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夏呀河多级滑坡三维稳定性模拟分析研究 被引量:5
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作者 何淑军 刘景儒 +2 位作者 吴树仁 张春山 叶思源 《铁道工程学报》 EI 北大核心 2011年第11期24-29,共6页
研究目的:为了再现夏呀河滑坡滑动过程及其形成,对夏呀河滑坡进行三维地质模拟计算分析并与采用基于蒙特卡罗法的多级黄土滑坡可靠性分析结果进行对比研究。研究结论:研究结果表明:天然状态下,模拟计算的1、2、3、4级滑面的安全系数分别... 研究目的:为了再现夏呀河滑坡滑动过程及其形成,对夏呀河滑坡进行三维地质模拟计算分析并与采用基于蒙特卡罗法的多级黄土滑坡可靠性分析结果进行对比研究。研究结论:研究结果表明:天然状态下,模拟计算的1、2、3、4级滑面的安全系数分别为1.27、1.30、1.56和1.73,说明在给定的滑动面空间形态和天然状态各岩土力学参数条件下,4个滑面都不会出现失稳现象;当岩土参数按照饱和状态参数模拟计算的1、2、3、4级滑面的安全系数分别为0.96、1.15、1.48和1.60,若将安全系数fs=1.2作为临界值,则在饱和状态下,1级滑面出现明显的失稳现象,2级滑面安全系数为1.15,处在失稳的边缘,3、4级滑面安全系数大于1.2,处于稳定状态。与采用基于蒙特卡罗法的多级黄土滑坡可靠性分析的结果基本一致。 展开更多
关键词 夏呀河滑坡 三维稳定性模拟 强度折减法 摩尔-库伦准则 有限单元法
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宽肩台防波堤稳定性数值模拟方法研究 被引量:1
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作者 李彦卿 别社安 《海洋通报》 CAS CSCD 北大核心 2020年第6期740-749,共10页
宽肩台堆石堤是海岸工程中的一种海堤形式,其以结构简单、施工快捷、布局灵活和造价经济的特点在工程中得到了广泛应用。宽肩台防波堤以堆积块石为主体,在海区波浪作用下达到稳定的堆积结构。进行宽肩台式防波堤稳定性的研究是设计宽肩... 宽肩台堆石堤是海岸工程中的一种海堤形式,其以结构简单、施工快捷、布局灵活和造价经济的特点在工程中得到了广泛应用。宽肩台防波堤以堆积块石为主体,在海区波浪作用下达到稳定的堆积结构。进行宽肩台式防波堤稳定性的研究是设计宽肩台防波堤的重要基础。介绍了波浪水槽的光滑粒子动力学(SPH)理论和建立方法,验证了造波结果。提出了一种块石单元法(GEM)模式,以块石单元为独立刚体来模拟宽肩台防波堤上的块石在波浪作用下的受力状态和运动过程。建立了一种垂向二维光滑粒子动力学方法SPH与GEM耦合的波浪和块石模型,采用SPH与GEM相结合,对防波堤堆石孔隙外部的波浪运动和内部的孔隙环流进行模拟计算,并根据Forchheimer公式确定孔隙内部的压力。用SPH方法模拟堆石堤外部流场的波浪破碎压力,用孔隙环流模拟堆石堤内部的孔隙压力。使用耦合模式模拟了宽肩台防波堤孔隙流场,验证了孔隙压力分布。模拟了波浪作用于块石和块石对波浪动力响应过程,给出了静态平衡到动态平衡的流固场变化,模拟结果与物理模型试验结果基本一致。耦合模型的建立为宽肩台堆石堤的稳定性研究提供了理论依据,同时也为同类型工程研究提供了新思路。 展开更多
关键词 宽肩台防波堤 光滑粒子动力学方法(SPH) 块石单元法(GEM) 耦合数值模型 稳定性模拟
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Improved model-based study of backfill stress distribution considering rock-backfill closure,mine depth,and position along stope length
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作者 LIU Chun-kang WANG Hong-jiang +1 位作者 WU Ai-xiang LI Hao 《Journal of Central South University》 2025年第7期2717-2731,共15页
During upward horizontal stratified backfill mining,stable backfill is essential for cap and sill pillar recovery.Currently,the primary method for calculating the required strength of backfill is the generalized three... During upward horizontal stratified backfill mining,stable backfill is essential for cap and sill pillar recovery.Currently,the primary method for calculating the required strength of backfill is the generalized three-dimensional(3 D)vertical stress model,which ignores the effect of mine depth,failing to obtain the vertical stress at different positions along stope length.Therefore,this paper develops and validates an improved 3 D model solution