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Investigation of stress-induced progressive failure of mine pillars using a Voronoi grain-based breakable block model
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作者 Shili Qiu Shirui Zhang +3 位作者 Quan Jiang Shaojun Li Hao Zhang Qiankuan Wang 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第5期713-729,共17页
The Voronoi grain-based breakable block model(VGBBM)based on the combined finite-discrete element method(FDEM)was proposed to explicitly characterize the failure mechanism and predict the deformation behavior of hard-... The Voronoi grain-based breakable block model(VGBBM)based on the combined finite-discrete element method(FDEM)was proposed to explicitly characterize the failure mechanism and predict the deformation behavior of hard-rock mine pillars.The influence of the microscopic parameters on the macroscopic mechanical behavior was investigated using laboratory-scale models.The field-scale pillar models(width-to-height,W/H=1,2 and 3)were calibrated based on the empirically predicted stress-strain curves of Creighton mine pillars.The results indicated that as the W/H ratios increased,the VGBBM effectively predicted the transition from strain-softening to pseudo-ductile behavior in pillars,and explicitly captured the separated rock slabs and the V-shaped damage zones on both sides of pillars and conjugate shear bands in core zones of pillars.The volumetric strain field revealed significant compressional deformation in core zones of pillars.While the peak strains of W/H=1 and 2 pillars were relatively consistent,there were significant differences in the strain energy storage and release mechanism.W/H was the primary factor influencing the deformation and strain energy in the pillar core.The friction coefficient of the structural plane was also an important factor affecting the pillar strength and the weakest discontinuity angle.The fracture surface was controlled by the discontinuity angle and the friction coefficient.This study demonstrated the capability of the VGBBM in predicting the strengths and deformation behavior of hard-rock pillars in deep mine design. 展开更多
关键词 pillar strength FDEM Voronoi tessellation SPALLING BULKING
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Pillar effect induced by ultrahigh phosphorous/nitrogen doping enables graphene/MXene film with excellent cycling stability for alkali metal ion storage
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作者 Meng Qin Yiwei Yao +5 位作者 Junjie Mao Chi Chen Kai Zhu Guiling Wang Dianxue Cao Jun Yan 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期146-156,I0004,共12页
Graphene's large theoretical surface area and high conductivity make it an attractive anode material for potassium-ion batteries(PIBs).However,its practical application is hindered by small interlayer distance and... Graphene's large theoretical surface area and high conductivity make it an attractive anode material for potassium-ion batteries(PIBs).However,its practical application is hindered by small interlayer distance and long ion transfer distance.Herein,this paper aims to address the issue by introducing MXene through a simple and scalable method for assembling graphene and realizing ultrahigh P doping content.The findings reveal that MXene and P-C bonds have a "pillar