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Experiment study on water-rock interaction about gold activation and migration in different solutions 被引量:2
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作者 DAI Ta gen, GU Li, QIU Dong sheng, XIE Wen bing (College of Resources, Environment and Civil Engineering, Central South University, Changsha 410083, China) 《Journal of Central South University of Technology》 2001年第2期105-107,共3页
The interactions on gold active and migratory quantities and rates between tuffaceous slate and solu tions with different compositions were experimentally studied at 200 ℃, 20 MPa, in a high pressure apparatus. After... The interactions on gold active and migratory quantities and rates between tuffaceous slate and solu tions with different compositions were experimentally studied at 200 ℃, 20 MPa, in a high pressure apparatus. After reaction, tuffaceous slate became light colored and soft, and its mass density reduced. The amount of gold extracted from tuffaceous slate ranges widely, from 0 027 to 0 234 μg/g. Chlorine solution may activate appreciable amount of gold, and the gold migratory rate is high enough, from 50 70% to 92 30%, which reveals that sulphur and chlorine work together in solutions to accelerate gold activation and migration, and to realize gold mineralization in favorable places. 展开更多
关键词 water rock interaction ACTIVATION MIGRATION CHLORINE SULPHUR GOLD
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Seismic pseudo-static stability analysis of bedding jointed rock slope stability under the interaction of the upper dangerous rock mass and lower stepped slope mass based on acceleration assessment
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作者 LI De-jian XIAO Yu +3 位作者 YANG Yan-song YU Peng-cheng ZHANG Ying-bin ZHAO Lian-heng 《Journal of Central South University》 2025年第7期2619-2637,共19页
In the practical slope engineering,the stability of lower sliding mass(region A)with back tensile cracks of the jointed rock slope attracts more attentions,but the upper rock mass(region B)may also be unstable.Therefo... In the practical slope engineering,the stability of lower sliding mass(region A)with back tensile cracks of the jointed rock slope attracts more attentions,but the upper rock mass(region B)may also be unstable.Therefore,in this study,based on the stepped failure mode of bedding jointed rock slopes,considering the influence of the upper rock mass on the lower stepped sliding mass,the improved failure model for analyzing the interaction force(F_(AB))between two regions is constructed,and the safety factors(F_(S))of two regions and whole region are derived.In addition,this paper proposes a method to determine the existence of F_(AB) using their respective acceleration values(a_(A) and a_(B))when regions A and B are unstable.The influences of key parameters on two regions and the whole region are analyzed.The results show that the variation of the F_(AB) and F_(S) of two regions can be obtained accurately based on the improved failure model.The accuracy of the improved failure model is verified by comparative analysis.The research results can explain the interaction mechanism of two regions and the natural phenomenon of slope failure caused by the development of cracks. 展开更多
关键词 bedding jointed rock slope upper dangerous rock mass stepped sliding interaction mechanism stability analysis
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Influence of underground water seepage flow on surrounding rock deformation of multi-arch tunnel 被引量:11
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作者 李夕兵 张伟 +1 位作者 李地元 王其胜 《Journal of Central South University of Technology》 EI 2008年第1期69-74,共6页
