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3D Finite Elements Technique for Collapse Causes of the Pylons in Egyptian Temples: A Study of the Great Pylon of Ramesseum Temple, Luxor, Egypt 被引量:1
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作者 Essam H. Mohamed 《Open Journal of Geology》 2019年第13期1022-1041,共20页
This research presents damage causes of the pylons in the ancient Egyptian temples based on 3D finite elements analysis. The main purpose of the research determines the failure causes of the first pylon of the Ramessi... This research presents damage causes of the pylons in the ancient Egyptian temples based on 3D finite elements analysis. The main purpose of the research determines the failure causes of the first pylon of the Ramessium temple, which is situated in Upper Egypt, at Luxor “Thebes” on the west bank of the Nile River. The first pylon of Ramessium temple subjected to seismic activity effects on long term, combined with several structural damage factors such as the defects resulting from the construction technique, where the builder used the poor quality of stones in foundations of the pylon, the building materials residue was used as filler for the core of the pylon walls, and it lacked vertical joints between the courses. In addition to it founded on alluvial soil that is vulnerable to contaminated water, it is still suffering damage factors and urban trespasses at the moment. All of the former factors helped the pylon to be affected by the earthquakes loads that occurred on it. The structural behavior of the pylon under self-weight and earthquakes loads were carried out by Numerical analysis to find out the loads and stresses which caused collapsing of the pylon. Results of the study indicated that the pylon subjected to a horizontal displacement due to old earthquakes force, led to collapse of the pylon. Finally, the study represents use of modern technique to study the structural behavior of the most important architectural units in ancient Egyptian temples to identify the causes of its collapse. 展开更多
关键词 The GREAT pylon of Ramessium TEMPLE Collapse Causes 3D Finite Elements Numerical Models Horizontal and Vertical Displacement
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Statistical analysis on the influence of mechanical parameters in the vibration of pylons
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作者 Georgios I.Dadoulis George D.Manolis 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2023年第1期263-278,共16页
We present a statistical investigation of the degree of influence that assumptions made in relation to the mechanical parameters of a pylon have on its ground-induced vibrations.The study is set up by using as a key k... We present a statistical investigation of the degree of influence that assumptions made in relation to the mechanical parameters of a pylon have on its ground-induced vibrations.The study is set up by using as a key kinematic variable the displacement at the top of a reference,a stand-alone pylon with a uniform cross-section and fixity at its base.Next,statistics are produced using a dimensionless displacement ratio defined between the‘parental’and the‘subsidiary’cases,the latter defined for the pylon(a)resting on compliant soil,(b)having an attached top mass,and(c)being non-uniform with height.Furthermore,two materials are examined,namely,steel and reinforced concrete(R/C).More specifically,this displacement ratio is independent of the excitation and plays the role of a transfer function between the base and the top of the pylon.Both horizontal and vertical motions are considered,and the equations of motion are solved in the frequency domain.The ensuing statistical analysis is conducted for the following parameter combinations:(a)pylon founded on soft,intermediate,and stiff soil;(b)low,intermediate,and high-mass ratios of the attached mass to the pylon′s mass;(c)a constant and quadratic degree of pylon tapering with height.Spearman correlation coefficients are calculated for all the above combinations to arrive at statistical results that establish validity bounds and quantify the degree of influence of each assumption on the pylon′s response. 展开更多
关键词 pylons statistical analysis spearman coefficients structural vibrations elastic waveguides attached masses soil springs TAPERING
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AO钢板治疗Pylon骨折(附28例报告) 被引量:7
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作者 章莹 尹庆水 +9 位作者 吴文 李菊根 昌耘冰 权日 邓建业 张余 符史发 魏仲恩 张惠民 刘景发 《中国矫形外科杂志》 CAS CSCD 2001年第7期654-655,共2页