effect" on the structure of graphene,and the P-C bond plays a primary role.In addition,N/P co-doping introduces abundant defects,providing more active sites for K^(+) storage and facilitating K^(+) adsorption.As expected,the developed ultrahigh phosphorous/nitrogen co-doped flexible reduced graphene oxide/MXene(NPrGM) electrode exhibits remarkable reversible discharge capacity(554 mA hg^(-1) at 0.05 A g^(-1)),impressive rate capability(178 mA h g^(-1) at 2 A g^(-1)),and robust cyclic stability(0.0005% decay per cycle after 10,000 cycles at 2 A g^(-1)).Furthermore,the assembled activated carbon‖NPrGM potassium-ion hybrid capacitor(PIHC) can deliver an impressive energy density of 131 W h kg^(-1) and stable cycling performance with 98.1% capacitance retention after5000 cycles at 1 A g^(-1).Such a new strategy will effectively promote the practical application of graphene materials in PIBs/PIHCs and open new avenues for the scalable development of flexible films based on two-dimensional materials for potential applications in energy storage,thermal interface,and electromagnetic shielding. 展开更多
关键词 GRAPHENE MXene Phosphorous doping pillar effect Potassium-ion batteries
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Estimating shear strength of high-level pillars supported with cemented backfilling using the HoekeBrown strength criterion
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作者 Kaizong Xia Congxin Chen +3 位作者 Xiumin Liu Yue Wang Xuanting Liu Jiahao Yuan 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第2期454-469,共16页
Deep metal mines are often mined using the high-level pillars with subsequent cementation backfilling(HLSCB)mining method.At the design stage,it is therefore important to have a reasonable method for determining the s... Deep metal mines are often mined using the high-level pillars with subsequent cementation backfilling(HLSCB)mining method.At the design stage,it is therefore important to have a reasonable method for determining the shear strength of the high-level pillars(i.e.cohesion and internal friction angle)when they are supported by cemented backfilling.In this study,a formula was derived for the upper limit of the confining pressure σ3max on a high-level pillar supported by cemented backfilling in a deep metal mine.A new method of estimating the shear strength of such pillars was then proposed based on the Hoek eBrown failure criterion.Our analysis indicates that the horizontal stress σhh acting on the cemented backfill pillar can be simplified by expressing it as a constant value.A reasonable and effective value for σ3max can then be determined.The value of s3max predicted using the proposed method is generally less than 3 MPa.Within this range,the shear strength of the high-level pillar is accurately calculated using the equivalent MohreCoulomb theory.The proposed method can effectively avoid the calculation of inaccurate shear strength values for the high-level pillars when the original HoekeBrown criterion is used in the presence of large confining pressures,i.e.the situation in which the cohesion value is too large and the friction angle is too small can effectively be avoided.The proposed method is applied to a deep metal mine in China that is being excavated using the HLSCB method.The shear strength parameters of the high-level pillars obtained using the proposed method were input in the numerical simulations.The numerical results show that the recommended level heights and sizes of the high-level pillars and rooms in the mine are rational. 展开更多
