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Study of damage to a high concrete dam subjected to underwater shock waves 被引量:7
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作者 Lu Lu Li Xin Zhou Jing 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第2期337-346,共10页
To study the effect of a strong underwater shock wave on a concrete dam, this research aims to improve hammer impact methods in model tests. Six 1:200 scale models were designed and tested under distributed impact loa... To study the effect of a strong underwater shock wave on a concrete dam, this research aims to improve hammer impact methods in model tests. Six 1:200 scale models were designed and tested under distributed impact loads. A device was deployed for a direct measurement of the impact force at the upstream face of the dams. The model dam bases were anchored to prevent displacement. The experimental results indicate that the top part of the concrete dam is a weak zone, and the impact failure initiates with a fracture on the top of the dam. The peak value of impact stress increases when the second crack appears in the concrete dam from the upstream face to the downstream face. And, the level of the second crack in the dam body is lower as the peak value of impact stress increases. In this study, dynamic analysis was conducted by calculating the results to verify the effectiveness of a device to directly measure the impact force. This method may be used to approximately forecast the damage of concrete dam and may also be useful in other engineering applications. 展开更多
关键词 underwater shock wave hammer impact impact force high concrete gravity dam forecast damage
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Synthesis and Flocculation of Polyacrylamide with Low Water Absorption for Non-dispersible Underwater Concrete
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作者 LI Hongling YAN Na +2 位作者 SUN Guowen ZHENG Haorui YANG Xinyu 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第6期1404-1413,共10页
The polyacrylamide which is directly added into concrete shows strong water absorption property.Thus the construction of underwater constructure would demand high amount of water,resulting in poor workability of concr... The polyacrylamide which is directly added into concrete shows strong water absorption property.Thus the construction of underwater constructure would demand high amount of water,resulting in poor workability of concrete and strength shrinkage after hardening.Herein,a kind of anionic polyacrylamide(APAM)grafted with water reducing functional group(-COOH)was synthesized at low temperatures by partial factor design and response surface design.The structure and morphology of APAM were characterized by UV,FTIR and SEM methods.The experimental results show that the molecular weight of the synthesized APAM could reach 11 million,under the condition that the temperature was 35℃,the pH value was 8,the monomer concentration was 27wt%,the initiator dosage was 0.6wt%,and the monomer ratio(n(AM):n(AA))was 3.When the APAM was applied into the underwater slurry,it presented good flocculation and low water demand.When the dosage was 1%of the mass of the cement,the water demand increased by 12%,which could meet the self-leveling and anti-dispersity of the underwater slurry at the same time.This technology provides technical guidance for the large-scale industrial production of polyacrylamide for underwater concrete construction while achieving environmental protection during production. 展开更多
关键词 non-dispersible underwater concrete anionic polyacrylamide partial factor design response surfacedesign FLOCCULATION
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Effect of GGBS on performance deterioration of non-dispersible underwater concrete in saline soil
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作者 Fang Liu BaoMin Wang +2 位作者 GuoRong Tao Tao Luo XiaoSa Yuan 《Research in Cold and Arid Regions》 CSCD 2022年第2期120-137,共18页
In saline soil areas,there are a large number of ions in soil or water environments,such as Cl^(-)and SO_(4)^(2-),which have strong corrosive interactions with buildings.To study the deterioration of non-dispersible u... In saline soil areas,there are a large number of ions in soil or water environments,such as Cl^(-)and SO_(4)^(2-),which have strong corrosive interactions with buildings.To study the deterioration of non-dispersible underwater concrete in sulfate,chloride,and mixed salt environments,the compressive strength and deterioration resistance coefficient of the studied concrete mixed with different amounts of ground granulated blast-furnace slag(GGBS)were analyzed in this paper.At the same time,the micro morphology and corrosion products distribution of the studied concrete were observed by means of SEM,plus XRD diffraction,TG-DTG and FT-IR analyses to explore the influence of corrosive solutions on the hydration products of concrete.We also analyzed the mechanism of improving the deterioration resistance of the studied concrete by adding GGBS in a saline soil environment.The results show that the compressive strength of the studied concrete in a chloride environment was close to that in a fresh water environment,which means that chloride has no adverse effect on compressive strength.The deterioration of the studied concrete was most serious in a sulfate environment,followed by mixed salt environment,and the lowest in a chloride environment.In addition,by adding GGBS,the compressive strength and deterioration resistance of the studied concrete could be effectively improved. 展开更多