Based on a typical multi-arch tunnel in a freeway, the fast Lagrangian analysis of continua in 3 dimensions(FLAC3D) was used to calculate the surrounding rock deformation of the tunnel under which the effect of underg... Based on a typical multi-arch tunnel in a freeway, the fast Lagrangian analysis of continua in 3 dimensions(FLAC3D) was used to calculate the surrounding rock deformation of the tunnel under which the effect of underground water seepage flow was taken into account or not. The distribution of displacement field around the multi-arch tunnel, which is influenced by the seepage field, was gained. The result indicates that the settlement values of the vault derived from coupling analysis are bigger when considering the seepage flow effect than that not considering. Through the contrast of arch subsidence quantities calculated by two kinds of computation situations, and the comparison between the calculated and measured value of tunnel vault settlement, it is found that the calculated value(5.7-6.0 mm) derived from considering the seepage effect is more close to the measured value(5.8-6.8 mm). Therefore, it is quite necessary to consider the seepage flow effect of the underground water in aquiferous stratum for multi-arch tunnel design. 展开更多
关键词 multi-arch tunnel underground water seepage flow coupling flow and stress surrounding rock deformation vault settlement
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Mechanism of action of cracks water on rock landslide in rainfall 被引量:2
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作者 吴永 何思明 李新坡 《Journal of Central South University》 SCIE EI CAS 2010年第6期1383-1388,共6页
In worldwide, the most common triggering factor of rock landslides is extended and intense rainfall. However, different from the soil slope failure caused by softening action of infiltration rainwater, the mechanism o... In worldwide, the most common triggering factor of rock landslides is extended and intense rainfall. However, different from the soil slope failure caused by softening action of infiltration rainwater, the mechanism of rock landslide in rainfall is not clear. From the view of fracture mechanics, the propagation of cracks on rock slope and the development of sliding surface were researched. Then based on hydraulics formulas and using Sweden arc method, the influence of crack water on stability of rock slope was quantitatively studied. Finally, an example was given to check the theoretical approach. The result shows that the development of sliding surface of rock slope is mainly caused by crack propagation under hydrostatic pressure when the stress intensity factor KI at crack tip is bigger than the toughness index of rock fractures Klc, and the failure of slope is the result of hydraulic action of crack water and the softening of materials on sliding surface when the depth of crack water is bigger than a minimum value hmin. 展开更多
关键词 crack water fracture mechanics PROPAGATION hydraulics Sweden arc method rock landslide
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Vibration analysis of fluid- structure interaction in water hammer based on transfer matrix method 被引量:1
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作者 GAO Hui TANG Xuelin 《排灌机械工程学报》 EI CSCD 北大核心 2016年第6期518-524,共7页