through numerical simulation in Rhino-FLAC^(3D),and examines the stress state and stability of backfill under different conditions.The results show that the improved model can accurately calculate the vertical stress at different mine depths and positions along stope length.The error rates between the results of the improved model and numerical simulation are below 4%,indicating high reliability and applicability.The maximum vertical stress(σ_(zz,max))in backfill is positively correlated with the degree of rock-backfill closure,which is enhanced by mine depth and elastic modulus of backfill,while weakened by stope width and inclination,backfill friction angle,and elastic modulus of rock mass.Theσ_(zz,max)reaches its peak when the stope length is 150 m,whileσ_(zz,max)is insensitive to changes in rock-backfill interface parameters.In all cases,the backfill stability can be improved by reducingσ_(zz,max).The results provide theoretical guidance for the backfill strength design and the safe and efficient recovery of ore pillars in deep mining. 展开更多
关键词 BACKFILL mine depth rock-backfill closure stability maximum vertical stress numerical simulation
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杏山铁矿北排土场减载优化设计 被引量:2
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作者 宋志飞 辛晓平 +1 位作者 孙世国 徐秀鸣 《金属矿山》 CAS 北大核心 2013年第10期152-154,共3页
杏山矿北排土场下部有重要的工业广场,为了保证排土场的绝对安全,杏山矿北排土场需要进行减载,并确定最佳的减载方案。应用滑移场理论、数值模拟方法、极限平衡分析等方法进行了系统的研究和评价,并得到了相关的优化减载方案。最后得出... 杏山矿北排土场下部有重要的工业广场,为了保证排土场的绝对安全,杏山矿北排土场需要进行减载,并确定最佳的减载方案。应用滑移场理论、数值模拟方法、极限平衡分析等方法进行了系统的研究和评价,并得到了相关的优化减载方案。最后得出了排土场在常规条件和饱和条件2种工况时的稳定性结论。结果表明,减载后排土场稳定性显著提高。 展开更多
关键词 排土场 数值模拟极限平衡稳定性
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湖南省麻阳县石眼潭滑坡演变机制及破坏模式分析 被引量:2
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作者 罗冠枝 方琼 +2 位作者 徐忠 李明波 隋皓月 《东华理工大学学报(自然科学版)》 CAS 2023年第3期233-238,309,共7页
为了研究湖南省红层滑坡成灾机理和破坏模式,以湖南省麻阳县石眼潭滑坡为例,运用GeoStudio软件数值模拟方法,进行10年和20年峰值降雨的滑坡稳定性模拟分析。通过对该滑坡的演变机制和破坏模式研究发现,石眼潭滑坡属于蠕滑-拉裂破坏模式... 为了研究湖南省红层滑坡成灾机理和破坏模式,以湖南省麻阳县石眼潭滑坡为例,运用GeoStudio软件数值模拟方法,进行10年和20年峰值降雨的滑坡稳定性模拟分析。通过对该滑坡的演变机制和破坏模式研究发现,石眼潭滑坡属于蠕滑-拉裂破坏模式,提出了稳定性系数与滑面软化面积比的一元二次关系方程:在自重作用工况下,软化面积比为25.56%,斜坡稳定性较好;在20年一遇暴雨工况下,稳定性系数为0.883,软化面积比为92.05%,斜坡处于不稳定状态。当软化面积比大于61.28%时,斜坡发生破坏的概率较大,与野外调查结果基本符合,表明此关系方程适用于该类红层滑坡。研究结果可为该类红层滑坡稳定性分析和防灾减灾提供参考。 展开更多
关键词 红层滑坡 稳定性模拟分析 演变机制 破坏模式 软化面积比
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对力学科学处2004年和部分2003年重点、重大项目结题验收情况的简要介绍
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作者 孟庆国 詹世革 《力学进展》 EI CSCD 北大核心 2004年第3期427-429,共3页
2004年力学科学处共有3项重点项目需进行结题验收(见表1),按照<国家自然科学基金重点项目管理办法>的有关规定,对这些项目的验收工作已在今年上半年完成.
