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Effects of silica fume on the multi-scale material properties of composite Portland cement-based cutoff wall backfill
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作者 ZHOU Tan HU Jian-hua +2 位作者 ZHAO Feng-wen GUO Meng-meng XUE Sheng-guo 《Journal of Central South University》 2025年第1期205-219,共15页
Soil cement bentonite(SCB)is a common material for constructing vertical cutoff walls to prevent groundwater migration at contaminated industrial sites.However,site contaminants can degrade the durability of the cutof... Soil cement bentonite(SCB)is a common material for constructing vertical cutoff walls to prevent groundwater migration at contaminated industrial sites.However,site contaminants can degrade the durability of the cutoff wall.To enhance its performance,this study developed a silica fume-SCB(SSCB).The macroscopic and microscopic properties of SSCB were assessed by unconfined compressive strength test,variable head permeability test,X-ray diffraction(XRD),scanning electron microscopy(SEM)and nuclear magnetic resonance(NMR)spectroscopy.The correlation between its multi-scale properties was analyzed based on pore characteristics.The results indicate that increasing the silica fume substitution ratio improved SSCB strength,especially in the middle and late curing stages.Moreover,increasing the substitution ratio decreased SSCB permeability coefficient,with a more pronounced effect in earlier curing stages.Silica fume addition also refined SSCB pore structure and reduced its porosity.The fractal dimension was used to quantify SSCB pore structure complexity.Increasing silica fume content reduced small pore fractal dimension in SSCB.Concurrently,SSCB strength increased and SSCB permeability coefficient decreased.The findings of this research will demonstrate the great potential of SSCB backfill for practical applications. 展开更多
关键词 silica fume SSCB cutoff wall multi-scale material properties engineering properties microscopic mechanism
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Reliability analysis of retaining walls with multiple failure modes 被引量:2
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作者 张道兵 孙志彬 朱川曲 《Journal of Central South University》 SCIE EI CAS 2013年第10期2879-2886,共8页
In order to reduce the errors of the reliability of the retaining wall structure in the establishment of function, in the estimation of parameter and algorithm, firstly, two new reliability and stability models of ant... In order to reduce the errors of the reliability of the retaining wall structure in the establishment of function, in the estimation of parameter and algorithm, firstly, two new reliability and stability models of anti-slipping and anti-overturning based on the upper-bound theory of limit analysis were established, and two kinds of failure modes were regarded as a series of systems with multiple correlated failure modes. Then, statistical characteristics of parameters of the retaining wall structure were inferred by maximal entropy principle. At last, the structural reliabilities of single failure mode and multiple failure modes were calculated by Monte Carlo method in MATLAB and the results were compared and analyzed on the sensitivity. It indicates that this method, with a high precision, is not only easy to program and quick in calculation, but also without the limit of nonlinear functions and non-normal random variables. And the results calculated by this method which applies both the limit analysis theory, maximal entropy principle and Monte Carlo method into analyzing the reliability of the retaining wall structures is more scientific, accurate and reliable, in comparison with those calculated by traditional method. 展开更多
关键词 retaining wall MAXIMAL entropy PRINCIPLE LIMIT analysis MONTE Carlo method multiple failure MODES reliability
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Pseudo-static analysis of cantilever retaining walls using upper bound limit analysis approach 被引量:9
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作者 Asadollah RANJBAR KARKANAKI Navid GANJIAN Farajollah ASKARI 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第1期241-255,共15页