In consideration of the problem that the effect of conduit structure on water hammer has been ignored in the classical theory,the Poisson coupling between the fluid and the pipeline was studied and a fourteen-equation... In consideration of the problem that the effect of conduit structure on water hammer has been ignored in the classical theory,the Poisson coupling between the fluid and the pipeline was studied and a fourteen-equation mathematical model of fluid-structure interaction(FSI)was developed.Then,the transfer matrix method(TMM)was used to calculate the modal frequency,modal shape and frequency response.The results were compared with that in experiment to verify the correctness of the TMM and the results show that the fluid-structure coupling has a greater impact on the modal frequencies than the modal shape.Finally,the influence on the response spectrum of different damping ratios was studied and the results show that the natural frequency under different damping ratios has changed little but there is a big difference for the pressure spectrum.With the decreasing of damping ratio,the damping of the system on frequency spectrum is more and more significant and the dispersion and dissipation is more and more apparent.Therefore the appropriate damping ratio should be selected to minimize the effects of the vibration of the FSI.The results provide references for the theory research of FSI in the transient process. 展开更多
关键词 water hammer fluid-structure interaction transfer matrix method vibration analysis
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Performance of recycling abrasives in rock cutting by abrasive water jet 被引量:2
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作者 Gokhan Aydin 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1055-1061,共7页
Rock cutting performance of recycling abrasives was investigated in terms of cutting depth, kerf width, kerf taper angle and surface roughness. Gravity separation technique was employed to separate the abrasives and t... Rock cutting performance of recycling abrasives was investigated in terms of cutting depth, kerf width, kerf taper angle and surface roughness. Gravity separation technique was employed to separate the abrasives and the rock particles. The recycling abrasive particles were then dried and sieved for determination of their disintegration behaviors. Before each cutting with recycling abrasives, the abrasive particles less than 106 ?m were screened out. It is revealed that a considerable amount of used abrasives can be effectively reused in the rock cutting. The reusabilities of abrasives are determined as 81.77%, 57.50%, 34.37% and 17.72% after the first, second, third and fourth cuttings, respectively. Additionally, it is determined that recycling must be restricted three times due to the excessive disintegration of abrasives with further recycling. Moreover, it is concluded that cutting depth, kerf width and surface roughness decreases with recycling. No clear trend is found between the kerf taper angle and recycling. Particle size distribution is determined as an important parameter for improving the cutting performance of recycling abrasives. 展开更多
关键词 abrasive water jet rock abrasive recycling
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Effects of water intrusion and loading rate on mechanical properties of and crack propagation in coal–rock combinations 被引量:12
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作者 陈田 姚强岭 +4 位作者 卫斐 种照辉 周健 王常彬 李静 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第2期423-431,共9页