目的 :探讨Pylon骨折AO钢板治疗的优越性及手术要点。方法 :对 1996年 1月~ 2 0 0 0年 10月我院收治的 2 8例Pylon骨折用AO钢板进行手术治疗。结果 :2 8例获得平均 2 5个月的随诊 ,骨折全部愈合 ,总的优良率为 82 .1%。结论 :Pylon骨... 目的 :探讨Pylon骨折AO钢板治疗的优越性及手术要点。方法 :对 1996年 1月~ 2 0 0 0年 10月我院收治的 2 8例Pylon骨折用AO钢板进行手术治疗。结果 :2 8例获得平均 2 5个月的随诊 ,骨折全部愈合 ,总的优良率为 82 .1%。结论 :Pylon骨折应积极采取手术治疗 ,AO钢板内固定疗效佳 ,可保持植骨后胫骨高度。手术中应注意的是先整复固定外踝或后踝 ,再整复胫骨关节面并植骨 ,最后再整复内踝及支撑钢板固定 ,一期可不做关节融合。 展开更多
关键词 pylon骨折 AO钢板 内固定术 植骨 治疗
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Pylon骨折超关节固定法
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作者 焦振清 任栋 《河北医科大学学报》 CAS 2002年第2期73-73,86,共2页
关键词 胫骨骨折 治疗 骨折固定术 胫骨 康复 超关节固定法 pylon骨折 病例报告 疗效
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Pylon 骨折的诊断与治疗(附45例报告) 被引量:1
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作者 邓昌 茆文 《滨州医学院学报》 1997年第3期247-248,共2页
Pylon骨折的诊断与治疗(附45例报告)邓昌茆文(淄博市中心医院,淄博市255036张店钢铁厂医院)关键词Pylon骨折;内固定;植骨;踝关节融合术Pylon骨折是指由于轴向应力造成的胫骨远端不同程度经关节面的爆裂... Pylon骨折的诊断与治疗(附45例报告)邓昌茆文(淄博市中心医院,淄博市255036张店钢铁厂医院)关键词Pylon骨折;内固定;植骨;踝关节融合术Pylon骨折是指由于轴向应力造成的胫骨远端不同程度经关节面的爆裂性骨折。由于胫骨远端爆裂、远端松质... 展开更多
关键词 pylon骨折 内固定 植骨 踝关节融合术
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Pylon骨折治疗方法的选择应用
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作者 王文伯 潘月勤 崔明怀 《中医正骨》 2001年第7期47-48,共2页
关键词 pylon骨折 治疗 药物疗法 外科手术
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Pylon骨折诊断治疗
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作者 韩书勇 郭院生 《现代医药卫生》 2001年第8期627-628,共2页
关键词 pylon骨折 诊断 治疗
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Pylon骨折36例治疗体会
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作者 范本植 祁峰 《宁波医学》 1996年第5期283-283,共1页
Pylon骨折36例治疗体会范本植,祁峰Pylon骨折即胫腓骨远端爆裂性骨折,系胫骨远端经距小腿关节(踝关节)的骨折,有别于胫骨下1/3骨折,故被单独命名。临床工作中经常遇到这类骨折,由于对该类骨折认识不足,在治疗上... Pylon骨折36例治疗体会范本植,祁峰Pylon骨折即胫腓骨远端爆裂性骨折,系胫骨远端经距小腿关节(踝关节)的骨折,有别于胫骨下1/3骨折,故被单独命名。临床工作中经常遇到这类骨折,由于对该类骨折认识不足,在治疗上常存在诸多错误,并带来不必要的并发... 展开更多
关键词 pylon骨折 治疗 胫腓骨
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Pylon骨折的治疗
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作者 吴强 《中日友好医院学报》 2006年第4期255-256,共2页
关键词 pylon骨折 植骨治疗 手术切开复位内固定 爆裂性骨折 关节内骨折 胫骨远端 功能受损 处理不当
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PYLON骨折37例治疗体会 被引量:1
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作者 李庆忠 刘树民 《中国骨伤》 CAS 1995年第4期17-17,共1页
PYLON骨折37例治疗体会山东济宁市第二人民医院(272149)李庆忠,刘树民我院自1978年2月~1989年5月共收治PYLON骨折病人37例,应用中西医结合的治疗方法,取得了较为满意的效果。临床资料37例中男3... PYLON骨折37例治疗体会山东济宁市第二人民医院(272149)李庆忠,刘树民我院自1978年2月~1989年5月共收治PYLON骨折病人37例,应用中西医结合的治疗方法,取得了较为满意的效果。临床资料37例中男32例,女5例;年龄13~52岁;致... 展开更多
关键词 pylon 骨折 治疗
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The Lightweight Design of Low RCS Pylon Based on Structural Bionics 被引量:10
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作者 Hongjie Jiao,Yidu Zhang,Wuyi Chen Mechanical Engineering Design Centre,Beihang University,Beijing 100191,P.R.China 《Journal of Bionic Engineering》 SCIE EI CSCD 2010年第2期182-190,共9页
A concept of Specific Structure Efficiency (SSE) was proposed that can be used in the lightweight effect evaluation ofstructures.The main procedures of bionic structure design were introduced systematically.The parame... A concept of Specific Structure Efficiency (SSE) was proposed that can be used in the lightweight effect evaluation ofstructures.The main procedures of bionic structure design were introduced systematically.The parameter relationship betweenhollow stem of plant and the minimum weight was deduced in detail.In order to improve SSE of pylons, the structural characteristicsof hollow stem were investigated and extracted.Bionic pylon was designed based on analogous biological structuralcharacteristics.Using finite element method based simulation, the displacements and stresses in the bionic pylon were comparedwith those of the conventional pylon.Results show that the SSE of bionic pylon is improved obviously.Static, dynamic andelectromagnetism tests were carried out on conventional and bionic pylons.The weight, stress, displacement and Radar CrossSection (RCS) of both pylons were measured.Experimental results illustrate that the SSE of bionic pylon is markedly improvedthat specific strength efficiency and specific stiffness efficiency of bionic pylon are increased by 52.9% and 43.6% respectively.The RCS of bionic pylon is reduced significantly. 展开更多
关键词 lightweight design specific structure efficiency low RCS pylon bionic structure
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Interactive Multi-objective Optimization Design for the Pylon Structure of an Airplane 被引量:4