Given the extensive utilization of cantilever retaining walls in construction and development projects,their optimal design and analysis with proper attention to seismic loads is a typical engineering problem.This res... Given the extensive utilization of cantilever retaining walls in construction and development projects,their optimal design and analysis with proper attention to seismic loads is a typical engineering problem.This research presents a new algorithm for pseudo-static analysis of retaining walls employing upper bound method.The algorithm can be utilized to design and check the external and internal stability of the wall based on the proposed mechanism.One of the main features of this algorithm is its ability to determine the critical condition of failure wedges,the minimum safety factor and maximum force acting on the wall,as well as the minimum weight of the wall,simultaneously,by effectively using the multi-objective optimization.The results obtained by the proposed failure mechanisms show that,while using the upper bound limit analysis approach,the active force should be maximized concurrent with optimizing the direction of the plane passing through the back of the heel.The present study also applies the proposed algorithm to determine the critical direction of the earthquake acceleration coefficient.The critical direction of earthquake acceleration coefficient is defined as the direction that maximizes the active force exerted on the wall and minimizes the safety factor for wall stability.The results obtained in this study are in good agreement with those of similar studies carried out based on the limit equilibrium method and finite element analysis.The critical failure mechanisms were determined via optimization with genetic algorithm. 展开更多
关键词 retaining wall upper bound pseudo-static analysis safety factor multi-objective optimization
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Post-fire cyclic behavior of reinforced concrete shear walls 被引量:5
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作者 刘桂荣 宋玉普 曲福来 《Journal of Central South University》 SCIE EI CAS 2010年第5期1103-1108,共6页
The effects of fire exposure,reinforcement ratio and the presence of axial load under fire on the seismic behavior of reinforced concrete(RC) shear walls were investigated.Five RC shear walls were tested under low cyc... The effects of fire exposure,reinforcement ratio and the presence of axial load under fire on the seismic behavior of reinforced concrete(RC) shear walls were investigated.Five RC shear walls were tested under low cyclic loading.Prior to the cyclic test,three specimens were exposed to fire and two of them were also subjected to a constant axial load.Test results indicate that the ultimate load of the specimen with lower reinforcement ratio is reduced by 15.8%after exposure to elevated temperatures.While the reductions in the energy dissipation and initial stiffness are 59.2%and 51.8%,respectively,which are much higher than those in the ultimate load.However,this deterioration can be slowed down by properly increasing reinforcement due to the strength and stiffness recovery of steel bars after cooling.In addition,the combined action of elevated temperatures and axial load results in more energy dissipation than the action of fire exposure alone. 展开更多
关键词 shear wall reinforced concrete post-fire seismic behavior low cyclic loading
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Blast response of clay brick masonry unit walls unreinforced and reinforced with polyurea elastomer 被引量:5
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作者 Gang Wu Chong Ji +4 位作者 Xin Wang Fu-yin Gao Chang-xiao Zhao Yu-jun Liu Gui-li Yang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第4期643-662,共20页
Clay brick masonry unit(CBMU) walls are widely used in building structures,and its damage and protection under explosion loads have been a matter of concern in the field of engineering protection.In this paper,a serie... Clay brick masonry unit(CBMU) walls are widely used in building structures,and its damage and protection under explosion loads have been a matter of concern in the field of engineering protection.In this paper,a series of full-scale experiments of the response characteristics of 24 cm CMBU walls unreinforced and reinforced with polyurea elastomer subjected to blast loading were carried out.Through setting 5.0 kg TNT charges at different stand-off distances,the damage characteristics of masonry walls at different scaled distances were obtained.The reinforcement effect