Tackling the problems of underground water storage in collieries in arid regions requires knowledge of the effect of water intrusion and loading rate on the mechanical properties of and crack development in coal–rock... Tackling the problems of underground water storage in collieries in arid regions requires knowledge of the effect of water intrusion and loading rate on the mechanical properties of and crack development in coal–rock combinations. Fifty-four coal–rock combinations were prepared and split equally into groups containing different moisture contents(dry, natural moisture and saturated) to conduct acoustic emission testing under uniaxial compression with loading rates ranging from 0.1 mm/min to 0.6 mm/min. The results show that the peak stress and strength-softening modulus, elastic modulus, strain-softening modulus, and post-peak modulus partly decrease with increasing moisture content and loading rate. In contrast, peak strain increases with increasing moisture content and fluctuates with rising loading rate. More significantly, the relationship between stiffness and stress, combined with accumulated counts of acoustic emission, can be used to precisely predict all phases of crack propagation. This is helpful in studying the impact of moisture content and loading rate on crack propagation and accurately calculating mechanical properties. We also determined that the stress thresholds of crack closure, crack initiation, and crack damage do not vary with changes of moisture content and loading rate, constituting 15.22%, 32.20%, and 80.98% of peak stress, respectively. These outcomes assist in developing approaches to water storage in coal mines, determining the necessary width of waterproof coal–rock pillars, and methods of supporting water-enriched roadways, while also advances understanding the mechanical properties of coal–rock combinations and laws of crack propagation. 展开更多
关键词 water intrusion loading rate mechanical properties coal-rock combination crack propagation stress threshold
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A novel experimental system for performance evaluation of water powered percussive rock drill
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作者 李夕兵 李志国 +1 位作者 周梓荣 刘希灵 《Journal of Central South University》 SCIE EI CAS 2011年第6期1902-1909,共8页
A set of water powered excavation test system was developed for the comprehensive performance testing and evaluation of water powered percussive rock drill indoors. The whole system contains hydraulic power section, e... A set of water powered excavation test system was developed for the comprehensive performance testing and evaluation of water powered percussive rock drill indoors. The whole system contains hydraulic power section, electronic control system, test and data acquisition system, and assistant devices, such as guideway and drilling bench. Parameters of the water powered percussive rock drill can be obtained by analyzing testing data, which contain impact energy, front and back cavity pressure, pressure and flow in each working part, drilling velocity, frequency and energy efficiency etc. The system is applied to test the self-designed water powered percussive rock drill SYYG65. The parameters of water powered percussive rock drill with impact pressure of about 8.9 MPa are 58.93 J for impact energy, and 8.97% for energy efficiency, which prove the effectiveness of system. 展开更多
关键词 water powered percussive rock drill performance test water powered excavation comprehensive evaluation
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Surface-covering water significantly amplifies the explosion impulse of shallow buried explosives 被引量:1
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作者 Zhenyu Zhao Wenbo Gao +6 位作者 Jianwei Ren Zihan Lan Zhiyang Zhang Huiyao Gao Chao He Changye Ni Tianjian Lu 《Defence Technology(防务技术)》 2025年第6期156-172,共17页