关键词 saline soil non-dispersible underwater concrete granulated blast furnace slag deterioration resistance mechanism analysis
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Analysis on Pore Structure of Non-Dispersible Underwater Concrete in Saline Soil Area
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作者 Fang Liu Baomin Wang +1 位作者 Mengsai Wang Xiaosa Yuan 《Journal of Renewable Materials》 SCIE EI 2021年第4期723-742,共20页
In this paper,mercury intrusion porosimetry(MIP)is used to test the pore structure of non-dispersible underwater concrete so as to study the influence of pouring and curing environment,age and slag powder on the pore ... In this paper,mercury intrusion porosimetry(MIP)is used to test the pore structure of non-dispersible underwater concrete so as to study the influence of pouring and curing environment,age and slag powder on the pore characteristics of concrete,analyze the pore characteristics,porosity and pore distribution of concrete in different hydration stages,and reveal the relationship between pore structure and permeability of concrete.The results show that the pore-size distribution of concrete in fresh water condition is better than that in sulfate environment and mixed salt environment,and therefore,sulfate as well as mixed salt are not conducive to the development of pore structure of non-dispersible underwater concrete;chlorine salt has little effect on the pore structure of nondispersible underwater concrete;under the three conditions of sulfate,chlorine and mixed salt,the porosity of concrete mixed with slag powder is lower than that of concrete without slag powder.The results indicate that the addition of slag powder can ameliorate the pore size distribution of non-dispersed underwater concrete,reduce the porosity,and make the concrete structure more compact,which is beneficial to improve the permeability resistance of concrete at the macro level. 展开更多
关键词 Non-dispersible underwater concrete slag powder saline soil mercury intrusion porosimetry(mip) pore structure
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Experimental investigation on dynamic response and damage models of circular RC columns subjected to underwater explosions 被引量:5
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作者 Tie-shuan Zhuang Ming-yang Wang +3 位作者 Jun Wu Cheng-yu Yang Tao Zhang Chao Gao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第4期856-875,共20页
Reinforced concrete(RC) columns are widely used as supporting structures for high-piled wharfs.The study of damage model of a RC column due to underwater explosion is a critical issue to assess the wharfs antiknock se... Reinforced concrete(RC) columns are widely used as supporting structures for high-piled wharfs.The study of damage model of a RC column due to underwater explosion is a critical issue to assess the wharfs antiknock security.In this study,the dynamic response and damage model of circular RC columns subjected to underwater explosions were investigated by means of scaled-down experiment models.Experiments were carried out in a 10.0 m diameter tank with the water depth of 2.25 m,under different explosive quantities(0.025 kg-1.6 kg),stand-off distances(0.0 m-7.0 m),and detonation depths(0.25 m-2.0 m).The shock wave load and dynamic response of experiment models were measured by configuring sensors of pressure,acceleration,strain,and displacement.Then,the load distribution characteristics,time history of test data,and damage models related to present conditions were obtained and discussed.Three damage models,including bending failure,bending-shear failure and punching failure,were identified.In addition,the experie nce model of shock wave loads on the surface of a RC column was proposed for engineering application. 展开更多
关键词 underwater explosion Reinforced concrete(RC)columns Load distribution characteristics Dynamic response Damage models
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Preparation of High Performance Non-dispersible Concrete 被引量:1
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作者 姜丛盛 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2004年第2期67-69,共3页
A new-type underwater non-dispersible concrete admixture NDA was prepared,its function mechanism was analyzed,and C40 high performance non-dispersible underwater concrete was manufactured by applying NDA.The results i... A new-type underwater non-dispersible concrete admixture NDA was prepared,its function mechanism was analyzed,and C40 high performance non-dispersible underwater concrete was manufactured by applying NDA.The results indicate that NDA has a suitable workability,low strength loss,and excellent anti-dispersion;the fresh non-dispersible underwater concrete with NDA has high anti-dispersion,excellent workability such as self-compacting and not bleeding;hardened non-dispersible underwater concrete with NDA has a high strength,high durability such as high anti-abrasion,impermeability and anticorrosion. 展开更多