of different polyurea coating thicknesses and methods on the blast resistance performance of masonry walls under single and repeated loads were also explored.Five failure grades were summarized according to the dynamic response features of masonry walls.Based on the stress wave propagation pattern in multi-media composite structures,the internal stress distribution of masonry walls were analyzed,and the division basis of the masonry walls’ failure grades was then quantified.Combined with Scanning Electron Microscope(SEM)images,the deformation characteristics of soft and hard segments of polyurea and effects of detonation products on microstructures were revealed respectively,which provides an important reference for the design and application of polyurea in the blast resistance of clay brick masonry walls. 展开更多
关键词 Clay brick masonry unit wall POLYUREA Blast loading Failure grade Reinforcement mechanism
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Seismic stability of reinforced soil walls under bearing capacity failure by pseudo-dynamic method 被引量:6
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作者 阮晓波 孙树林 《Journal of Central South University》 SCIE EI CAS 2013年第9期2593-2598,共6页
In order to evaluate the seismic stability of reinforced soil walls against bearing capacity failure,the seismic safety factor of reinforced soil walls was determined by using pseudo-dynamic method,and calculated by c... In order to evaluate the seismic stability of reinforced soil walls against bearing capacity failure,the seismic safety factor of reinforced soil walls was determined by using pseudo-dynamic method,and calculated by considering different parameters,such as horizontal and vertical seismic acceleration coefficients,ratio of reinforcement length to wall height,back fill friction angle,foundation soil friction angle,soil reinforcement interface friction angle and surcharge.The parametric study shows that the seismic safety factor increases by 24-fold when the foundation soil friction angle varies from 25°to 45°,and increases by 2-fold when the soil reinforcement interface friction angle varies from 0 to 30°.That is to say,the bigger values the foundation soil and/or soil reinforcement interface friction angles have,the safer the reinforced soil walls become in the seismic design.The results were also compared with those obtained from pseudo-static method.It is found that there is a higher value of the safety factor by the present work. 展开更多
关键词 reinforced soil walls seismic stability against bearing capacity seismic active force pseudo-dynamic method
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Upper bound seismic rotational stability analysis of gravity retaining walls considering embedment depth 被引量:2
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作者 刘杰 黄达 +1 位作者 杨超 孙莎 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4083-4089,共7页
Stability analysis of gravity retaining wall was currently based on the assumption that the wall had no embedment depth. The effect of earth berm was usually neglected. The present work highlighted the importance of e... Stability analysis of gravity retaining wall was currently based on the assumption that the wall had no embedment depth. The effect of earth berm was usually neglected. The present work highlighted the importance of embedment depth when assessing the seismic stability of gravity retaining walls with the pattern of pure rotation. In the framework of upper bound theorem of limit analysis, pseudo-static method was applied into two groups of parallel rigid soil slices methods in order to account for the effect of embedment depth on evaluating the critical acceleration of wall-soil system. The present analytical solution is identical to the results obtained from using limit equilibrium method, and the two methods are based on different theory backgrounds. Parameter analysis indicates that the critical acceleration increases slowly when the ratio of the embedment depth to the total height of the wall is from 0 to 0.15 and increases drastically when the ratio exceeds 0.15. 展开更多
关键词 gravity retaining wall embedment depth seismic rotational stability upper bound analysis parallel rigid soil slices
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Effect of fiber angle on LYP steel shear walls behavior 被引量:2