While the moisture content of soil affects significantly the blast impulse of shallow buried explosives,the role of surface-covering water(SCW)on soil in such blast impulse remains elusive.A combined experimental and ... While the moisture content of soil affects significantly the blast impulse of shallow buried explosives,the role of surface-covering water(SCW)on soil in such blast impulse remains elusive.A combined experimental and numerical study has been carried out to characterize the effect of SCW on transferred impulse and loading magnitude of shallow buried explosives.Firstly,blast tests of shallow buried explosives were conducted,with and without the SCW,to quantitatively assess the blast loading impulse.Subsequently,finite element(FE)simulations were performed and validated against experimental measurement,with good agreement achieved.The validated FE model was then employed to predict the dynamic response of a fully-clamped metallic circular target,subjected to the explosive impact of shallow buried explosives with SCW,and explore the corresponding physical mechanisms.It was demonstrated that shallow buried explosives in saturated soil generate a greater impulse transferred towards the target relative to those in dry soil.The deformation displacement of the target plate is doubled.Increasing the height of SCW results in enhanced center peak deflection of the loaded target,accompanied by subsequent fall,due to the variation of deformation pattern of the loaded target from concentrated load to uniform load.Meanwhile,the presence of SCW increases the blast impulse transferred towards the target by three times.In addition,there exists a threshold value of the burial depth that maximizes the impact impulse.This threshold exhibits a strong sensitivity to SCW height,decreasing with increasing SCW height.An empirical formula for predicting threshold has been provided.Similar conclusions can be drawn for different explosive masses.The results provide technical guidance on blast loading intensity and its spatial distribution considering shallow buried explosives in coast-land battlefields,which can ultimately contribute to better protective designs. 展开更多
关键词 Shallow buried explosives Fluid-structure interaction Surface-covering water Impulse distribution
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葛洲坝库区裂隙河岸地表水地下水交互特征
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作者 文章 李一鸣 +3 位作者 郭绪磊 万坦 罗清树 周宏 《地学前缘》 北大核心 2026年第1期1-13,共13页
地表水地下水交互是流域水循环与物质迁移的关键过程,其机制取决于河岸带含水层结构与水动力特征的精细刻画。现有研究多聚焦于沉积河岸带,而岩溶裂隙河岸带因介质非均质性与流动路径复杂性,其交互机制仍存在认知空白。本研究以葛洲坝... 地表水地下水交互是流域水循环与物质迁移的关键过程,其机制取决于河岸带含水层结构与水动力特征的精细刻画。现有研究多聚焦于沉积河岸带,而岩溶裂隙河岸带因介质非均质性与流动路径复杂性,其交互机制仍存在认知空白。本研究以葛洲坝库区南岸典型裂隙河岸带为靶区,通过钻孔监测网络解析地下水对长江水位波动的响应模式,并构建三维基岩裂隙溶蚀宽大裂隙耦合数值模型,定量刻画双层裂隙含水系统的水量交换过程。主要结论如下:(1)研究区地下水赋存体系为双层裂隙含水层系统复合3条宽大裂隙密集带。地下水动态受长江水位的调控较为明显;(2)深层含水层排泄量大于浅层含水层;(3)宽大裂隙是地下水赋存迁移以及与长江进行水量交换的主要通道,其排泄量比基岩裂隙含水层高3个量级;(4)宽大裂隙是浅、深层裂隙含水层之间水量交换的主要通道。本研究定量刻画了裂隙河岸带双层裂隙岩溶耦合系统的交互通量与通道效应,为基岩区河岸带水资源精细管理和长江大保护提供了可直接落地的科学依据与技术范式。 展开更多
关键词 葛洲坝库区 地表水地下水交互 裂隙河岸带 数值模拟
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云冈石窟黄土覆盖层对水盐运移的阻滞作用研究
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作者 欧阳恺皋 闫宏彬 +7 位作者 蒋小伟 李娜 张少优 牛然 杨曦 唐旭霖 迟华清 万力 《地学前缘》 北大核心 2026年第1期135-142,共8页
大气降水向岩土体入渗是自然界的普遍现象,由于砂岩和黄土的水力学参数差异显著、砂岩含水率监测困难,限制了人们关于两者对降水入渗响应规律的认识。本文以我国北方云冈石窟为例,利用频域反射技术在4窟顶部裸露砂岩(洞窟内可以发生降... 大气降水向岩土体入渗是自然界的普遍现象,由于砂岩和黄土的水力学参数差异显著、砂岩含水率监测困难,限制了人们关于两者对降水入渗响应规律的认识。本文以我国北方云冈石窟为例,利用频域反射技术在4窟顶部裸露砂岩(洞窟内可以发生降雨入渗引发的渗水)、9窟山顶黄土(洞窟内未发生降雨入渗引发的渗水)分别开展多个深度含水率监测,对比二者对降雨事件的差异响应,同时采集洞窟壁面含风化产物岩石样品并利用X射线衍射仪(X-ray Diffractometer,XRD)开展矿物组分检测。监测表明,浅表层砂岩(深度10 cm)对大于10 mm的降雨事件可发生快速响应,含水率显著增大并接近饱和,而同等强度降雨仅能引起同等深度表层黄土(深度10 cm)饱水度达到约0.75,而220 cm处几乎无响应。矿物组分检测结果表明,历史上酸雨入渗至4窟,导致SO_(4)^(2-)的富集并形成泻利盐,进而主导了盐风化;前人于20世纪60年代采集的风化产物样品、近期的5~10窟壁面风化产物均未检测到硫酸盐,表明在顶部黄土的防渗作用下,洞窟未受酸雨入渗影响。本研究通过对比裸露砂岩和黄土对降雨事件的响应、有无黄土覆盖层洞窟的风化产物差异,揭示了黄土覆盖层具有很好的防渗性能,可以为未来的洞窟内文物保护提供决策依据。 展开更多
关键词 岩石风化 岩石含水率 水盐运移 降雨入渗 XRD检测