关键词 中国 力学科学处 自然科学基金 基金管理 “高维粒子输运和高温高密度流体不稳定性的数值模拟研究” “城市交通流研究”
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Numerical simulation for influence of excavation and blasting vibration on stability of mined-out area 被引量:11
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作者 徐国元 闫长斌 《Journal of Central South University of Technology》 EI 2006年第5期577-583,共7页
Dynamic analysis steps and general flow of fast lagrangian analysis of continua in 3 dimensions(FLAC3D) were discussed. Numerical simulation for influence of excavation and blasting vibration on stability of mined-out... Dynamic analysis steps and general flow of fast lagrangian analysis of continua in 3 dimensions(FLAC3D) were discussed. Numerical simulation for influence of excavation and blasting vibration on stability of mined-out area was carried out with FLAC3D. The whole analytical process was divided into two steps, including the static analysis and the dynamic analysis which were used to simulate the influence of excavation process and blasting vibration respectively. The results show that the shape of right upper boundary is extremely irregular after excavation, and stress concentration occurs at many places and higher tensile stress appears. The maximum tensile stress is higher than the tensile strength of rock mass, and surrounding rock of right roof will be damaged with tension fracture. The maximum displacement of surrounding rock is 4.75 mm after excavation. However, the maximum displacement increases to 5.47 mm after the blasting dynamic load is applied. And the covering area of plastic zones expands obviously, especially at the foot of right upper slope. The analytical results are in basic accordance with the observed results on the whole. Damage and disturbance on surrounding rock to some degree are caused by excavation, while blasting dynamic load increases the possibility of occurrence of dynamic instability and destruction further. So the effective supporting and vibration reducing measures should be taken during mining. 展开更多
关键词 mined-out area excavation process blasting vibration STABILITY numerical simulation FLAC3D
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Numerical analysis of deformation and failure characteristics of deep roadway surrounding rock under static-dynamic coupling stress 被引量:28
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作者 WU Xing-yu JIANG Li-shuai +3 位作者 XU Xing-gang GUO Tao ZHANG Pei-peng HUANG Wan-peng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第2期543-555,共13页
In actual production,deep coal mine roadways are often under typical static-dynamic coupling stress(SDCS)conditions with high ground stress and strong dynamic disturbances.With the increasing number of disasters and a... In actual production,deep coal mine roadways are often under typical static-dynamic coupling stress(SDCS)conditions with high ground stress and strong dynamic disturbances.With the increasing number of disasters and accidents induced by SDCS conditions,the safe and efficient production of coal mines is seriously threatened.Therefore,it is of great practical significance to study the deformation and failure characteristics of the roadway surrounding rock under SDCS.In this paper,the effects of different in-situ stress fields and dynamic load conditions on the surrounding rock are studied by numerical simulations,and the deformation and failure characteristics are obtained.According to the simulation results,the horizontal stress,vertical stress and dynamic disturbance have a positive correlation with the plastic failure of the surrounding rock.Among these factors,the influence of the dynamic disturbance is the most substantial.Under the same stress conditions,the extents of deformation and plastic failure of the roof and ribs are always greater than those of the floor.The effect of horizontal stresses on the roadway deformation is more notable than that of vertical stresses.The results indicate that for the roadway under high-stress conditions,the in-situ stress test must be strengthened first.After determining the magnitude of the in-situ stress,the location of the roadway should be reasonably arranged in the design to optimize the mining sequence.For roadways that are strongly disturbed by dynamic loads,rock supports(rebar/cable bolts,steel set etc.)that are capable of maintaining their effectiveness without failure after certain dynamic loads are required.The results of this study contribute to understanding the characteristics of the roadway deformation and failure under SDCS,and can be used to provide a basis for the support design and optimization under similar geological and geotechnical circumstances. 展开更多
关键词 static-dynamic coupling stress(SDCS) deep roadway surrounding rock stability numerical simulation roadway deformation plastic failure of surrounding rock