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作者 Farzad Hatami Ali Ghamari Farshad Hatami 《Journal of Central South University》 SCIE EI CAS 2014年第2期768-774,共7页
Steel shear wall(SSW) was properly determined using numerical and experimental approaches.The properties of SSW and LYP(low yield point) steel shear wall(LSSW) were measured.It is revealed that LSSW exhibits higher pr... Steel shear wall(SSW) was properly determined using numerical and experimental approaches.The properties of SSW and LYP(low yield point) steel shear wall(LSSW) were measured.It is revealed that LSSW exhibits higher properties compared to SSW in both elastic and inelastic zones.It is also concluded that the addition of CFRP(carbon fiber reinforced polymers) enhances the seismic parameters of LSSW(stiffness,energy absorption,shear capacity,over strength values).Also,stress values applied to boundary frames are lower due to post buckling forces.The effect of fiber angle was also studied and presented as a mathematical equation. 展开更多
关键词 carbon fiber reinforced polymers fiber angle low yield point steel shear wall post buckling COMPOSITE
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Lateral load-carrying capacity analyses of composite shear walls with double steel plates and filled concrete with binding bars 被引量:1
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作者 周德源 刘凌飞 朱立猛 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期2083-2091,共9页
A method is developed to predict the lateral load-carrying capacity of composite shear walls with double steel plates and filled concrete with binding bars(SCBs). Nonlinear finite element models of SCBs were establish... A method is developed to predict the lateral load-carrying capacity of composite shear walls with double steel plates and filled concrete with binding bars(SCBs). Nonlinear finite element models of SCBs were established by using the finite element tool, Abaqus. Tie constraints were used to connect the binding bars and the steel plates. Surface-to-surface contact provided by the Abaqus was used to simulate the interaction between the steel plate and the core concrete. The established models could predict the lateral load-carrying capacity of SCBs with a reasonable degree of accuracy. A calculation method was developed by superposition principle to predict the lateral load-carrying capacity of SCBs for the engineering application. The concrete confined by steel plates and binding bars is under multi-axial compression; therefore, its shear strength was calculated by using the Guo-Wang concrete failure criterion. The shear strength of the steel plates of SCBs was calculated by using the von Mises yielding criterion without considering buckling. Results of the developed method are in good agreement with the testing and finite element results. 展开更多
关键词 composite shear wall double steel plate binding bar lateral load-carrying capacity nonlinear finite element analysis
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Construction of Thin Concrete Lined Walls for Three Gorges Shiplock
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作者 MA Yu-zengEngineer, Three Gorges Project Command of Armed Police Hydropower Engineering Troops,Yichang 443133,China 《人民长江》 北大核心 2002年第S1期32-35,共4页
With high rock slope in shiplock area, thin reinforced concrete lining walls are constructed for the shiplock system. The construction technology involves much complicated structures in formwork, frequent interference... With high rock slope in shiplock area, thin reinforced concrete lining walls are constructed for the shiplock system. The construction technology involves much complicated structures in formwork, frequent interference due to crossover working procedures, tight time schedule, high quality of reinforced concrete and showcase appearance requirements, hidden troubles affecting construction safety. With above-mentioned factors in consideration, a single-side-separated sliding formwork technology advanced from past sliding formwork experiences has been developed and applied successfully. This new technology is beneficial in quick and safe operation, capable to assure best quality and appearance of shiplock concrete works, and has filled up the gap in terms of construction sliding formwork in our country. 展开更多
关键词 THIN lined wall shiplock CHAMBER SLIDING form CONSTRUCTION technology Three Gorges MULTI-PURPOSE project