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镁同位素示踪陆地水体水岩作用:研究进展与展望
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作者 王芮 蒋小伟 姬韬韬 《地学前缘》 北大核心 2026年第1期143-151,共9页
镁(Mg)通常是陆地水体中的主量元素,多种水岩反应可能引起Mg同位素明显的质量分馏,因此Mg同位素具有示踪水岩反应的潜力。本文系统综述了硅酸盐、碳酸盐、蒸发盐和雨水端员的Mg同位素组成特征,指出硅酸盐具有较大δ^(26)Mg值,碳酸盐具... 镁(Mg)通常是陆地水体中的主量元素,多种水岩反应可能引起Mg同位素明显的质量分馏,因此Mg同位素具有示踪水岩反应的潜力。本文系统综述了硅酸盐、碳酸盐、蒸发盐和雨水端员的Mg同位素组成特征,指出硅酸盐具有较大δ^(26)Mg值,碳酸盐具有较小δ^(26)Mg值,各种蒸发盐δ^(26)Mg值变化范围较大,雨水δ^(26)Mg值则常受到局地环境的制约,这些端员的混合作用决定了水体的初始δ^(26)Mg值;黏土形成、碳酸盐沉淀、吸附和离子交换以及植物吸收等可去除水体中的Mg并产生Mg同位素分馏,其中,蒙脱石等黏土矿物形成、吸附以及植物吸收引起水体26 Mg贫化,绿泥石等黏土矿物形成、离子交换和碳酸盐沉淀引起水体26 Mg富集。地下水与河水的赋存环境和水岩反应时间差异也会影响水体δ^(26)Mg值,河水更新速度快,其Mg同位素组成主要受硅酸盐与碳酸盐矿物溶解、黏土形成、离子交换等过程控制;地下水更新速度慢,水岩反应也更加充分,其Mg同位素组成还可能受吸附作用控制。在径流距离较长的区域尺度含水层中,Mg同位素可以示踪碳酸盐岩和硅酸盐岩含水层流动路径上的多种水岩反应,水岩反应类型受矿物种类控制。本文对Mg同位素在水岩反应示踪方面的应用提出展望:(1)未来可考虑与K同位素联用,加强河水中吸附作用的识别;(2)加强不同岩性、不同尺度含水层中地下水Mg同位素沿流动路径的变化规律研究。 展开更多
关键词 MG同位素 水岩相互作用 河水 地下水 同位素分馏 吸附作用
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Energy analysis of rock plug thickness in karst tunnels based on non-associated flow rule and nonlinear failure criterion 被引量:7
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作者 YANG Zi-han ZHANG Rui +1 位作者 XU Jing-shu YANG Xiao-li 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2940-2950,共11页
The geological hazards, such as water inrush and mud outburst, are easily induced by the high water pressure caverns ahead of a karst tunnel face. Therefore, it is a pivotal issue to determine the reserved thickness o... The geological hazards, such as water inrush and mud outburst, are easily induced by the high water pressure caverns ahead of a karst tunnel face. Therefore, it is a pivotal issue to determine the reserved thickness of rock plug during the construction of tunnels. The limit analysis principle is employed to analyze the safe thickness from the point of energy dissipation, and the nonlinear and non-associated characteristics of geotechnical materials are both considered. On the basis of a plane failure pattern of rock plug, the expressions of detaching curve and rock plug thickness are derived. The effect of each parameter on the safe thickness of rock plug is discussed in detail, which interprets the corresponding failure scope of rock plug. The obtained results indicate that the thickness of rock plug is highly influenced by the nonlinear dilatancy coefficient and the nonlinear coefficient. The proposed method is validated by a comparison of the calculated results with those of the engineering project of the "526 karst cavern" of Yunwushan tunnel. This proposed method can provide reference basis for the design and excavation of karst tunnels in the future. 展开更多
关键词 karst tunnel water inrush safe thickness of rock plug upper bound theorem nonlinear failure criterion non-associated flow rule
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Water inflow forecasting for tunnel considering nonlinear variation of permeability coefficient 被引量:1
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作者 CHENG Pan ZHAO Lian-heng +4 位作者 ZHANG Shao-wei LI Liang SHEN Zhi-qiang NING Peng-fei ZHANG Ze-hai 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第7期1612-1618,共7页