关键词 Deep metal mines High-level pillars HoekeBrown strength criterion Cemented backfilling Confining pressure Shear strength
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Stability prediction of hard rock pillar using support vector machine optimized by three metaheuristic algorithms 被引量:3
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作者 Chuanqi Li Jian Zhou +1 位作者 Kun Du Daniel Dias 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第8期1019-1036,共18页
Hard rock pillar is one of the important structures in engineering design and excavation in underground mines.Accurate and convenient prediction of pillar stability is of great significance for underground space safet... Hard rock pillar is one of the important structures in engineering design and excavation in underground mines.Accurate and convenient prediction of pillar stability is of great significance for underground space safety.This paper aims to develop hybrid support vector machine(SVM)models improved by three metaheuristic algorithms known as grey wolf optimizer(GWO),whale optimization algorithm(WOA)and sparrow search algorithm(SSA)for predicting the hard rock pillar stability.An integrated dataset containing 306 hard rock pillars was established to generate hybrid SVM models.Five parameters including pillar height,pillar width,ratio of pillar width to height,uniaxial compressive strength and pillar stress were set as input parameters.Two global indices,three local indices and the receiver operating characteristic(ROC)curve with the area under the ROC curve(AUC)were utilized to evaluate all hybrid models’performance.The results confirmed that the SSA-SVM model is the best prediction model with the highest values of all global indices and local indices.Nevertheless,the performance of the SSASVM model for predicting the unstable pillar(AUC:0.899)is not as good as those for stable(AUC:0.975)and failed pillars(AUC:0.990).To verify the effectiveness of the proposed models,5 field cases were investigated in a metal mine and other 5 cases were collected from several published works.The validation results indicated that the SSA-SVM model obtained a considerable accuracy,which means that the combination of SVM and metaheuristic algorithms is a feasible approach to predict the pillar stability. 展开更多
关键词 Underground pillar stability Hard rock Support vector machine Metaheuristic algorithms
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Lateral abutment pressure distribution and evolution in wide pillars under the first mining effect
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作者 Zhen Zhang Zhen Li +4 位作者 Gang Xu Xiaojin Gao Qianjin Liu Zhengjie Li Jiachen Liu 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第3期309-322,共14页