关键词 non-dispersible underwater concrete high performance anti-washout
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The damage to model concrete gravity dams subjected to water explosions
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作者 Shang Ma Ye-qing Chen +3 位作者 Zhen-qing Wang Shu-tao Li Qing Zhu Long-ming Chen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第9期119-137,共19页
Over the past century,the safety of dams has gradually attracted attention from all parties.Research on the dynamic response and damage evolution of dams under extreme loads is the basis of dam safety issues.In recent... Over the past century,the safety of dams has gradually attracted attention from all parties.Research on the dynamic response and damage evolution of dams under extreme loads is the basis of dam safety issues.In recent decades,scholars have studied the responses of dams under earthquake loads,but there is still much room for improvement in experimental and theoretical research on small probability loads such as explosions.In this paper,a 50-m-high concrete gravity dam is used as a prototype dam,and a water explosion model test of a 2.5-m-high concrete gravity dam is designed.The water pressure and the acceleration response of the dam body in the test are analysed.The pressure characteristics and dynamic response of the dam body are assessed.Taking the dam damage test as an example,a numerical model of concrete gravity dam damage is established,and the damage evolution of the dam body is analysed.By combining experiments and numerical simulations,the damage characteristics of the dam body under the action of different charge water explosions are clarified.The integrity of the dam body is well maintained under the action of a small-quantity water explosion,and the dynamic response of the dam body is mainly caused by the shock wave.Both the shock wave and the bubble pulsation cause the dam body to accelerate,and the peak acceleration of the dam body under the action of the bubble pulsation is only one percent of the peak acceleration of the dam body under the action of the shock wave.When subjected to explosions in large quantities of water,the dam body is seriously damaged.Under the action of a shock wave,the dam body produces a secondary acceleration response,which is generated by an internal interaction after the dam body is damaged.The damage evolution process of the dam body under the action of a large-scale water explosion is analysed,and it is found that the shock wave pressure of the water explosion causes local damage to the dam body facing the explosion.After the peak value of the shock wave,the impulse continues to act on the dam body,causing cumulative damage and damage inside the dam body. 展开更多
关键词 underwater explosion concrete gravity dam Model test Damage evolution
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Influence of Hydrostatic Pressure on Compressive Strength of Self-consolidating Concrete
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作者 Elzbieta Horszczaruk Piotr Brzozowski +1 位作者 Grzegorz Adamczewski Tomasz Rudnicki 《Journal of Civil Engineering and Architecture》 2014年第12期1549-1555,共7页
The design of unique chamber, in which the SCUWC (self-consolidating underwater concrete) can be tested under the impact of the hydrostatic pressure from 0.1 MPa to 0.5 MPa, is presented in the paper. The results of... The design of unique chamber, in which the SCUWC (self-consolidating underwater concrete) can be tested under the impact of the hydrostatic pressure from 0.1 MPa to 0.5 MPa, is presented in the paper. The results of the preliminary tests of the effect of the hydrostatic pressure on the compressive strength of SCUWC were shown. The impact of the hydrostatic pressure on the compressive strength values of test specimens has been confirmed. There has been an increase in the strength of the specimens taken from the upper parts of the concrete samples. As it can be seen from the preliminary research, the differences in compressive strength are related to the differences that occur in the size and distribution of air voids in the samples taken from upper and lower parts of the test specimens. On the basis of the carried out investigations of the compressive strength, it can be concluded that the hydrostatic pressure has a favorable effect on the compressive strength of the tested specimens of SCUWC. Increase of the compressive strength is observed mostly in the upper layers of the samples. Preliminary analysis of the quantity and distribution of air pores in the samples of concrete subjected to pressure 0.5 MPa confirms the positive impact of the hydrostatic pressure on the layers close to the surface indicated by the absence of large air voids above 1,500μm and by reducing the quantity of air pores of size above 300μm. 展开更多
关键词 Compressive strength hydrostatic pressure self-consolidating concrete underwater concrete air voids.