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Effects of different numerical algorithms on simulation of chemical dissolution-front instability in fluid-saturated porous rocks 被引量:3
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作者 ZHAO Chong-bin Bruce HOBBS Alison ORD 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第8期1966-1975,共10页
Many scientific and engineering problems need to use numerical methods and algorithms to obtain computational simulation results because analytical solutions are seldom available for them.The chemical dissolution-fron... Many scientific and engineering problems need to use numerical methods and algorithms to obtain computational simulation results because analytical solutions are seldom available for them.The chemical dissolution-front instability problem in fluid-saturated porous rocks is no exception.Since this kind of instability problem has both the conventional(i.e.trivial)and the unconventional(i.e.nontrivial)solutions,it is necessary to examine the effects of different numerical algorithms,which are used to solve chemical dissolution-front instability problems in fluid-saturated porous rocks.Toward this goal,two different numerical algorithms associated with the commonly-used finite element method are considered in this paper.In the first numerical algorithm,the porosity,pore-fluid pressure and acid/solute concentration are selected as basic variables,while in the second numerical algorithm,the porosity,velocity of pore-fluid flow and acid/solute concentration are selected as basic variables.The particular attention is paid to the effects of these two numerical algorithms on the computational simulation results of unstable chemical dissolution-front propagation in fluid-saturated porous rocks.The related computational simulation results have demonstrated that:1)the first numerical algorithm associated with the porosity-pressure-concentration approach can realistically simulate the evolution processes of unstable chemical dissolution-front propagation in chemical dissolution systems.2)The second numerical algorithm associated with the porosity-velocity-concentration approach fails to simulate the evolution processes of unstable chemical dissolution-front propagation.3)The extra differential operation is the main source to result in the failure of the second numerical algorithm. 展开更多
关键词 numerical algorithm chemical dissolution front instability computational simulation porous rocks
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Mechanical response and stability analysis of rock mass in high geostress underground powerhouse caverns subjected to excavation 被引量:20
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作者 LI Biao DING Quan-fu +4 位作者 XU Nu-wen LEI Yi-fan XU Yuan ZHU Zhong-ping LIU Jing-fei 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期2971-2984,共14页
To investigate the stability of rock mass in high geostress underground powerhouse caverns subjected to excavation,a microseismic(MS)monitoring system was established and the discrete element method(DEM)-based numeric... To investigate the stability of rock mass in high geostress underground powerhouse caverns subjected to excavation,a microseismic(MS)monitoring system was established and the discrete element method(DEM)-based numerical simulation was carried out.The tempo-spatial damage characteristics of rock mass were analyzed.The evolution laws of MS source parameters during the formation of a rock collapse controlled by high geostress and geological structure were investigated.Additionally,a three-dimensional DEM model of the underground powerhouse caverns was built to reveal the deformation characteristics of rock mass.The results indicated that the MS events induced by excavation of high geostress underground powerhouse caverns occurred frequently.The large-stake crown of the main powerhouse was the main damage area.Prior to the rock collapse,the MS event count and accumulated energy release increased rapidly,while the apparent stress sharply increased and then decreased.The amount and proportion of shear and mixed MS events remarkably increased.The maximum displacement was generally located near the spandrel areas.The MS monitoring data and numerical simulation were in good agreement,which can provide significant references for damage evaluation and disaster forecasting in high geostress underground powerhouse caverns. 展开更多
关键词 high geostress underground powerhouse caverns microseismic monitoring discrete element modelling stability analysis
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Stability and reliability of pit slopes in surface mining combined with underground mining in Tonglushan mine 被引量:10