The wide pillars are generally popular due to the high productivity and efficiency in Northwest China.The distribution of lateral abutment pressure in coal pillars is important for mining safety.To reveal the effect o... The wide pillars are generally popular due to the high productivity and efficiency in Northwest China.The distribution of lateral abutment pressure in coal pillars is important for mining safety.To reveal the effect of the first mining on the lateral abutment pressure distribution and evolution in wide pillars,an in-situ experiment,theoretical analysis and numerical simulation were performed.First,the field monitoring of lateral abutment pressure was conducted from the perspective of time and space in the Chahasu Coal Mine,Huangling No.2 Coal Mine and Lingdong Coal Mine during the first mining.Based on the field monitoring stress,a theoretical model was proposed to reveal the lateral abutment pressure distribution.The methodology was demonstrated through a case study.Aiming at the distribution mechanism,a numerical experiment was conducted through the finite-discrete element method(FDEM).Last,field observations of borehole fractures were performed to further study the damage distribution.In addition,two types of lateral abutment pressure evolution with mining advance were discussed.Suggestions on the stress monitoring layout were proposed as well.The results could provide foundations for strata control and disaster prevention in wide pillars in underground coal mines. 展开更多
关键词 Wide pillar Lateral abutment pressure pillar stress First mining effect Field monitoring
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Mechanical behaviors of deep pillar sandwiched between strong and weak layers
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作者 Sahendra Ram Petr Waclawik +4 位作者 Jan Nemcik Radovan Kukutsch Ashok Kumar Arun Kumar Singh Libin Gong 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第5期1111-1126,共16页
A variety of coal room and pillar mining methods have been efficiently practiced at depths of up to 500 m with least strata mechanics issues.However,for the first time,this method was trialled at depths of 850 e900 m ... A variety of coal room and pillar mining methods have been efficiently practiced at depths of up to 500 m with least strata mechanics issues.However,for the first time,this method was trialled at depths of 850 e900 m in CSM mine of Czech Republic.The rhomboid-shaped coal pillars with acute corners of 70,surrounded with 5.2 m wide and 3.5e4.5 m high mine roadways,were used.Pillars were developed in a staggered manner with their size variation in the Panel II from 83 m×25 m to 24 m×20 m(corner to corner)and Panel V from 35 m×30 m to 26 m×16 m.Coal seam inclined at 12was affected by the unusual slippery slickenside roof bands and sometimes in the floor levels with high vertical stress below strong and massive sandstone roof.In order to ensure safety,pillars in both the panels were continuously monitored using various geotechnical instruments measuring the induced stresses,side spalling and roof sagging.Both panels suffered high amounts of mining induced stress and pillar failure with side-spalling up to 5 m from all sides.Heavy fracturing of coal pillar sides was controlled by fully encapsulated steel bolts.Mining induced stress kept increasing with the progress of development of pillars and galleries.Instruments installed in the pillar failed to monitor actual induced stress due to fracturing of coal mass around it which created an apprehension of pillar failure up to its core due to high vertical mining induced stress.This risk was reduced by carrying out scientific studies including the three-dimensional numerical models calibrated with data from the instrumented pillar.An attempt has been made to study the behavior of coal pillars and their yielding characteristics at deeper cover based on field and simulation results. 展开更多