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Numerical study on local failures of reinforced concrete slabs against underwater close-in explosions
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作者 Fei ZHOU Hedong LI Hao WU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2024年第8期650-669,共20页
Reinforced concrete(RC)slabs are the primary load-carrying member of underwater facilities.They can suffer severe local failures such as cratering,spalling,or breaching as a result of underwater close-in(UWCI)explosio... Reinforced concrete(RC)slabs are the primary load-carrying member of underwater facilities.They can suffer severe local failures such as cratering,spalling,or breaching as a result of underwater close-in(UWCI)explosions.In this study,we established a fully validated high-fidelity finite element analysis approach to precisely reproduce the local failures of RC slabs after a UWCI explosion.A recently proposed dynamic constitutive model is used to describe wet concrete.The effects of free water content on the material properties,including the tensile/compressive strength,elastic modulus,strain rate effect,failure strength surface,and equation of state,are comprehensively calibrated based on existing test data.The calibrated material parameters are then verified by a single-element test.A high-fidelity finite element analysis(FEA)approach of an RC slab subjected to a UWCI explosion is established using an arbitrary Lagrangian-Eulerian(ALE)algorithm.Simulating previous UWCI explosion tests on RC orifice targets and underwater contact explosion tests on saturated concrete slabs showed that the established FEA approach could accurately reproduce the pressure-time history in water and damage patterns,including the cracking,cratering,and spalling,of the RC orifice target and saturated concrete slab.Furthermore,parametric studies conducted by simulating an RC slab subjected to a UWCI explosion showed that:(i)the local failure of an RC slab enlarges with increased charge weight,reduced standoff distance,and reduced structural thickness;(ii)compared to a water-backed RC slab,an air-backed RC slab exhibits much more obvious local and structural failure.Lastly,to aid the anti-explosion design of relevant underwater facilities,based on over 90 simulation cases empirical formulae are summarized to predict local failure modes,i.e.,no spall,spall,and breach,of water-and air-backed RC slabs subjected to a UWCI explosion. 展开更多
关键词 Reinforced concrete slab(RC) underwater close-in(UWCI)explosion Saturated concrete Failure modes Numerical simulation
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水下不分散混凝土拌和物浆体流变性能试验研究