To assess the water inflow which is more suitable to the actual conditions of tunnel,an empirical correlation about the permeability coefficient changing with depth is introduced.Supposing that the surrounding rock is... To assess the water inflow which is more suitable to the actual conditions of tunnel,an empirical correlation about the permeability coefficient changing with depth is introduced.Supposing that the surrounding rock is heterogeneous isotropy,the formula for calculating water inflow of tunnel with the nonlinear variation of permeability coefficient is deduced.By the contrast analysis with the existing formulas,the presented method has the similar value to them;moreover,the presented method has more simple form and easy to use.Due to parameter analysis,the water inflow decreases after considering the nonlinear variation of permeability coefficient.When the attenuation coefficient a>0,the water inflow increases first till reaches the maximum at a certain depth,then decreases and is close to 0 finally if deep enough.Thus,it is better to keep away from the certain depth where it is with the maximum water inflow for safe operation and economical construction,and reduce the water damage.Based on the analysis,the radius of tunnel has less impact on the amount of water inflow,and the water inflow just increases by 6.7% when the radius of tunnel increases by 1 m. 展开更多
关键词 water INFLOW forecasting heterogeneous ISOTROPY of SURROUNDING rock PERMEABILITY COEFFICIENT TUNNEL
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基于RhoA/ROCK通路探究复方中药对腹水综合征肉鸡肝纤维化的影响 被引量:1
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作者 王慧敏 崔亮 +6 位作者 韩宇峰 张剑 王珂瑶 邓瑞强 康杰 郭东清 段智变 《东北农业大学学报》 CAS CSCD 北大核心 2023年第5期47-54,共8页
为探讨复方中药水提液通过RhoA/ROCK通路对肉鸡腹水综合征(AS)肝纤维化的影响作用,将100羽7日龄罗斯肉鸡,随机平均分成空白组(K组),AS模型组(M组),复方中药水提液高、低剂量组(G、D组)以及L-精氨酸组(L-Arg组)5组。观察整体状态并记录15... 为探讨复方中药水提液通过RhoA/ROCK通路对肉鸡腹水综合征(AS)肝纤维化的影响作用,将100羽7日龄罗斯肉鸡,随机平均分成空白组(K组),AS模型组(M组),复方中药水提液高、低剂量组(G、D组)以及L-精氨酸组(L-Arg组)5组。观察整体状态并记录15、25、35日龄肉鸡体重及35日龄腹水心脏指数(AHI);于35日龄剖检,取肝脏部分用于Masson染色观察胶原纤维变化,部分用于实时荧光定量PCR检测MYPT1 mRNA相对表达量和ELISA检测RhoA、ROCK、MLCP、P-MLC蛋白含量。与K组相比,M组AS肉鸡精神萎靡,腹部着地,腹腔内有大量腹水,Masson染色可观察到胶原纤维堆积,发生纤维化,15、25、35日龄M组肉鸡体重极显著降低(P<0.01),35日龄,M组肉鸡AHI和RhoA、ROCK、P-MLC蛋白含量极显著升高(P<0.01),MYPT1 mRNA表达显著升高(P<0.05),(Myosin light chain phosphatase,MLCP)蛋白活性极显著降低(P<0.01)。与M组相比,G、D组和L-Arg组肉鸡以上症状及各指标均有不同程度减轻,且G组作用效果明显。复方中药水提液和L-Arg可通过RhoA/ROCK通路,抑制肝纤维化,有效防治AS。 展开更多
关键词 肉鸡腹水综合征 肝纤维化 RhoA/rock 复方中药水提液 L-ARG
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Risk assessment of floor water inrush in coal mines based on MFIM-TOPSIS variable weight model 被引量:9
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作者 ZHANG Guan-da XUE Yi-guo +3 位作者 BAI Cheng-hao SU Mao-xin ZHANG Kai TAO Yu-fan 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2360-2374,共15页
Floor water inrush is one of the main types of coal mine water hazards.With the development of deep mining,the prediction and evaluation of floor water inrush is particularly significant.This paper proposes a variable... Floor water inrush is one of the main types of coal mine water hazards.With the development of deep mining,the prediction and evaluation of floor water inrush is particularly significant.This paper proposes a variable weight model,which combines a multi-factor interaction matrix(MFIM)and the technique for order performance by similarity to ideal solution(TOPSIS)to implement the risk assessment of floor water inrush in coal mines.Based on the MFIM,the interaction between seven evaluation indices,including the confined water pressure,water supply condition and aquifer water yield property,floor aquifuge thickness,fault water transmitting ability,fracture development degree,mining depth and thickness and their influence on floor water inrush were considered.After calculating the constant weights,the active degree evaluation was used to assign a variable weight to the indices.The values of the middle layer and final risk level were obtained by TOPSIS.The presented model was successfully applied in the 9901 working face in the Taoyang Mine and four additional coal mines and the results were highly consistent with the engineering situations.Compared with the existing nonlinear evaluation methods,the proposed model had advantages in terms of the weighting,principle explanation,and algorithm structure. 展开更多