关键词 pillar yielding mechanisms Great depth Numerical modeling Induced stress pillar dilation Slippery slickenside layer
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Study on the disaster caused by the linkage failure of the residual coal pillar and rock stratum during multiple coal seam mining:mechanism of progressive and dynamic failure
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作者 Yunliang Tan Qing Ma +4 位作者 Xiaoli Liu Xuesheng Liu Derek Elsworth Ruipengg Qian Junlong Shang 《International Journal of Coal Science & Technology》 EI CAS CSCD 2023年第3期122-135,共14页
Multi-seam mining often leads to the retention of a significant number of coal pillars for purposes such as protection,safety,or water isolation.However,stress concentration beneath these residual coal pillars can sig... Multi-seam mining often leads to the retention of a significant number of coal pillars for purposes such as protection,safety,or water isolation.However,stress concentration beneath these residual coal pillars can significantly impact their strength and stability when mining below them,potentially leading to hydraulic support failure,surface subsidence,and rock bursting.To address this issue,the linkage between the failure and instability of residual coal pillars and rock strata during multi-seam mining is examined in this study.Key controls include residual pillar spalling,safety factor(f.),local mine stiffness(LMS),and the post-peak stiffness(k)of the residual coal pillar.Limits separating the two forms of failure,progressive versus dynamic,are defined.Progressive failure results at lower stresses when the coal pillar transitions from indefinitely stable(f,>1.5)to failing(f,<1.5)when the coal pillar can no longer remain stable for an extended duration,whereas sud-den(unstable)failure results when the strength of the pillar is further degraded and fails.The transition in mode of failure is defined by the LMS/k ratio.Failure transitions from quiescent to dynamic as LMS/k.<1,which can cause chain pillar instability propagating throughout the mine.This study provides theoretical guidance to define this limit to instability of residual coal pillars for multi-seam mining in similar mines. 展开更多
关键词 Multi-seam mining Residual coal pillars Rock stratum Linkage instability mechanism Local mine stiffness
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Experimental study on the movement law of overlying rock non-pillar coal overhead mining
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作者 LI Yong ZHENG Jing +5 位作者 WANG Feng-nian MA Xin-gen ZHANG Rui-xue SUN Ying-ying YIN Jian-bin TAO Zhi-gang 《Journal of Mountain Science》 SCIE CSCD 2023年第6期1759-1773,共15页