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作者 李晓克 王琳 +3 位作者 耿海彬 丁新新 杜浩 李长永 《人民黄河》 北大核心 2025年第4期157-160,共4页
通过试验研究了UWB-Ⅱ型絮凝剂和聚羧酸高性能减水剂掺量对水下不分散混凝土拌和物浆体的流动度和流变性能的影响,分析了浆体流动度与屈服应力的关系。结果表明:小掺量絮凝剂可以增大浆体的流动度,减小其屈服应力、黏稠度;大掺量絮凝剂... 通过试验研究了UWB-Ⅱ型絮凝剂和聚羧酸高性能减水剂掺量对水下不分散混凝土拌和物浆体的流动度和流变性能的影响,分析了浆体流动度与屈服应力的关系。结果表明:小掺量絮凝剂可以增大浆体的流动度,减小其屈服应力、黏稠度;大掺量絮凝剂则显著增大浆体的屈服应力和黏稠度。减水剂的加入可以小幅增大浆体流动度,减小浆体屈服应力和黏稠度,但其掺量较大时对浆体屈服应力、黏稠度的影响减弱。絮凝剂掺量较小时浆体表现为剪切变稠、较大时浆体表现为剪切变稀,减水剂的加入对浆体剪切变稀现象影响不显著。流动度与屈服应力为线性负相关关系。 展开更多
关键词 水下不分散混凝土 浆体 絮凝剂 减水剂 流动度 流变性能
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空中与水下爆炸工况下轨条砦结构毁伤效应研究
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作者 唐松磊 翟红波 +2 位作者 毛伯永 吕民东 陈凯 《兵器装备工程学报》 北大核心 2025年第3期1-7,共7页
采用有限元软件AUTODYN构建了轨条砦结构在不同介质中遭受爆炸冲击的数值模型,通过数值模拟结果对比分析了空中和水下爆炸冲击波作用下轨条砦结构动态响应及损伤程度。研究结果表明,在近爆区域内,空中和水下爆炸冲击波的传播特性存在显... 采用有限元软件AUTODYN构建了轨条砦结构在不同介质中遭受爆炸冲击的数值模型,通过数值模拟结果对比分析了空中和水下爆炸冲击波作用下轨条砦结构动态响应及损伤程度。研究结果表明,在近爆区域内,空中和水下爆炸冲击波的传播特性存在显著差异,爆轰波在空气中的传播速度和衰减速度均较水中更快;然而,水下爆炸冲击波的压力峰值较空中爆炸显著增大,对轨条砦结构的潜在破坏能力更强。此外,随着TNT爆炸当量的增加,结构的碎裂程度也随之升高。对于由C30混凝土建造的轨条砦,其近炸破坏TNT当量阈值确定为15 kg。这一研究成果为近海防御工程的设计提供了重要基础,并为制定登陆破障方案提供了参考依据。 展开更多
关键词 轨条砦结构 空中爆炸 水下爆炸 动态响应 毁伤阈值
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基于回弹法的水下混凝土检测技术研究
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作者 陶海峰 罗原浩 +2 位作者 程智慧 刘志懋 甘进 《交通科技》 2025年第1期49-54,共6页
为解决传统的无损检测方法如回弹法、超声法等存在设备水损、数据精度差、难评估的问题。文中基于传统回弹法测强原理,设计水下无损检测装置,并通过试验验证其性能,进一步提炼适配的水下作业测强曲线。结果表明,装置水下作业时防水性能... 为解决传统的无损检测方法如回弹法、超声法等存在设备水损、数据精度差、难评估的问题。文中基于传统回弹法测强原理,设计水下无损检测装置,并通过试验验证其性能,进一步提炼适配的水下作业测强曲线。结果表明,装置水下作业时防水性能完善,并且所拟合测强曲线的2个误差指标:强度平均相对误差δ=9.13≤12,强度相对标准差e_(r)=11.61≤14,满足JGJ/T 23-2011《回弹法检测混凝土抗压强度技术规程》对专用测强曲线的精度要求。 展开更多
关键词 水下混凝土 回弹法 无损检测 测强曲线 机器学习
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水下快速修补UHPC的性能研究
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作者 孙迎春 舒本安 +2 位作者 谭珂 邱文俊 任彦飞 《混凝土与水泥制品》 2025年第3期39-43,共5页
基于最紧密堆积理论,以硫铝酸盐水泥(CSA)-石膏-硅酸盐水泥为主要胶凝材料体系,设计了水下快速修补超高性能混凝土(UHPC),并研究了其工作性、力学性能、微观结构等。结果表明:水下快速修补UHPC具有较好的凝结时间和流动度,pH值为10.7,... 基于最紧密堆积理论,以硫铝酸盐水泥(CSA)-石膏-硅酸盐水泥为主要胶凝材料体系,设计了水下快速修补超高性能混凝土(UHPC),并研究了其工作性、力学性能、微观结构等。结果表明:水下快速修补UHPC具有较好的凝结时间和流动度,pH值为10.7,水泥流失量为6.7%,4 h抗压强度为35.71 MPa,7 d抗压强度为74.06 MPa,28 d抗压强度为106.04 MPa,具有较好的抗分散性能和力学性能;UHPC水下成型样品的微观结构致密、均匀,孔隙率相较于陆上成型样品降低了3.49%,CSA在水下环境可以更好地水化,生成的膨胀性水化产物更多,优化了孔隙结构。 展开更多
关键词 最紧密堆积理论 水下成型 超高性能混凝土(UHPC) 水下快速修补 配合比
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模袋混凝土尾段沉放技术研究与应用
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作者 杨鹏 王振宇 《广东水利水电》 2025年第2期76-81,共6页
采用深水护岸摊铺船进行施工的模袋混凝土,其尾段在沉放过程中若不采取牵拉制动措施而在失控状态下脱离摊铺板滑入水中,易发生尾段堆叠现象,而非均匀展铺于水下斜坡上,不能起到有效的护坡作用。为解决上述问题,创新提出一种模袋混凝土... 采用深水护岸摊铺船进行施工的模袋混凝土,其尾段在沉放过程中若不采取牵拉制动措施而在失控状态下脱离摊铺板滑入水中,易发生尾段堆叠现象,而非均匀展铺于水下斜坡上,不能起到有效的护坡作用。为解决上述问题,创新提出一种模袋混凝土尾段沉放技术,即通过研制出一种牵拉装置,使模袋混凝土尾段在受控状态下缓慢沉放入水。经水下摄像检查,模袋混凝土均匀展铺于水下斜坡之上,满足规范和设计要求,护坡效果良好。本技术原理简单,操作便捷,施工效果良好,可供类似工程参考和借鉴。 展开更多