关键词 floor water inrush risk assessment multi-factor interaction matrix(MFIM) technique for order performance by similarity to ideal solution(TOPSIS) variable weight
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Developments of numerical methods for linear and nonlinear fluid-solid interaction dynamics with applications 被引量:9
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作者 Jing Tang XING 《力学进展》 EI CSCD 北大核心 2016年第1期95-139,共45页
关键词 linear and nonlinear fluid-solid interactions MIXED FE-substructuremethod MIXED FE-BE METHOD MIXED FE-FD METHOD MIXED FE-SP METHOD fluidsloshing acoustic volume—structure coupling breaking WAVE simulations pressurewaves in fluids LNG ship VLFS-water interaction WAVE energy harvesting
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巫山段岸坡水岩劣化特征及危岩失稳破坏模式 被引量:3
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作者 刘新荣 罗新飏 +4 位作者 郭雪岩 周小涵 王浩 许彬 郑颖人 《工程地质学报》 北大核心 2025年第1期240-257,共18页
消落带干湿循环,江水、地下水的渗流、溶蚀等现象表明三峡库区长期处于频繁的水活动环境中。在复杂的水文地质环境下,巫山段岸坡内形成多处危岩体,存在较大发生地质灾害的可能性。本文主要对三峡库区巫山段岸坡危岩进行了实地调研,结合... 消落带干湿循环,江水、地下水的渗流、溶蚀等现象表明三峡库区长期处于频繁的水活动环境中。在复杂的水文地质环境下,巫山段岸坡内形成多处危岩体,存在较大发生地质灾害的可能性。本文主要对三峡库区巫山段岸坡危岩进行了实地调研,结合调研结果与地质资料,明确了该段内的水岩劣化特征、岸坡危岩分布及类型、危岩稳定性影响因素和失稳破坏模式。结果表明,段内消落带具有明显的水岩物理、化学、应力劣化特征,且3类水岩作用共同影响着消落带的形态、强度以及岸坡的稳定性。巫山段岸坡危岩的形成主要受到地质结构因素、环境因素与时间效应的综合影响,危岩类型可概化为塔柱状、板状、楔形状、排柱状4类。岸坡危岩稳定性关键影响因素主要为消落带岩体劣化、软弱夹层、后缘深大裂隙、库水诱发地震与其他环境因素,与水岩劣化作用联系紧密。提出了4类岸坡危岩失稳破坏模式:基座溃屈型、滑移型、倾倒型(渐进倾倒)、溶蚀坠落型,并对巫山段岸坡危岩的防治措施提出一定的建议。 展开更多
关键词 三峡库区 岸坡危岩 水岩劣化 失稳破坏 灾害防治
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西北地区地下水依赖型植被生态水文过程研究进展与展望 被引量:3
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作者 尹立河 王平 +4 位作者 王田野 乔冈 马洪云 张俊 董佳秋 《西北地质》 北大核心 2025年第2期16-30,共15页
植被与地下水之间的关系是人与自然和谐共生的关键科学问题。西北旱区广泛分布地下水依赖型植被,部分地区人类活动造成的水位下降已超过其生态水位阈值,导致生态功能受损,甚至植被大面积枯死,严重威胁区域经济社会可持续发展。笔者基于... 植被与地下水之间的关系是人与自然和谐共生的关键科学问题。西北旱区广泛分布地下水依赖型植被,部分地区人类活动造成的水位下降已超过其生态水位阈值,导致生态功能受损,甚至植被大面积枯死,严重威胁区域经济社会可持续发展。笔者基于国内外在区域地下水依赖型植被的识别、生态韧性评价、植被-地下水协同演化以及地下水生态水位确定等4个方面的最新研究进展,总结了当前研究存在的主要问题和亟待解决的难题,并指出未来研究应当关注的重点方向。综合分析表明,西北地区流域尺度地下水依赖型植被的识别研究相对较少,而对识别结果进行地面验证的稳定同位素方法还需改进;生态韧性研究多注重地表生态与环境指标,而忽略了地下水、根系布等地下指标,缺少基于抵抗力、恢复力和适应力的生态韧性综合评价,以定性评价为主的研究不能满足生态保护修复的需要;植被-地下水协同演化研究受限于不能精准探测根系变化,根系动态探测技术及刻画根系-水源协同变化的模型有待进一步发展;生态水位主要是基于现状条件确定的静态水位,对受降水和地下水侧向补给影响下的水位变化空间差异以及植物自身适应性考虑不足,还需研究外界条件改变下的动态生态水位。通过梳理西北地区地下水依赖型植被生态水文过程研究进展,指出当前研究的薄弱研究环节和面临的问题,为进一步开展西北旱区生态水文理论研究与实践提供了依据。 展开更多
关键词 地下水依赖型植被 西北地区 生态韧性 生态水位 植被与地下水相互作用
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微咸水灌溉与施肥方式对盐碱地水稻生理特性、产量及品质的互作效应 被引量:1
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作者 王璐 侯红燕 +2 位作者 胡鑫慧 郭洪海 贾曦 《节水灌溉》 北大核心 2025年第3期84-90,99,共8页
探索黄河三角洲滨海滩涂微咸水与淡水联合灌溉对水稻生理生长特性及品质的影响。以‘圣香1826’为试验材料,设置主区为淡水灌溉(FI,全生育期均灌溉淡水)、微咸水-淡水联合灌溉(BFI,插秧后至分蘖前灌溉淡水,分蘖期至成熟期补灌微咸水)2... 探索黄河三角洲滨海滩涂微咸水与淡水联合灌溉对水稻生理生长特性及品质的影响。以‘圣香1826’为试验材料,设置主区为淡水灌溉(FI,全生育期均灌溉淡水)、微咸水-淡水联合灌溉(BFI,插秧后至分蘖前灌溉淡水,分蘖期至成熟期补灌微咸水)2种灌溉制度;裂区为5种施肥方式T1(常规施肥,当地习惯施肥N 300 kg/hm^(2))、T2(减N20%,N240 kg/hm^(2))、T3(减N20%,穗肥增施K,N240 kg/hm^(2)+K36 kg/hm^(2))、T4(减N20%,蘖肥增施Ca,N240 kg/hm^(2)+Ca18 kg/hm^(2))、T5(减N20%增施K和Ca,N240 kg/hm^(2)+K36 kg/hm^(2)+Ca 18 kg/hm^(2))。结果表明,BFIT5处理可以显著的延长水稻的营养生长期与生殖生长期,Ca肥补施,使水稻植株Na^(+)含量降低24.35%(P<0.05)、K+含量提高20.20%、Na^(+)/K^(+)降低、过氧化氢酶(CAT)含量升高13.06%、脯氨酸(Pro)含量升高20.69%、可溶性糖含量升高了9.19%,提高了植株的抗性;BFIT5处理使水稻的有效穗数提高30.1%、穗总粒数提高7.2%、穗实粒数提高38.2%、结实率提高28.9%、产量提高38.2%、稻米的食味值增加6、崩解值升高、消减值降低、蒸煮品质升高。在分蘖期开始浇灌微咸水,且减少常规施氮量的20%、增施K和Ca肥,节约稻田用淡水的同时提高了微咸水资源的利用效率,具有重要的实践意义。 展开更多
关键词 微咸水灌溉 水稻 水肥耦合 生理特性 水肥互作
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