Pillarless coal mining technology is a new practical technology.Based on the compensating mechanical behavior of the Negative Poisson’s Ratio(NPR)anchor cable on the roof,the roadway was successfully retained by the ... Pillarless coal mining technology is a new practical technology.Based on the compensating mechanical behavior of the Negative Poisson’s Ratio(NPR)anchor cable on the roof,the roadway was successfully retained by the top cutting and pressure relief technology.This study utilizes the Digital Speckle Monitoring(DIC monitoring),stress-strain monitoring,and infrared thermal imaging systems to conduct physical model experiment of similar materials from the displacement,stress-strain,and temperature fields to investigate in depth the fracture change law of the overlying rock.In addition,it uses FLAC3D numerical simulation to invert the surface displacement settlement.The results show that the non-pillar overhead mining under the 110 mining method has little influence on the rock crack in the middle of the coal seam,and the crack development area is mainly concentrated in the overlying rock mass of the upward coal seam.The compensatory mechanical behavior of NPR anchor cable and the dilatation characteristics of rock mass have a good effect of retaining roadway along goaf,and can also reduce surface settlement.The 110 mining method provides a scientific basis for ecological environment protection and the development of other kilometer deep soft rock high ground stress underground projects. 展开更多
关键词 No pillar mining Overhead mining NPR anchor cable Physical model of similar materials FLAC3D Numerical simulation Motion of overburden
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The Potential of Commercial Pension Insurance to Develop into One of the Pillars of Rural Pension Insurance:A Study from the Demand Perspective
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作者 Hu Junbo Li Wenda Wang Jianrui 《Contemporary Social Sciences》 2023年第2期1-20,共20页
The development of a multi-pillar pension insurance system is an effective solution for an aging society.Commercial pension insurance,as the third pillar of pension insurance,is an integral part of this system in Chin... The development of a multi-pillar pension insurance system is an effective solution for an aging society.Commercial pension insurance,as the third pillar of pension insurance,is an integral part of this system in China and can play a critical and complementary role in rural areas where support for the elderly is a more pressing concern and a second pillar of pension insurance remains absent.To this end,we first elaborate on the theoretical logic that commercial pension insurance can develop into one of the pillars of rural pension insurance.We then empirically test rural residents’willingness to participate in a commercial pension insurance plan(CPIP)in a probit model with household research data from rural areas in major labor-exporting provinces,such as Sichuan and Henan so as to explore whether commercial pension insurance has the potential to become one of the pillars of rural pension insurance.Our research findings can be synthesized in three points.First,rural residents out of agricultural production for five consecutive years are more willing to participate in a CPIP than other rural residents,indicating that progress in industrialization and urbanization can significantly boost such willingness.Second,the younger rural residents are more inclined to participate in a CPIP than the older generation.Third,income increases can significantly boost rural residents’willingness to participate in a CPIP.Thus,with progress in industrialization and urbanization and an increase in rural disposable income,commercial pension insurance has a promising potential in rural areas and can hopefully develop into one of the pillars of rural pension insurance. 展开更多