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Experimental and numerical study on protective effect of RC blast wall against air shock wave 被引量:1
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作者 Xin-zhe Nian Quan-min Xie +2 位作者 Xin-li Kong Ying-kang Yao Kui Huang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期567-579,共13页
Prototype experiments were carried out on the explosion-proof performance of the RC blast wall.The mass of TNT detonated in the experiments is 5 kg and 20 kg respectively.The shock wave overpressure was tested in diff... Prototype experiments were carried out on the explosion-proof performance of the RC blast wall.The mass of TNT detonated in the experiments is 5 kg and 20 kg respectively.The shock wave overpressure was tested in different regions.The above experiments were numerically simulated,and the simulated shock wave overpressure waveforms were compared with that tested and given by CONWEP program.The results show that the numerically simulated waveform is slightly different from the test waveform,but similar to CONWEP waveform.Through dimensional analysis and numerical simulation under different working conditions,the equation for the attenuation rate of the diffraction overpressure behind the blast wall was obtained.According to the corresponding standards,the degree of casualties and the damage degree of the brick concrete building at a certain distance behind the wall can be determined when parameters are set.The above results can provide a reference for the design and construction of the reinforced concrete blast wall. 展开更多
关键词 Blast wall Shock wave DIFFRACTION OVERPRESSURE Protection
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Molecular Design of N, S Dual-doped Carbon Nanowalls Attached onGraphene Sheets as an Efficient Sulfur Reservoir
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作者 艾伟 孙晋蒙 《材料导报》 EI CAS CSCD 北大核心 2020年第17期17001-17002,共2页
Li-S batteries have garnered unprecedent interests by virtue of the attractive advantages of S cathode,including high capacity and high reserves[1-3].However,the associated insulativity of S and unavoidable polysulfid... Li-S batteries have garnered unprecedent interests by virtue of the attractive advantages of S cathode,including high capacity and high reserves[1-3].However,the associated insulativity of S and unavoidable polysulfide(PS)intermediates shuttling during cycling have been significantly challenging the future commercialization of Li-S batteries.To date,various strategies,with a mainstream principle managing to confine S species with host mate-rials,have been frequently evaluated to circumvent these obstinate issues. 展开更多
关键词 walls CYCLING ATTRACTIVE
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Improving behavior of semi-supported steel plate shear walls
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作者 Ali GHAMARI Abbas AKBARPOUR Ali GHANBARI 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第10期2891-2905,共15页
In spite of the good performance of the steel plate shear wall(SPSW)in recent earthquakes and experimental studies,the need for huge columns to surround the infill plate is a major shortcoming of the system.This short... In spite of the good performance of the steel plate shear wall(SPSW)in recent earthquakes and experimental studies,the need for huge columns to surround the infill plate is a major shortcoming of the system.This shortcoming can be resolved by using semi-supported SPSW.The semi-supported SPSW has secondary columns that prevent the transfer of stress from the infill plate to the main columns.In spite of extensive experimental and numerical investigations on SPSWs,there are many ambiguities regarding the behavior of the semi-supported SPSW.Although stress in the columns is reduced,incomplete diagonal tension field action is formed in the infill plate that creates new problems.In this paper,a new type of semi-supported SPSW is presented in which the steel plate and the secondary columns are angled.The creation of the angle of the plate and the secondary column makes it possible to use the full capacity of the steel plate as well as the capacity of the secondary columns.Numerical results showed that the wall with a 60°angle has a favorable performance relative to the semi-supported wall.Moreover,with the 60°angle,stiffness,strength and energy absorption is increased.The angle of the secondary columns has little effect on the non-elastic stiffness.Nevertheless,using a wall with an angle of more than 90°can neutralize the wall’s behavior relative to conventional walls.Therefore,the wall with a 60°angle as an optimal angle is recommended. 展开更多