关键词 牵拉装置 模袋混凝土 水下护坡施工
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不同荷载作用下混凝土重力坝水力劈裂破坏模拟
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作者 王洋 孙金山 +2 位作者 王高辉 郑嘉惟 李勇震 《人民珠江》 2025年第3期1-8,共8页
针对混凝土重力坝水力劈裂扩展问题进行研究,构建混凝土断裂力学模型,采用黏聚力单元模拟裂缝扩展,建立静、动水力劈裂缝内水压计算方法。分别模拟静水压力、地震荷载和水下爆炸荷载作用下重力坝裂缝扩展过程,由计算结果可知,提出的混... 针对混凝土重力坝水力劈裂扩展问题进行研究,构建混凝土断裂力学模型,采用黏聚力单元模拟裂缝扩展,建立静、动水力劈裂缝内水压计算方法。分别模拟静水压力、地震荷载和水下爆炸荷载作用下重力坝裂缝扩展过程,由计算结果可知,提出的混凝土重力坝水力劈裂计算模型在静水压力、地震荷载和水下爆炸荷载作用下对裂缝的分布和扩展均具有较好的模拟效果与参考文献结果相近。静水压力作用下重力坝裂缝扩展长度与水头高度正相关;在地震荷载作用下缝内水压力显著促进了裂缝的扩展长度;水下爆炸荷载作用下,冲击波首先在大坝上游坝面造成大面积破坏,随后向坝体下部扩展并集中在大坝中部和坝踵位置。研究成果为混凝土重力坝水力劈裂稳定性分析提供依据,对实际大坝工程中的裂缝控制和坝体安全管理具有重要参考价值。 展开更多
关键词 混凝土重力坝 水力劈裂模拟 静水压力 地震荷载 水下爆炸
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Bending failure of a concrete gravity dam subjected to underwater explosion 被引量:8
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作者 Xie-ping HUANG Jing HU +2 位作者 Xue-dong ZHANG Zi-tao ZHANG Xiang-zhen KONG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第12期976-991,共16页
Dam structures are prime targets during wars,and a tragedy is likely to happen in a populated area downstream of a dam exposed to explosions.However,experimental investigations of the failure of a concrete gravity dam... Dam structures are prime targets during wars,and a tragedy is likely to happen in a populated area downstream of a dam exposed to explosions.However,experimental investigations of the failure of a concrete gravity dam subjected to underwater explosion(UNDEX)are extremely scarce.In this study,centrifuge tests and numerical simulations were performed to investigate the failure of a concrete gravity dam subjected to a near-field UNDEX.The results revealed the existence of two tensile fractures inside the dam,one in the upper part and the other in the lower part.Due to the narrowness of the upper part,there were coupled effects of bending tensile loads in the upstream face and a reflected tensile stress wave in the downstream face,resulting in severe tensile damage to the upper part in both the upstream and downstream faces.The fracture in the lower part was measured at around one third of the height of the dam.This fracture was produced mainly by the bending tensile loads in the upstream face.Driven by those loads,this fracture started from the upstream face and developed towards the downstream face,with a horizontal angle of about 15?.The underlying mechanisms behind the two tensile fractures were confirmed by recorded strain histories.The dam failures presented in this study are similar to those produced in historical wars,in which dams were under similar attack scenarios. 展开更多