关键词 the pillar of pension insurance commercial pension insurance willingness to participate(in a CPIP)
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水仓防隔水煤柱安全评价及注浆加固治理研究
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作者 黄欢 杨茂林 +2 位作者 许峰 陈永亮 党亚堃 《中国煤炭》 北大核心 2024年第4期57-62,共6页
某煤矿水仓的砌碹巷道在开采的扰动、防隔水煤柱宽度留设不足、砌碹壁后充填不密实等情况下,使得周边采空区水渗漏至水仓,极大影响了水仓的安全稳定。为进一步加强水仓煤柱的稳定性,运用地面钻孔及井下钻孔相结合的方法进行注浆加固。... 某煤矿水仓的砌碹巷道在开采的扰动、防隔水煤柱宽度留设不足、砌碹壁后充填不密实等情况下,使得周边采空区水渗漏至水仓,极大影响了水仓的安全稳定。为进一步加强水仓煤柱的稳定性,运用地面钻孔及井下钻孔相结合的方法进行注浆加固。采用地面钻孔注浆充填井下硐室,硐室充填沙子245~328 m^(3)、水泥487~650 t,充填材料体积远远大于硐室体积220 m^(3),有效增加了煤柱厚度;利用井下钻孔在砌碹处进行水泥注浆与水化学注浆,使得砌碹裂缝处涌水量由15 m^(3)/h降至为零,砌碹壁后空隙充填效果良好。通过对煤柱及砌碹壁后空隙的注浆充填,有效提高了水仓防隔水煤柱的稳定性。 展开更多
关键词 水仓 排水系统 防隔水煤柱 采空区水 注浆
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区段煤柱变形光纤光栅监测应用研究 被引量:1
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作者 柴敬 王佳琪 +5 位作者 杨健锋 高登彦 高奎英 陈建华 刘泽宇 杨磊 《煤炭科学技术》 EI CAS CSCD 北大核心 2024年第1期126-137,共12页
针对近距离煤层下伏工作面过上覆遗留煤柱时,发生动静载叠加诱发强矿压显现,导致区段煤柱发生变形失稳造成人员伤亡和设备破坏。为探索基于光纤光栅实时监测区段煤柱变形发育特征,分析进、出遗留煤柱阶段矿压显现机理,将FBG、光栅应力... 针对近距离煤层下伏工作面过上覆遗留煤柱时,发生动静载叠加诱发强矿压显现,导致区段煤柱发生变形失稳造成人员伤亡和设备破坏。为探索基于光纤光栅实时监测区段煤柱变形发育特征,分析进、出遗留煤柱阶段矿压显现机理,将FBG、光栅应力计的光测方法相结合,结合现场实测的区段煤柱变形应力应变水平参量变化规律,研究煤柱应变空间分布规律及回采过程中工作面前方煤柱内部应变时域响应特征,验证光测方法在煤体应变水平观测的可行性。结果表明:工作面回采经过上覆遗留煤柱期间,区段煤柱顶板受集中应力影响,上部岩层块体破断并发生回转导致煤柱载荷增加,随着工作面推进覆岩断裂进一步向上传递,关键层断裂回转发生导致工作面来压,最终导致区段煤柱变形失稳。根据现场光栅应变增量幅度判断煤柱内局部变形的剧烈程度,在集中应力作用下,区段煤柱变形时发生最大应变为650×10^(-6),上覆岩层集中应力造成煤柱应变水平峰值位置为煤柱宽度11.5 m,沿煤柱宽度方向应变表现出先增加后减小然后趋于稳定的趋势,内部应变随采动过程中影响范围在5 m左右。综合研究工作面回采经过上覆遗留煤柱时应变对区段煤柱发生变形失稳的特点和规律,以及应变水平变化和煤柱物理力学性质,得到煤柱破坏的前兆特征,在外力作用下达到变形峰值前对煤柱提前进行卸压和防护的安全处理。 展开更多
关键词 区段煤柱 遗留煤柱 矿压显现 光纤光栅 光栅应力计 实时监测
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遗留煤柱边界下方撤面巷道合理位置确定研究 被引量:1
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作者 张明 刘同达 +4 位作者 于正兴 魏全德 杨世纪 温经林 田鑫 《中国安全生产科学技术》 CAS CSCD 北大核心 2024年第1期50-57,共8页
为了确定遗留煤柱边界下方撤面巷道合理布置位置,以内蒙古某矿为研究对象,基于遗留煤柱覆岩空间结构,探究应力在底板的传递规律,通过构建“上煤层遗留煤柱传递应力-下煤层巷道掘进应力”应力叠加计算模型,分析外错距离与撤面巷道围岩安... 为了确定遗留煤柱边界下方撤面巷道合理布置位置,以内蒙古某矿为研究对象,基于遗留煤柱覆岩空间结构,探究应力在底板的传递规律,通过构建“上煤层遗留煤柱传递应力-下煤层巷道掘进应力”应力叠加计算模型,分析外错距离与撤面巷道围岩安全稳定之间的关系。研究结果表明:在遗留煤柱的“支撑”作用下,煤柱煤体及其上覆岩层近似成“T”型空间结构;10 m外错距离满足现场安全生产和巷道围岩控制的要求。研究结果可为相似开采条件下的巷道稳定评估和合理位置确定提供参考。 展开更多
关键词 采矿工程 遗留煤柱 应力传递 围岩稳定 安全错距
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个人养老金税收优惠政策何以可为?——来自美国、德国和澳大利亚的经验与启示 被引量:1
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作者 谢勇才 范傲 《人口与经济》 北大核心 2024年第1期16-33,共18页
发展个人养老金是健全养老保险体系和积极应对人口老龄化挑战的重要举措,而灵活高效的税收优惠政策则是推动个人养老金制度高质量发展的关键要素。虽然近年来我国制定了个人养老金税收优惠政策,但是仍存在诸多问题,严重掣肘个人养老金... 发展个人养老金是健全养老保险体系和积极应对人口老龄化挑战的重要举措,而灵活高效的税收优惠政策则是推动个人养老金制度高质量发展的关键要素。虽然近年来我国制定了个人养老金税收优惠政策,但是仍存在诸多问题,严重掣肘个人养老金制度的高质量发展。基于文献研究法、比较分析法对美国、德国和澳大利亚等典型国家个人养老金税收优惠政策的主要实践、基本特征、实施效果以及对中国的启示等重要问题进行深入探讨。研究发现,经过数十年的积极探索,美国、德国和澳大利亚逐步建立了灵活高效的个人养老金税收优惠政策,主要体现在激励方式灵活多样、政策制定立法先行、政策调整循序渐进、关注低收入群体的需求以及鼓励以家庭为参保对象等五个方面,有效推动了其个人养老金制度的发展与成熟。不过,这些典型国家个人养老金税收优惠政策在取得瞩目成就的同时,仍然面临对低收入群体的吸引力不足等现实困境。结合典型国家的有益经验和深刻教训,对我国个人养老金税收优惠政策存在的主要问题进行剖析,并提出更具针对性的见解,认为我国个人养老金税收优惠政策应当从四个方面作出改进:一是引入多种税收优惠模式,增强政策的吸引力;二是凸显税收优惠政策的精准性,助推优惠资源向低收入群体倾斜;三是提升税收优惠政策的灵活性,鼓励个人合理配置税收优惠额度;四是税收优惠政策应支持以家庭形式参保。 展开更多
关键词 个人养老金 税收优惠政策 多支柱养老保险体系
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宽高比对煤柱型冲击地压影响规律的实验研究