关键词 steel plate shear wall(SPSW) DUCTILITY STIFFNESS ultimate strength R factor
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Seismic analysis of cantilever earth retaining walls embedded in dry sand by simplified approaches and finite element method
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作者 FERRO Edgar OSS Andrea SIMEONI Lucia 《岩土力学》 EI CAS CSCD 北大核心 2022年第6期1617-1634,共18页
In engineering practice simplified methods are essential to the seismic design of embedded earth retaining walls,as fullydynamic numerical analyses are costly,time-consuming and require specific expertise.Recently dev... In engineering practice simplified methods are essential to the seismic design of embedded earth retaining walls,as fullydynamic numerical analyses are costly,time-consuming and require specific expertise.Recently developed pseudostatic methods provide earth stresses and internal forces,even in those cases in which the strength of the soil surrounding the structure is not entirely mobilised.Semiempirical correlations or Newmark sliding block method provide an estimate of earthquake-induced permanent displacements.However,the use of these methods is hindered by uncertainties in the evaluation of a few input parameters,affecting the reliability of the methods.This study uses 1 D site response analyses and 2 D fully-dynamic finite element analyses to show that simplified methods can provide a reasonable estimate of the maximum bending moment and permanent displacements for stiff cantilever walls embedded in uniform sand,providing that a few input parameters are evaluated through semiempirical correlations and a simple 1 D site response analysis. 展开更多
关键词 embedded retaining wall seismic design finite elements pseudostatic methods NEWMARK permanent displacement
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Active earth pressure for subgrade retaining walls in cohesive backfills with tensile strength cut-off subjected to seepage effects
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作者 FU He-lin WANG Cheng-yang LI Huan 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期2148-2159,共12页
The commonly used Mohr-Coulomb(M-C) failure condition has a limitation that it overestimates the tensile strength of cohesive soils. To overcome this limitation, the tensile strength cut-off was applied where the pred... The commonly used Mohr-Coulomb(M-C) failure condition has a limitation that it overestimates the tensile strength of cohesive soils. To overcome this limitation, the tensile strength cut-off was applied where the predicted tensile strength is reduced or eliminated. This work then presented a kinematical approach to evaluate the active earth pressure on subgrade retaining walls in cohesive backfills with saturated seepage effects. An effective rotational failure mechanism was constructed assuming an associative flow rule. The impact of seepage forces, whose distribution is described by a closed-form solution, was incorporated into the analysis. The thrust of active earth pressure was derived from the energy conservation equation, and an optimization program was then coded to obtain the most critical solution. Several sets of charts were produced to perform a parameter analysis. The results show that taking soil cohesion into account has a distinct beneficial influence on the stability of retaining walls, while seepage forces have an adverse effect. The active earth pressure increases when tensile strength cut-off is considered, and this increment is more noticeable under larger cohesion. 展开更多
关键词 active earth pressure seepage effect subgrade retaining wall tensile strength cut-off
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An impact sensitivity assessment method of spacecraft based on virtual exterior wall
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作者 Runqiang Chi Yuyan Liu +1 位作者 Diqi Hu Baojun Pang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期142-157,共16页