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作者 An Weigang Li Weiji 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2007年第6期524-528,共5页
The pylon structure of an airplane is very complex, and its high-fidelity analysis is quite time-consuming. If posterior preference optimization algorithm is used to solve this problem, the huge time consumption will ... The pylon structure of an airplane is very complex, and its high-fidelity analysis is quite time-consuming. If posterior preference optimization algorithm is used to solve this problem, the huge time consumption will be unacceptable in engineering practice due to the large amount of evaluation needed for the algorithm. So, a new interactive optimization algorithm-interactive multi-objective particle swarm optimization (IMOPSO) is presented. IMOPSO is efficient, simple and operable. The decision-maker can expediently determine the accurate preference in IMOPSO. IMOPSO is used to perform the pylon structure optimization design of an airplane, and a satisfactory design is achieved after only 12 generations of IMOPSO evolutions. Compared with original design, the maximum displacement of the satisfactory design is reduced, and the mass of the satisfactory design is decreased for 22%. 展开更多
关键词 pylon structure multi-objective optimization algorithm interactive algorithm multi-objective particle swarm optimization neural network
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Construction and alignment control of the middle steel pylon of Taizhou Bridge 被引量:2
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作者 Ji Lin You Xinpeng 《Engineering Sciences》 EI 2011年第2期46-50,共5页
The general construction procedure of the steel middle pylon is briefly introduced. The alignment control of the pylon is carried out during the whole process of the construction. The control concept is extended to th... The general construction procedure of the steel middle pylon is briefly introduced. The alignment control of the pylon is carried out during the whole process of the construction. The control concept is extended to the manufacture stage. The manufacturing alignment error is strictly controlled in the segments precast process in factory, and the error is recognized and predicted precisely during the installation stage. The adjusting joints are employed to amend the accumulated error, which ensure that the steel pylon alignment could satisfy the precision requirements after installation. 展开更多
关键词 CONSTRUCTION alignment control steel pylon whole process
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Key technology for construction of connection between steel pylonand concrete pile cap of middle pylon of Taizhou Bridge 被引量:1
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作者 Sun Yuxiang Zhang Hong +2 位作者 Xiao Wenfu Huang Tao You Xinpeng 《Engineering Sciences》 EI 2012年第3期8-11,共4页
Taizhou Bridge is a suspension bridge with three pylons and two 1 080 m main spans. The middle pylon is a steel frame with longitudinal herringbone shape and lateral gate shape. The connection between steel pylon and ... Taizhou Bridge is a suspension bridge with three pylons and two 1 080 m main spans. The middle pylon is a steel frame with longitudinal herringbone shape and lateral gate shape. The connection between steel pylon and concrete pile cap is a key part to transfer the huge inner force from the pylon to the foundation. Its construction quality is a critical factor to the overall structural loading of the whole bridge ; therefore the contact ratio between the bearing steel plate of pylon and concrete pile cap is required to be over 75 %. The inclined joint surface in two directions, longitudinally at 39/1 920 and laterally at 1/4, posted a challenge to the construction work. A procedure test was carried out to find an optimal construction method by comparison, and finally the post-injection method was selected as it can meet the requirement of concrete strength and contact ratio at the connection. The successful application of the post-injection method in Taizhou Bridge can nrovide an examnle and reference for similar nroiects in the future. 展开更多
关键词 middle pylon CONNECTION steel pylon concrete pile cap contact ratio post-injection method
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Wind tunnel study of aerodynamic wind loading on middle pylon of Taizhou Bridge 被引量:1
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作者 Zhang Zhen Ma Rujin +1 位作者 Hu Xiaohong Chen Airong 《Engineering Sciences》 EI 2011年第2期69-73,共5页
