶颈因素,因此有必要研究小净距钻孔灌注桩施工对周围地层和桥墩的变形影响。[方法]以浙江某城市道路桩板结构形式下穿轨道交通桥梁在建工程为例,通过设计土体侧向变形监测试验和搭建既有桥梁、桥墩的位移智能监测系统,分析了深厚软土区地层与测斜孔的协同变形特性,以及钻孔灌注桩施工对周围地层及桥墩变形的影响规律。[结果及结论]为使测斜孔与地层具有较好的协同变形,软土区测斜孔施工后应稳定停留6 d;淤泥层对施工加载、卸载过程的敏感性较高,由施工引发的软土地层变形量最大;在施工条件下,桥墩3个方向的变形幅值约为未施工的2~3倍;成孔开挖和混凝土浇筑工序对桥墩深度方向的扰动影响较显著,因此已运营轨道交通桥梁下部施工的监测重点应为竖向位移。 展开更多
关键词 轨道交通 软土地区 灌注桩小净距施工
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岩溶强发育及超厚回填土地层钻孔灌注桩施工技术 被引量:1
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作者 曹进海 叶胜林 +1 位作者 肖代胜 陈明伟 《施工技术(中英文)》 CAS 2024年第1期17-22,54,共7页
针对复杂地层中钻孔灌注桩常见的施工问题,以某工程项目为例,基于岩溶强发育及超厚回填土地层钻孔灌注桩施工技术,对超厚回填土地层、岩溶强发育地层以及上覆超厚回填土与下伏岩溶强发育叠加地层3种不同工况进行了应用分析,结果表明:该... 针对复杂地层中钻孔灌注桩常见的施工问题,以某工程项目为例,基于岩溶强发育及超厚回填土地层钻孔灌注桩施工技术,对超厚回填土地层、岩溶强发育地层以及上覆超厚回填土与下伏岩溶强发育叠加地层3种不同工况进行了应用分析,结果表明:该技术有效解决了复杂地层中成孔难、易扩缩径、灌注难等诸多工程难题,相较于传统工艺,可大大节省施工材料、降低施工成本,为项目缩短工期15天,累计节约旋挖钻机30台班,将灌注桩充盈系数从1.5降至1.05~1.1,为项目桩基施工节约综合成本35%以上。根据低应变检测结果可知,灌注桩均为Ⅰ,Ⅱ类桩,其中Ⅰ类桩占所测桩数的96.5%,Ⅱ类桩仅占所测桩数的3.5%,充分证明了该技术的可靠性。 展开更多
关键词 桩基础 灌注桩 岩溶 回填土 加固 施工技术
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静钻根植桩竖向承载性能现场试验研究
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作者 周佳锦 马俊杰 +2 位作者 俞建霖 龚晓南 张日红 《岩土工程学报》 EI CAS CSCD 北大核心 2024年第3期640-647,共8页
通过一组现场试验对同一场地内静钻根植桩的抗压和抗拔承载性能进行研究,试桩均加载至极限状态。通过抗压和抗拔静载试验对静钻根植桩的抗压和抗拔承载性能进行对比分析。试验结果表明:静钻根植桩的抗压承载性能相比传统钻孔灌注桩有显... 通过一组现场试验对同一场地内静钻根植桩的抗压和抗拔承载性能进行研究,试桩均加载至极限状态。通过抗压和抗拔静载试验对静钻根植桩的抗压和抗拔承载性能进行对比分析。试验结果表明:静钻根植桩的抗压承载性能相比传统钻孔灌注桩有显著提高,本次试验场地各土层中静钻根植桩的桩侧摩阻力是规范建议的钻孔灌注桩极限侧摩阻力的1.49~3.21倍;静钻根植桩抗拔承载性能也明显优于钻孔灌注桩,抗拔试桩的极限承载力是根据规范计算的钻孔灌注桩极限抗拔承载力的1.52~1.55倍;静钻根植桩抗拔状态下桩侧摩阻力明显小于抗压状态下的桩侧摩擦力,即静钻根植桩也存在侧阻抗拔系数。 展开更多
关键词 静钻根植桩 现场试验 承载特性 侧摩阻力 侧阻抗拔系数
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静钻根植桩施工环境效应现场试验研究
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作者 周佳锦 马俊杰 +2 位作者 俞建霖 龚晓南 张日红 《土木工程学报》 EI CSCD 北大核心 2024年第3期93-101,共9页