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作者 罗一忠 吴爱祥 +1 位作者 刘湘平 王洪江 《Journal of Central South University of Technology》 EI 2004年第4期434-439,共6页
Slope stability is of critical importance in the process of surface-underground mining combination. The influence of underground mining on pit slope stability was mainly discussed, and the self-stabilization of underg... Slope stability is of critical importance in the process of surface-underground mining combination. The influence of underground mining on pit slope stability was mainly discussed, and the self-stabilization of underground stopes was also studied. The random finite element method was used to analyze the probability of the rock mass stability degree of both pit slopes and underground stopes. Meanwhile, 3D elasto-plastic finite element method was used to research into the stress, strain and rock mass failure resulting from mining. The results of numerical simulation indicate that the mining of the underground test stope has certain influence on the stability of the pit slope, but the influence is not great. The safety factor of pit slope is decreased by 0.06, and the failure probability of the pit slope is increased by 1.84%. In addition, the strata yielding zone exists around the underground test stope. The results basically conform to the information coming from the field monitoring. 展开更多
关键词 surface-underground mining combination STABILITY RELIABILITY random finite element method (numerical simulation)
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Stability analysis of cohesive soil embankment slope based on discrete element method 被引量:4
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作者 XU Guang-ji ZHONG Kun-zhi +2 位作者 FAN Jian-wei ZHU Ya-jing ZHANG Yu-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期1981-1991,共11页
In order to study the safety factor and instability process of cohesive soil slope, the discrete element method(DEM) was applied. DEM software PFC2 D was used to simulate the triaxial test to study the influence of th... In order to study the safety factor and instability process of cohesive soil slope, the discrete element method(DEM) was applied. DEM software PFC2 D was used to simulate the triaxial test to study the influence of the particle micro parameters on the macroscopic characteristics of cohesive soil and calibrate the micro parameters of DEM model on this basis. Embankment slope stability analysis was carried out by strength reduction and gravity increase method, it is shown that the safety factor obtained by strength reduction method is more conservative, and the arc-shaped feature of the sliding surface under the gravity increase method is more obvious. Throughout the progressive failure process, the failure trends, maximum displacements, and velocity changes obtained by the two methods were consistent. When slope was destroyed, the upper part was cracked, the middle part was sheared, and the lower part was destroyed by extrusion. The conclusions of this paper can be applied to the safety factor calculation of cohesive soil slopes and the analysis of the instability process. 展开更多
关键词 embankment slope cohesive soil stability analysis numerical simulation PFC2D software safety factor
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Orthogonal design and numerical simulation of room and pillar configurations in fractured stopes 被引量:7
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作者 吴爱祥 黄明清 +3 位作者 韩斌 王贻明 于少峰 缪秀秀 《Journal of Central South University》 SCIE EI CAS 2014年第8期3338-3344,共7页
Room and pillar sizes are key factors for safe mining and ore recovery in open-stope mining. To investigate the influence of room and pillar configurations on stope stability in highly fractured and weakened areas, an... Room and pillar sizes are key factors for safe mining and ore recovery in open-stope mining. To investigate the influence of room and pillar configurations on stope stability in highly fractured and weakened areas, an orthogonal design with two factors, three levels and nine runs was proposed, followed by three-dimensional numerical simulation using ANSYS and FLAC3~. Results show that surface settlement after excavation is concentrically ringed, and increases with the decrease of pillar width and distances to stope gobs. In the meantime, the ore-control fault at the ore-rock boundary and the fractured argillaceous dolomite with intercalated slate at the hanging wall deteriorate the roof settlement. Additionally, stope stability is challenged due to pillar rheological yield and stress concentration, and both are induced by redistribution of stress and plastic zones after mining. Following an objective function and a constraint function, room and pillar configuration with widths of 14 m and 16 m, respectively, is presented as the optimization for improving the ore recovery rate while maintaining a safe working environment. 展开更多