Segment sectional model tests are carried out to investigate the wind loading on middle pylon of Taizhou Bridge, which has complicated three-dimensional flow due to its feature of double columns. Through the force mea... Segment sectional model tests are carried out to investigate the wind loading on middle pylon of Taizhou Bridge, which has complicated three-dimensional flow due to its feature of double columns. Through the force measuring tests, aerodynamic force coefficients of every segment of the pylon columns have been obtained. It is found that the tested aerodynamic force coefficients are much smaller than those given by codes. The interference effects of aerodynamic force coefficients between columns of pylon are discussed. The results show that the interference effect is the most evident when the yaw angle is about 30 ° from transverse direction. This kind of interference effect can be described as diminutions in transverse aerodynamic force coefficients and magnifications in longitudinal aerodynamic force coefficients of downstream columns. 展开更多
关键词 wind tunnel test aerodynamic force coefficient interference effects segment sectional model tests middle pylon Taizhou Bridge
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Introduction to steel pylon hoisting of Taizhou Yangtze Bridge 被引量:1
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作者 Xia Guoxing Zhang Ping 《Engineering Sciences》 EI 2011年第2期39-45,共7页
Taizhou Yangtze River Bridge is the first three-pylon two-span suspension bridge in the world. The middle pylon adopts deep water caisson foundation. The superstructure of the middle pylon employs herringbone shape al... Taizhou Yangtze River Bridge is the first three-pylon two-span suspension bridge in the world. The middle pylon adopts deep water caisson foundation. The superstructure of the middle pylon employs herringbone shape along the bridge, and portal shape in the transverse direction for the first time in China. In this paper, the basic construction procedure, equipment, construction steps, the key construction technologies and methods of steel pylon are introduced. 展开更多
关键词 steel-concrete composite segment steel pylon column steel cross beam herringbone shape closure MD3600 tower crane construction technology construction method
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Effects of Tuned Mass Damper on Wind-Induced Vibration of Free Standing Pylon by Wind Tunnel Test
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作者 王中文 朱宏平 马存明 《Journal of Southwest Jiaotong University(English Edition)》 2009年第2期109-112,共4页
In order to assess the effects of tuned mass dampers (TMDs) on wind actions, an aeroelastic model with a scale of 1:60 was constructed. Tests were performed in an atmospheric boundary layer wind tunnel to investiga... In order to assess the effects of tuned mass dampers (TMDs) on wind actions, an aeroelastic model with a scale of 1:60 was constructed. Tests were performed in an atmospheric boundary layer wind tunnel to investigate the buffeting response of the pylon with a TMD fixed by a wire rope instead of a spring. The model was tested under different levels of damping. The experimental and numerical results showed that with the TMD in the optimal condition, the buffeting response was reduced by 47%. 展开更多
关键词 Buffeting response Tuned mass damper Wind tunnel test Free standing pylon
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A Study on the Quality Control of Concrete during the Slip Form Erection of Pylon
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作者 Hyejin Yoon Won Jong Chin +1 位作者 Hee Seok Kim Young Jin Kim 《Engineering(科研)》 2013年第8期647-655,共9页
The construction market of super-high-rise buildings and long-span bridges has recognized unprecedented expansion owing to the development of high performance and high strength materials and the advances achieved in t... The construction market of super-high-rise buildings and long-span bridges has recognized unprecedented expansion owing to the development of high performance and high strength materials and the advances achieved in the design and construction technologies. In parallel to the lengthening and enlargement in scale of the structures, securing quality control technology of concrete while reducing the construction duration using improved construction methods emerges as a critical problem for concrete structures. In the erection of concrete pylons, slip forming represents the latest method offering the advantage of reducing drastically the construction duration compared to other methods by adopting automated slip-up of the forms and enabling 24-hour continuous placing. This study determines the slip-up time of the slip form by evaluating the early strength through the surface wave velocity and develops lightweight GFRP form in order to secure the quality of concrete during the slip form erection of pylons. A slip form system is fabricated and mockup test is conducted to verify the performances of the developed techniques through the construction of 10 m-high pylon with a hollow section. 展开更多
