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金沙江梯级水库氢氧同位素指示的分层及累积效应
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作者 周容丹 包宇飞 +5 位作者 王雨春 杜彦良 王世岩 刘畅 毕二平 温洁 《湖泊科学》 北大核心 2025年第3期928-939,共12页
梯级大坝的建设对河流水文循环和水生态环境产生了深远的影响。本文对金沙江下游4个梯级深大水库(水深>150 m),依次为乌东德、白鹤滩、溪洛渡和向家坝,在丰水期热分层期间的氢、氧同位素值(δD和δ^(18)O)进行垂向测定,探究同位素指... 梯级大坝的建设对河流水文循环和水生态环境产生了深远的影响。本文对金沙江下游4个梯级深大水库(水深>150 m),依次为乌东德、白鹤滩、溪洛渡和向家坝,在丰水期热分层期间的氢、氧同位素值(δD和δ^(18)O)进行垂向测定,探究同位素指示下水源、气象及水库建设的分层动力学等对河流水循环的作用。通过MixSIAR模型对研究区水体来源进行定量分析,得到偏枯年份(2023年)的丰水期大气降水和冰川融水为金沙江下游的主要水源补给,占比分别为89.8%和10.2%。水源的占比在丰、枯水年,以及年内的丰、枯水期内发生变化,表现为丰水期水库入流的氢氧同位素值相对高于枯水期。热分层期间,受蒸发、地下水和支流等因素的综合影响,库区同位素值在垂向剖面上呈现复杂的差异性。层化现象导致水体垂向交换减弱,通过垂向二维数值模型反演,表温层水域流动性快,携带丰水期水体信息,而深层的滞温层水体表现为混合期冬、春季节枯水期水体的滞留特性。上游乌东德库区位于干热河谷区,表层水体的氘盈余均值低至-26.40‰,δ^(18)O均值为-11.15‰,表层蒸发效应显著高于其余3个水库。此外,部分垂线底层水体δD值的变化反映了乌东德水库坝前、白鹤滩近库尾及溪洛渡坝前的底层水体均受地下水入渗影响。大坝拦截增加了水体的水力停留时间,加强了蒸发富集作用,从库尾至坝前,乌东德、白鹤滩和向家坝水库的δ^(18)O值均具有逐渐上升的趋势。梯级水库的累积效应主要表现为表层水体的δD均值从上游(-115.62‰)至下游(-100.66‰)逐渐升高,δ^(18)O均值呈先降低后升高的波动增长趋势,乌东德水库的δ^(18)O均值最高,而白鹤滩水库的δ^(18)O均值(-15.36‰)最低。本研究可为流域系统调度管理提供理论参考。 展开更多
关键词 梯级水库 氢氧同位素 分层效应 累积效应 分层动力 蒸发富集 MixSIAR模型
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虚拟社会分层:动因、维度与趋势 被引量:4
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作者 陈强 徐晓林 《情报杂志》 CSSCI 北大核心 2015年第7期202-206,F0003,共6页
虚拟社会是数字化的现实社会中的人在互联网建构的虚拟空间内依据特定的规则进行生产和生活活动的人化场域。社会分层作为虚拟社会的重要现象存在和发展,由作为虚拟社会纽带的信息的特性、虚拟社会物质基础的技术特质决定,是现实社会权... 虚拟社会是数字化的现实社会中的人在互联网建构的虚拟空间内依据特定的规则进行生产和生活活动的人化场域。社会分层作为虚拟社会的重要现象存在和发展,由作为虚拟社会纽带的信息的特性、虚拟社会物质基础的技术特质决定,是现实社会权力向虚拟社会延伸的结果。虚拟社会分层可以从虚拟社会接入情况、虚拟社会政策供应、虚拟社会工具供应、虚拟社会信息供应、虚拟社会信息意识、虚拟社会信息获取、虚拟社会信息利用和虚拟社会信息伦理等八个维度进行考察。ICT技术革新带来虚拟社会阶层的分化与流动以及虚拟社会阶层间聚合互动现象不断增长是虚拟社会分层发展趋势。 展开更多
关键词 虚拟社会 社会分层 分层动力 分层标准 分层框架 分层趋势
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A theoretical analysis of vertical dynamic response of large-diameter pipe piles in layered soil 被引量:5
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作者 丁选明 郑长杰 刘汉龙 《Journal of Central South University》 SCIE EI CAS 2014年第8期3327-3337,共11页
Considering the viscous damping of the soil and soil-pile vertical coupled vibration,a computational model of large-diameter pipe pile in layered soil was established.The analytical solution in frequency domain was de... Considering the viscous damping of the soil and soil-pile vertical coupled vibration,a computational model of large-diameter pipe pile in layered soil was established.The analytical solution in frequency domain was derived by Laplace transformation method.The responses in time domain were obtained by inverse Fourier transformation.The results of the analytical solution proposed agree well with the solutions in homogenous soil.The effects of the shear modulus and damping coefficients of the soil at both outer and inner sides of the pipe pile were researched.The results indicate that the shear modulus of the outer soil has more influence on velocity admittance than the inner soil.The smaller the shear modulus,the larger the amplitude of velocity admittance.The velocity admittance weakened by the damping of the outer soil is more obvious than that weakened by the damping of the inner soil.The displacements of the piles with the same damping coefficients of the outer soil have less difference.Moreover,the effects of the distribution of soil layers are analyzed.The results indicate that the effect of the upper soil layer on dynamic response of the pipe pile is more obvious than that of the bottom soil layer.A larger damping coefficient of the upper layer results in a smaller velocity admittance.The dynamic response of the pipe pile in layered soil is close to that of the pipe pile in homogenous soil when the properties of the upper soil layer are the same. 展开更多
关键词 dynamic response large-diameter pipe pile layered soil velocity admittance dynamic stiffness
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Progressive collapse resisting capacity of reinforced concrete load bearing wall structures 被引量:1
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作者 Alireza Rahai Alireza Shahin Farzad Hatami 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2730-2738,共9页
Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthqu... Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthquakes, but also more economical. The effect of progressive collapse caused by removal of load bearing elements, in various positions in plan and stories of the RC load bearing wall system was evaluated by nonlinear dynamic and static analyses. For this purpose, three-dimensional model of 10-story structure was selected. The analysis results indicated stability, strength and stiffness of the RC load-bearing wall system against progressive collapse. It was observed that the most critical condition for removal of load bearing walls was the instantaneous removal of the surrounding walls located at the corners of the building where the sections of the load bearing elements were changed. In this case, the maximum vertical displacement was limited to 6.3 mm and the structure failed after applying the load of 10 times the axial load bored by removed elements. Comparison between the results of the nonlinear dynamic and static analyses demonstrated that the "load factor" parameter was a reasonable criterion to evaluate the progressive collapse potential of the structure. 展开更多
关键词 reinforced concrete(RC) load bearing wall structure progressive collapse fiber sections nonlinear analysis load factor method
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Dynamic analytic model of mechanism with links fabricated from symmetric laminates
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作者 蔡敢为 常平平 +2 位作者 马存志 王汝贵 李兆军 《Journal of Central South University of Technology》 EI 2006年第6期624-630,共7页
A four-bar linkage mechanism with links fabricated from symmetric laminates was studied. The mass matrix of the beam dement was obtained in light of the mass distribution characteristics of composite materials. The st... A four-bar linkage mechanism with links fabricated from symmetric laminates was studied. The mass matrix of the beam dement was obtained in light of the mass distribution characteristics of composite materials. The stiffness matrix of the beam element was derived from the constitutive equations of each layer and the relationship between the strain distribution and the node displacement of the beam element. The specific damping capacity of the beam element was analyzed according to the strain distribution of the beam element and the strain energy dissipation caused by vibration in each direction of each layer; and the damping coefficients were obtained according to the principle that the total energy dissipation of the beam element was equal to the work done by the equivalent damping force during a cycle of vibration, from which the damping matrix of the dynamic equations was obtained. Using the finite element method, the dynamic analytic model of the mechanism was obtained. The dynamic responses and natural frequency of the mechanism were obtained by simulation, respectively, and those of the simulation obtained by the proposed model were analyzed and compared with the results obtained by the conventional model. The work provides theoretical basis to a certain extent for the further research on nonlinear vibration characteristics and optimum design of this kind of mechanism. 展开更多
关键词 linkage mechanism finite element method composite materials DAMPING dynamic analysis
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深反射大炮揭示的青藏高原侧向碰撞带地壳骨架结构
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作者 酆少英 李秋生 +7 位作者 邓小娟 李井元 熊小松 卢占武 李文辉 王晓冉 吴庆宇 石金虎 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2020年第3期828-839,共12页
青藏高原东南缘处于印度板块与欧亚板块碰撞的侧翼,揭示该地区的岩石圈结构有助于完整理解青藏高原碰撞造山的动力学过程,对构建大陆碰撞成矿理论框架至为关键.本研究对横过青藏高原侧向碰撞带的一条深反射地震剖面的15个大炮资料,进行... 青藏高原东南缘处于印度板块与欧亚板块碰撞的侧翼,揭示该地区的岩石圈结构有助于完整理解青藏高原碰撞造山的动力学过程,对构建大陆碰撞成矿理论框架至为关键.本研究对横过青藏高原侧向碰撞带的一条深反射地震剖面的15个大炮资料,进行了针对性静校正、去噪等处理和单次叠加成像,结果剖面显示了侧向碰撞带岩石圈结构的骨架特征:(1)双程走时(TWT)8~10 s的强反射(Tc)将地壳分为上、下两层;Tc可能是大型滑脱构造的拆离面,其存在使上地壳的变形与下地壳解耦;(2)Moho间断面反射(Tm)为3~4个同相轴的窄带反射波组,横向不连续,与深大断裂交汇处被错断,但断距不大;(3)在兰坪—思茅地块下方TWT21 s和扬子克拉通西缘下方TWT22~24 s存在相向倾斜的反射波组(TL);以Tc、Tm和TL构成的骨架结构,定性地描绘出剖面下方岩石圈地幔以汇聚为主、地壳块体以侧向滑移为主和上地壳为薄皮逆冲或滑脱的分层动力学模式.该岩石圈变形样式明显不同于以正向碰撞挤压、地壳缩短垂向增厚为主的“冈底斯模式”. 展开更多
关键词 青藏高原侧向碰撞带 深反射地震剖面 大炮单次叠加剖面 地壳结构骨架 分层动力学模式
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