关键词 Centrifuge test Numerical simulation concrete gravity dam underwater explosion(UNDEX) Bending failure
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水下混凝土结构填缝止水胶抗渗性能试验方法研究
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作者 张景奎 刘长顺 +4 位作者 罗居刚 孔楠楠 姚亮 彭建和 许军才 《混凝土与水泥制品》 2024年第12期87-92,共6页
对比分析了3种填缝止水胶(聚氨酯密封胶、聚硫密封胶、聚氨酯遇水膨胀止水胶)的拉伸性能、拉伸粘结性能、耐老化性能和低温柔性,提出了一种用于测试注胶防渗实体结构抗渗性能的实体模型试验装置与试验方法,研究了缝宽(5、10、20 mm)、... 对比分析了3种填缝止水胶(聚氨酯密封胶、聚硫密封胶、聚氨酯遇水膨胀止水胶)的拉伸性能、拉伸粘结性能、耐老化性能和低温柔性,提出了一种用于测试注胶防渗实体结构抗渗性能的实体模型试验装置与试验方法,研究了缝宽(5、10、20 mm)、注胶层厚度(5、10、15、20、25 mm)、相对剪切位移(0、3、6、9 mm)、水头压力(1.0 MPa恒压、极限渗透压力)对实体模型试件抗渗性能的影响。结果表明:聚硫密封胶的各项性能相对较优;在不同缝宽、注胶层厚度和相对剪切位移组合工况下,无论是1.0 MPa恒压作用还是极限渗透压力作用,聚硫密封胶试件的抗渗性能均最好;提出的实体模型试验装置与试验方法能够便捷准确地测试拼缝注胶防渗实体结构的抗渗性能。 展开更多
关键词 水下混凝土结构 填缝止水胶 抗渗性能 实体模型
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远场水下爆炸冲击作用下重力坝动力稳定性的简化时程分析方法 被引量:1
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作者 黄宇峰 卢文波 +2 位作者 王高辉 陈明 严鹏 《工程力学》 EI CSCD 北大核心 2024年第3期73-81,共9页
高坝大库的抗爆与防护是国防安全的重要研究课题。该文针对远场水下爆炸冲击作用下混凝土重力坝的稳定安全评价问题,研究了远场水下爆炸冲击波的传播及其与坝体的相互作用过程;基于波动理论和平面波假设,建立了重力坝爆炸动应力场的简... 高坝大库的抗爆与防护是国防安全的重要研究课题。该文针对远场水下爆炸冲击作用下混凝土重力坝的稳定安全评价问题,研究了远场水下爆炸冲击波的传播及其与坝体的相互作用过程;基于波动理论和平面波假设,建立了重力坝爆炸动应力场的简化理论计算模型,最终建议了一种远场水下爆炸冲击波作用下重力坝动力稳定性的简化时程分析方法;同时结合工程实际,采用该方法对某混凝土重力坝的动力稳定性进行了分析。结果表明:在远场爆炸冲击荷载作用下,重力坝的稳定安全系数呈现出先增后减再增并最终保持恒定的变化规律;下游坝面反射形成的拉伸波与剪切波的共同作用是导致建基面稳定安全系数降低的主要原因。 展开更多
关键词 混凝土重力坝 水下爆炸 坝体动应力 动力稳定性 时程分析
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泥石流排导槽混凝土材料磨蚀特性研究 被引量:1
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作者 栗帅 方鑫 +4 位作者 陈晓清 陈剑刚 赵万玉 陈华勇 吴帆 《工程地质学报》 CSCD 北大核心 2024年第5期1536-1545,共10页
我国泥石流灾害频发多发,危害十分严重。排导槽在防治泥石流的实践中扮演了至关重要的作用,但也出现了很多冲磨破坏的情况,极大地影响排导槽安全功能及运行寿命。排导槽的冲刷磨蚀问题是泥石流减灾亟需解决的关键技术难题之一。针对排... 我国泥石流灾害频发多发,危害十分严重。排导槽在防治泥石流的实践中扮演了至关重要的作用,但也出现了很多冲磨破坏的情况,极大地影响排导槽安全功能及运行寿命。排导槽的冲刷磨蚀问题是泥石流减灾亟需解决的关键技术难题之一。针对排导槽工程中混凝土过流表面的冲磨破坏现象,本文通过向混凝土中复掺不同材料(纳米二氧化硅、微硅粉、聚丙烯纤维和引气剂)和涂抹聚脲保护层两种途径,提高混凝土的抗冲耐磨性能。为此,采取水下钢球法的磨蚀实验方法,研究两种混凝土试件的抗冲磨强度、磨损率、磨损系数和平均磨蚀深度等参数指标,综合比较其抗冲耐磨性能。结果表明,两者都能提高混凝土的抗冲耐磨性,聚脲的抗冲磨强度比复掺材料混凝土提高了约5~18倍,磨损率和磨损系数均降低约78%~98%,平均磨蚀深度减小了一个数量级,并且弹性聚脲抗冲磨性能远大于刚性聚脲。分析其抗冲磨机制,认为复掺材料主要通过增加集料与水泥石的接触面积、改善混凝土内微结构、增强黏结性等来增强抗冲耐磨性能。聚脲材料则依靠自身大量氢键的断裂-新生循环、强活动性链段的松弛型变、以及自由基团氧化反应的胶黏层显著提高耐磨性。因此,建议在泥石流排导槽磨损修复加固措施中,优先考虑涂抹聚脲保护层来延长排导槽的使用寿命。 展开更多
关键词 泥石流排导槽 混凝土磨损 水下钢球法 抗冲耐磨性能
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水下修复材料的黏结强度与变形性能研究进展 被引量:1
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作者 马豪达 陈波 +3 位作者 白银 白延杰 张丰 张晓闯 《混凝土与水泥制品》 2024年第6期31-36,共6页
介绍了常用的几种水下修复材料的性能,分析了其作用机理,强调了黏结强度和变形性能的重要性,指出了各水下修复材料在接缝修复中存在的问题及优缺点,并提出了未来重点研究方向。
关键词 混凝土接缝 水下修复材料 黏结强度 变形性能
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