关键词 orthogonal design numerical simulation surface movement roof settlement stope stability room and pillarconfiguration
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Sensitivity analysis of geomechanical parameters affecting a wellbore stability 被引量:3
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作者 Abolfazl ABDOLLAHIPOUR Hamid SOLTANIAN +2 位作者 Yaser POURMAZAHERI Ezzatollah KAZEMZADEH Mohammad FATEHI-MARJI 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第3期768-778,共11页
Wellbore stability analysis is a growing concern in oil industries. There are many parameters affecting the stability of a wellbore including geomechanical properties (e.g., elastic modulus, uni-axial compressive stre... Wellbore stability analysis is a growing concern in oil industries. There are many parameters affecting the stability of a wellbore including geomechanical properties (e.g., elastic modulus, uni-axial compressive strength (UCS) and cohesion) and acting forces (e.g., field stresses and mud pressure). Accurate determination of these parameters is time-consuming, expensive and sometimes even impossible. This work offers a systematic sensitivity analysis to quantify the amount of each parameter’s effect on the stability of a wellbore. Maximum wellbore wall displacement is used as a stability factor to study the stability of a wellbore. A 3D finite difference method with Mohr model is used for the numerical modeling. The numerical model is verified against an analytical solution. A dimensionless sensitivity factor is developed in order to compare the results of various parameters in the sensitivity analysis. The results show a different order of importance of parameters based on rock strength. The most sensitive properties for a weak rock are the maximum horizontal stress, internal friction angle and formation pressure, respectively, while for a strong rock, the most sensitive parameters are the maximum horizontal stress, mud pressure and pore pressure, respectively. The amount of error in wellbore stability analysis inflicted by the error in estimation of each parameter was also derived. 展开更多
关键词 wellbore stability sensitivity analysis numerical modeling
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Effects of porosity heterogeneity on chemical dissolution-front instability in fluid-saturated rocks 被引量:4
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作者 ZHAO Chong-bin Peter SCHAUBS Bruce HOBBS 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第3期720-725,共6页
Homogeneity and heterogeneity are two totally different concepts in nature.At the particle length scale,rocks exhibit strong heterogeneity in their constituents and porosities.When the heterogeneity of porosity obeys ... Homogeneity and heterogeneity are two totally different concepts in nature.At the particle length scale,rocks exhibit strong heterogeneity in their constituents and porosities.When the heterogeneity of porosity obeys the random uniform distribution,both the mean value and the variance of porosities in the heterogeneous porosity field can be used to reflect the overall heterogeneous characteristics of the porosity field.The main purpose of this work is to investigate the effects of porosity heterogeneity on chemical dissolution front instability in fluid-saturated rocks by the computational simulation method.The related computational simulation results have demonstrated that:1) since the propagation speed of a chemical dissolution front is inversely proportional to the difference between the final porosity and the mean value of porosities in the initial porosity field,an increase in the extent of the porosity heterogeneity can cause an increase in the mean value of porosities in the initial porosity field and an increase in the propagation speed of the chemical dissolution front.2) An increase in the variance of porosities in the initial porosity field can cause an increase in the instability probability of the chemical dissolution front in the fluid-saturated rock.3) The greater the mean value of porosities in the initial porosity field,the quicker the irregular morphology of the chemical dissolution front changes in the supercritical chemical dissolution systems.This means that the irregular morphology of a chemical dissolution front grows quicker in a porosity field of heterogeneity than it does in that of homogeneity when the chemical dissolution system is at a supercritical stage. 展开更多
关键词 porosity heterogeneity chemical dissolution front instability computational simulation porous rocks
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