The impact sensitivity assessment of spacecraft is to obtain the probability of spacecraft encountering the OD/M(orbital debris or meteoroid),which is a prerequisite for survivability assessment of on-orbit spacecraft... The impact sensitivity assessment of spacecraft is to obtain the probability of spacecraft encountering the OD/M(orbital debris or meteoroid),which is a prerequisite for survivability assessment of on-orbit spacecraft.An impact sensitivity assessment method of spacecraft based on virtual exterior wall was proposed to improve the computational efficiency.This method eliminates determination of the outermost surface elements of the spacecraft before generating the debris rays,which are assumed to originate from a non-concave virtual wall that completely wraps the spacecraft.The Dist Mesh method was adopted for the generating of the virtual wall to ensure its mesh quality.The influences of the sizes,mesh densities,shapes of the virtual wall on the efficiency and accuracy were considered to obtain the best combination of the size and mesh density of the wall and spacecraft.The results of this method were compared with those of S3DE(Survivability of Spacecraft in Space Debris Environment),BUMPER,MDPANTO,ESABASE2/Debris to verify the feasibility of the method.The PCHIP(Piecewise Cubic Hermite Interpolating Polynomial)was used to fit the size vs.flux relationship of the space debris to acquire the impact probability of OD/M with arbitrary size on the spacecraft. 展开更多
关键词 Sensitivity OD/M SPACECRAFT Virtual exterior wall
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山海关长城国家文化公园体系的建构思路 被引量:1
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作者 李严 姚旺 +1 位作者 张玉坤 尚筱玥 《城市规划》 北大核心 2025年第3期90-99,共10页
山海关长城是明长城九边军防“巨系统”的缩影,被列为长城国家文化公园重点保护建设区段,其公园体系建构具有全线示范作用。根据防御体系的梳理,绘制出明代长城九边-蓟镇-山海关防御体系“巨系统”分布与结构;借助1962年山海关航照、190... 山海关长城是明长城九边军防“巨系统”的缩影,被列为长城国家文化公园重点保护建设区段,其公园体系建构具有全线示范作用。根据防御体系的梳理,绘制出明代长城九边-蓟镇-山海关防御体系“巨系统”分布与结构;借助1962年山海关航照、1901至1945年近代历史地图,揭示尘封百年的城池遗存、水系和历史道路的空间分布;依据长城防御体系构建长城国家文化公园体系,防御体系对应公园总体布局、屯兵城层次对应景观点设置、驿传路线对应游览路径、烽传视线对应景观视廊,进行可见与不可见遗址点全貌展示与系统关系还原。“让历史说话”,为长城文化遗产整体性保护与传承提供借鉴。 展开更多
关键词 山海关 长城 国家文化公园 防御体系 体系建构
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燃气射流多角度倾斜冲击发射平台效应研究 被引量:1
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作者 曲普 陈光辉 +2 位作者 袁伟亮 梁兴旺 姜瑞洲 《弹箭与制导学报》 北大核心 2025年第2期223-231,共9页
针对火箭弹发射时产生的燃气射流对发射系统造成较强冲击,可能对发射系统造成较大损害问题,以不同高低射角下火箭弹尾流场为研究对象,基于计算流体动力学方法,采用有限体积法进行数值离散,建立不同高低射角尾流场数学物理模型。在高低... 针对火箭弹发射时产生的燃气射流对发射系统造成较强冲击,可能对发射系统造成较大损害问题,以不同高低射角下火箭弹尾流场为研究对象,基于计算流体动力学方法,采用有限体积法进行数值离散,建立不同高低射角尾流场数学物理模型。在高低射角调整范围内,选择0°、5°、15°、28°、38°五种角度进行仿真模拟。通过分析射流速度和压力等参数分布随射角及时间变化,得到不同射角下射流发展规律;通过分析壁面压强分布及最大压强变化情况,得到不同射角下射流对发射平台冲击效应变化规律。研究结果表明:随射角增大,壁面压强整体有升高趋势;射角大于15°后,壁面压强会有较大提高幅度;发射平台各位置受射流冲击影响程度不同,需采用不同防护策略。本研究为发射平台防护设计提供了理论支撑。 展开更多
关键词 高低射角 尾流场 冲击效应 壁面压强 数值模拟
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大柳塔煤矿沿空留巷柔模砼墙支护阻力核定及失稳判据研究 被引量:2
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作者 李刚 刘航 +2 位作者 迟国铭 石占山 范永君 《工矿自动化》 北大核心 2025年第1期145-155,共11页
柔模砼墙沿空留巷工作面覆岩垮落结构与砼墙的稳定性是留巷成功与否的关键。以大柳塔煤矿52606工作面为研究对象,通过相似材料模拟实验发现在52605工作面和52606工作面回采结束后,砼墙上方覆岩垮落呈短悬臂梁结构,且砼墙侧垮落角均大于... 柔模砼墙沿空留巷工作面覆岩垮落结构与砼墙的稳定性是留巷成功与否的关键。以大柳塔煤矿52606工作面为研究对象,通过相似材料模拟实验发现在52605工作面和52606工作面回采结束后,砼墙上方覆岩垮落呈短悬臂梁结构,且砼墙侧垮落角均大于煤壁侧垮落角,二次采动后2个工作面裂隙贯通向地表发育,砼墙上方地面出现略微沉降。针对上述情况,通过分析覆岩垮落结构特征,确定了沿空巷道顶板第1次断裂位置位于采空区上方充填体一侧,第2次断裂位置位于采空区形成悬臂梁结构的岩层中靠近煤壁侧,并结合理论分析得到柔模砼墙沿空留巷应力分布特征。根据沿空巷道不同使用阶段门式支架是否撤出,提出留巷阶段砼墙的支护阻力采用分离岩块法计算,巷道复用阶段砼墙的支护阻力采用倾斜岩梁法计算;柔模砼墙的稳定性与安全系数有关,工作面回采过程中保证安全系数大于1,则砼墙不会发生失稳破坏。实例验证结果表明:该留巷工作面使用门式支架做临时支护时,为保证砼墙的安全系数大于2,需保证砼墙强度达到5.4 MPa以上;撤出门式支架后,断裂岩块及其覆岩载荷由砼墙承担,且采动引起的动载不断对砼墙产生影响,但砼墙的安全系数为3.9,砼墙仍相对稳定;砼墙应力虽然是不断变化的,但变化幅度都不大,均未出现应力急剧增大或减小的现象,这说明砼墙可有效支撑顶板,且砼墙一直处于稳定状态。 展开更多
关键词 沿空留巷 柔模砼墙 砼墙安全系数 门式支架 采动阶段 覆岩运移规律 支护阻力
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基于4D成像雷达的隔墙人体姿态重建与行为识别研究 被引量:1
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作者 张锐 龚汉钦 +5 位作者 宋瑞源 李亚东 卢智 张东恒 胡洋 陈彦 《雷达学报(中英文)》 北大核心 2025年第1期44-61,共18页
隔墙人体姿态重建和行为识别在智能安防和虚拟现实等领域具有广泛应用前景。然而,现有隔墙人体感知方法通常忽视了对4D时空特征的建模以及墙体对信号的影响,针对这些问题,该文创新性地提出了一种基于4D成像雷达的隔墙人体感知新架构。首... 隔墙人体姿态重建和行为识别在智能安防和虚拟现实等领域具有广泛应用前景。然而,现有隔墙人体感知方法通常忽视了对4D时空特征的建模以及墙体对信号的影响,针对这些问题,该文创新性地提出了一种基于4D成像雷达的隔墙人体感知新架构。首先,基于时空分离的分步策略,该文设计了ST~2W-AP时空融合网络,解决了由于主流深度学习库缺少4D卷积而无法充分利用多帧3D体素时空域信息的问题,实现了保留3D空域信息的同时利用长序时域信息,大幅提升姿态估计任务和行为识别任务的性能。此外,为抑制墙体对信号的干扰,该文利用深度学习强大的拟合性能和并行输出的特点设计了深度回波域补偿器,降低了传统墙体补偿方法的计算开销。大量的实验结果表明,相比于现有最佳方法,ST~2W-AP将平均关节位置误差降低了33.57%,并且将行为识别的F1分数提高了0.51%。 展开更多
关键词 穿墙 人体姿态估计 行为识别 射频感知 深度学习
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