静钻根植桩采用先钻孔注浆后植桩的施工技术,可以解决传统预制桩施工过程引起的挤土效应问题。然而,静钻根植桩施工过程中钻孔和注浆过程会对周围土体产生一定扰动,目前没有相关研究。文章通过一组现场试验对静钻根植桩施工过程中的钻... 静钻根植桩采用先钻孔注浆后植桩的施工技术,可以解决传统预制桩施工过程引起的挤土效应问题。然而,静钻根植桩施工过程中钻孔和注浆过程会对周围土体产生一定扰动,目前没有相关研究。文章通过一组现场试验对静钻根植桩施工过程中的钻孔、注浆搅拌和植桩阶段对周围土体的扰动规律进行研究。静钻根植桩施工前在钻孔周围土体中埋设土压力传感器,孔隙水压力传感器和测斜管,分别测试静钻根植桩施工过程中周围土体中水平土压力,超静孔隙水压力和深层土体水平位移的变化规律。研究结果表明:静钻根植桩施工过程会对周围土体造成一定扰动,而施工完成后周围土体中的水平土压力、超静孔隙水压力和深层土体水平位移迅速恢复;当水平距离达到4D(D为钻孔直径)时,静钻根植桩施工过程基本不会对土体产生影响;试验结果可以为静钻根植桩在地铁周围等施工位移控制敏感区域的应用提供理论依据。 展开更多
关键词 静钻根植桩 环境效应 水平土压力 超静孔隙水压力 土体水平位移
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钻孔灌注桩数字化施工技术及应用
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作者 李嘉成 姬付全 +1 位作者 饶为胜 杨睿 《中国港湾建设》 2024年第6期72-77,共6页
随着钻孔灌注桩向超孔深、超大直径方向发展,其施工控制难度也显著增加。传统施工工艺高度依赖人工对施工参数进行采集和记录,难以满足精细化施工管控的要求。为了保证超长大直径桩施工质量,以双柳长江大桥北主塔桩基施工为依托工程,对... 随着钻孔灌注桩向超孔深、超大直径方向发展,其施工控制难度也显著增加。传统施工工艺高度依赖人工对施工参数进行采集和记录,难以满足精细化施工管控的要求。为了保证超长大直径桩施工质量,以双柳长江大桥北主塔桩基施工为依托工程,对钻孔灌注成孔、成桩关键施工参数及采集方式进行分析,并针对成孔、成桩过程的关键参数进行自动化监测装置的开发与应用。研究结果表明采用数字化技术手段,能有效减少施工过程中人工采集工作量,提升钻孔灌注桩施工精细化管控水平,可供类似工程借鉴。 展开更多
关键词 超长大直径桩 钻孔灌注桩 智能传感 数字化施工
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市政路桥工程的钻孔灌注桩施工技术分析 被引量:2
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作者 唐微 《工程建设与设计》 2024年第1期217-219,共3页
对市政路桥工程的钻孔灌注桩施工工艺进行分析,探讨市政路桥工程的钻孔灌注桩施工应注意的问题,如护筒下沉、钻孔倾斜、坍孔缩孔、断桩,结合工程案例对市政路桥施工中钻孔灌注桩施工技术的应用进行详细介绍。
关键词 市政路桥工程 钻孔灌注桩 施工技术 技术应用
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钻孔灌注桩技术在房建工程施工中的应用 被引量:1
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作者 王永全 《广东建材》 2024年第3期124-126,共3页
为深入探究钻孔灌注桩技术在房建工程施工中的应用,结合某房屋建筑工程对钻孔灌注桩技术的实际应用进行深入探究,经过研究表明钻孔灌注桩技术在房屋建筑工程中应用能够显著提升房建工程施工质量和效率,保证了工程施工阶段的安全性与规范... 为深入探究钻孔灌注桩技术在房建工程施工中的应用,结合某房屋建筑工程对钻孔灌注桩技术的实际应用进行深入探究,经过研究表明钻孔灌注桩技术在房屋建筑工程中应用能够显著提升房建工程施工质量和效率,保证了工程施工阶段的安全性与规范性,对建筑工程具有显著的积极作用。 展开更多
关键词 房建工程 钻孔灌注桩技术 施工应用
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