关键词 SLIP FORM System Construction of CONCRETE pylons GFRP FORM
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Experimental Study on Innovative Slip Form Method for the Construction of Tapered Concrete Pylon of Long-Span Cable Bridge
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作者 Hee Seok Kim Young Jin Kim +1 位作者 Won Jong Chin Hyejin Yoon 《Engineering(科研)》 2014年第10期633-643,共11页
The construction of the three-dimensionally shaped pylons higher than 400 m requires a very high technological degree. It is known that the application of the tapered slip form method for the erection of the concrete ... The construction of the three-dimensionally shaped pylons higher than 400 m requires a very high technological degree. It is known that the application of the tapered slip form method for the erection of the concrete pylon of long-span cable bridges offers the advantage of being significantly faster than applying the auto-climbing system (ACS) form method. Therefore, this study presents the development of an innovative slip form system for pylons with tapered cross-section. Surface wave inspection system is applied for the determination of slip-up time, wireless hydraulic control system is applied for auto rising, GPS system is used to manage the pylon configuration, and lightweight GFRP (Grass Fiber Reinforced Plastic) panels are applied in the slip form system. Small-scale tests were conducted three times to validate the performance of the developed core technologies, and full-scale tests were conducted twice to validate and verify the developed innovative slip form. The full-scale tapered concrete pylons have hollow shafts and a height of 10 m. The sectional dimensions are varied according to the construction height. The experimental constructions of the tapered pylons using the innovative slip form were conducted successfully. This system is the world’s first application of GFRP slip form panel. 展开更多
关键词 SLIP Form SYSTEM Surface Wave Inspection SYSTEM Wireless Hydraulic Control SYSTEM pylon Configuration LIGHTWEIGHT GFRP PANEL
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Research on dynamic characteristics model test scheme for middle pylon of multi-pylon multi-span suspension bridges
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作者 Zhang Yufeng Zhang Dachang 《Engineering Sciences》 EI 2012年第3期64-71,共8页
Multi-pylon multi-span suspension bridge is a new type super flexible structure system, and the rigidity design of middle pylon is one of the main difficult technical issues. Due to the requirements of longitudinal ri... Multi-pylon multi-span suspension bridge is a new type super flexible structure system, and the rigidity design of middle pylon is one of the main difficult technical issues. Due to the requirements of longitudinal rigidity, the structural form and the corresponding foundation type of middle pylon are different from those of the ordinary steel pylon, and the complicated dynamic characteristics make the calculation quite difficult. In this article, exploration has been made in selection of similarity ratio and model materials, section simulation, restriction conditions simulation, fixing of mass blocks, fabrication scheme and testing method by taking into account different construction and working conditions such as restriction conditions and working environment of a three-pylon suspension bridge, to conduct the test experimental design of the dynamic behavior of the middle pylon, with the purpose to reveal its dynamic characteristics and make comparison and analysis with theoretical assumptions, to provide basis for anti-wind and anti-seismic design and reference for the design and research of three-pylon two-span suspension bridges in the future. 展开更多
关键词 multi-pylon multi-span suspension bridge middle pylon dynamic characteristics model test
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