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作者 朱志洁 姚振华 +3 位作者 陈昆 吕飞 韩军 王来贵 《煤炭学报》 EI CAS CSCD 北大核心 2024年第3期1303-1317,共15页
我国深部煤炭开采日趋复杂,区段煤柱在采动、构造或坚硬顶底板影响下极易诱发煤柱型冲击地压,煤柱型冲击地压的防治已成为煤矿安全高效开采的难题,研究不同宽高比条件下区段煤柱的力学性能及冲击破坏特性对煤柱型冲击地压防治具有积极... 我国深部煤炭开采日趋复杂,区段煤柱在采动、构造或坚硬顶底板影响下极易诱发煤柱型冲击地压,煤柱型冲击地压的防治已成为煤矿安全高效开采的难题,研究不同宽高比条件下区段煤柱的力学性能及冲击破坏特性对煤柱型冲击地压防治具有积极意义。采用不同宽高比煤样的“岩-煤-岩”组合体进行了单轴压缩实验,通过分析煤岩组合体的冲击倾向性、动态破坏特征、分形维数和声发射特征参数等,研究了宽高比对煤柱冲击破坏的影响规律。结果发现:①煤柱的宽高比对煤岩组合体的冲击倾向性具有显著影响,宽高比不小于2∶1时,其冲击能量指数K_(E)为1.82~2.65,冲击倾向性无明显变化;小于2∶1时冲击倾向性呈先升高后降低的趋势,1∶1时K_(E)最大,达到了15.43。②随宽高比减小,煤岩组合体破坏特征依次表现为:拉压破坏—压剪破坏—拉剪破坏。煤柱宽高比为5∶1~3∶1时,煤岩组合体破坏较为缓慢;宽高比为2∶1时开始出现片状煤屑弹出,冲击破坏剧烈程度较低;宽高比为1∶1和0.75∶1时,具有明显的冲击破坏特性;宽高比为0.5∶1时,煤岩组合体整体稳定性下降,相对0.75∶1煤岩组合体煤柱破坏的剧烈程度降低。③峰后声发射能量释放率与分形维数D变化规律相似,均随宽高比减小呈先升高后降低的趋势。宽高比不小于2∶1时,煤岩组合体破坏过程中能量持续释放时间较长,煤柱破坏平缓;宽高比为1∶1时,能量释放率和D值明显增大,相较宽高比不小于2∶1煤岩组合体的能量释放率增大了约4倍,D值增大了0.18~0.23,煤柱冲击破坏最为剧烈;宽高比0.75∶1煤岩组合体能量释放率与D值分别降低了约10%和0.01,破坏剧烈程度与1∶1煤岩组合体相近;宽高比减小至0.5∶1时,相关参数的降低幅度约为0.75∶1煤岩组合体的6倍,破坏剧烈程度相对较小。研究表明:宽高比对煤柱的冲击破坏具有显著影响,整体上,煤柱冲击破坏剧烈程度随宽高比减小(5∶1~0.5∶1)呈先升高后逐渐降低的趋势;煤柱宽高比大于3∶1时,煤柱冲击危险性相对较小,煤柱宽高比为1∶1和0.75∶1时冲击危险性较大,0.5∶1次之。 展开更多
关键词 煤柱型冲击地压 煤柱宽高比 煤岩组合体 声发射 分形维数
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工业广场保护煤柱开采井筒破损致因及防治技术
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作者 程桦 喻宏 +4 位作者 宋海清 成浪 荣传新 姚直书 彭世龙 《煤炭工程》 北大核心 2024年第5期42-50,共9页
针对工业广场保护煤柱开采导致井筒破损的问题,以大社煤矿为工程背景,分析工广煤柱开采井筒围岩移动变形特征,揭示井筒破损致因;提出工广内后续工作面开采防治井筒破坏方案,形成相应的施工技术,并成功应用工程实践。研究表明:该矿工广内... 针对工业广场保护煤柱开采导致井筒破损的问题,以大社煤矿为工程背景,分析工广煤柱开采井筒围岩移动变形特征,揭示井筒破损致因;提出工广内后续工作面开采防治井筒破坏方案,形成相应的施工技术,并成功应用工程实践。研究表明:该矿工广内92606工作面邻近副井,开采引发的井筒竖向附加力是井筒破坏的致因;如不提前采取防治措施,后续92606外工作面开采,将导致副井井筒发生二次破坏;研究提出的不停产单卸压槽防治方案,具有不影响矿井生产、卸压率高、施工简单、成本低等优点。采用壁后注浆、开切卸压槽、架设密集井圈等技术,顺利完成了该矿不停产防治副井井筒破损工程。监测表明,该井筒竖向和环向应力,均小于井壁极限.承载力,处于安全状态,运行良好,达到了预期效果。 展开更多
关键词 工业广场 保护煤柱 地层沉降 井壁破损 卸压槽 围岩控制
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基于离散元-机器学习的铝土矿矿柱强度预测方法
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作者 朱德福 王德玉 于彪彪 《煤炭学报》 EI CAS CSCD 北大核心 2024年第7期3038-3050,共13页
矿柱极限承载能力与矿柱尺寸参数密切相关,科学地预测矿柱强度是空场法安全高效开采铝土矿的关键。为了准确高效地预测矿柱强度,融合运用离散元方法(DEM)的模型参数化、样本数据强扩展性与机器学习(ML)方法的数据驱动优势,选取矿柱尺寸... 矿柱极限承载能力与矿柱尺寸参数密切相关,科学地预测矿柱强度是空场法安全高效开采铝土矿的关键。为了准确高效地预测矿柱强度,融合运用离散元方法(DEM)的模型参数化、样本数据强扩展性与机器学习(ML)方法的数据驱动优势,选取矿柱尺寸参数(长、宽、高)作为影响因子,开发了Grasshopper参数化建模电池组,实现了等块体密度的矿柱黏合块体模型(BBM)的参数化构建,结合矿体节理分布特征实测结果,利用3DEC程序构建了300组黏合块体-离散裂隙网络(BBM-DFN)矿柱离散元数值模型,开展了矿柱承载特性试验,监测并建立了机器学习数据集,且验证了此数据集的可靠性;分别以支持向量机(SVM)、BP神经网络、随机森林(RF)、高斯过程回归(GPR)4种算法构建了矿柱强度预测模型,根据回归类模型评价指标(判定系数R2、可解释方差E_(EVS)、平均绝对误差E_(MAE)、均方误差E_(MSE))开展了最优模型的评选,结合改进的量子粒子群智能优化算法(IQPSO)进一步优化模型,利用该模型建立了矿柱影响因子与强度之间的非线性映射关系。研究表明:由矿柱强度参数化模拟结果可知,随着矿柱宽高比增加强度显著提升,长宽比对强度影响幅度相对较小,当矿柱高度和横截面积相同时,不同截面矿柱承载能力依次为:正方形>长方形;当矿柱宽高比大于1时,方形截面矿柱强度影响因子敏感性主次顺序为:矿柱宽(长)度>矿柱高度;根据机器学习算法指标综合评价,SVM模型是矿柱强度预测的最佳模型(R^(2)=0.953、E_(EVS)=0.953、E_(MAE)=0.608、E_(MSE)=0.551),结合IQPSO算法优化后模型预测性能得到了进一步提升(R2=0.985、E_(EVS)=0.986、E_(MAE)=0.373、E_(MSE)=0.239);将IQPSO-SVM矿柱强度预测值与3种经典硬岩矿柱强度公式计算结果进行了讨论分析,得出了Hedley公式针对铝土矿强度计算不适用,Krau-land公式适用于宽高比小于4时,Esterhuizen公式可通过调整不连续因子(F)进行较为准确的强度计算。研究成果为硬岩矿柱强度的预测提供了一种解决方案,拓宽了矿柱(群)稳定性评价的思路。 展开更多
关键词 铝土矿 矿柱强度 离散元方法 机器学习 矿柱(群)稳定性
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基于BOTDR的区段煤柱水平变形监测
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作者 柴敬 郝鸿儒 +5 位作者 杨健锋 高登彦 高奎英 陈建华 杨磊 刘泽宇 《煤田地质与勘探》 EI CAS CSCD 北大核心 2024年第5期46-55,共10页
针对煤柱内部微裂纹萌生、变形破坏等潜在安全隐患,利用布里渊光时域反射(BOTDR)分布式光纤传感技术进行煤柱水平变形监测。首先,根据煤柱破坏碎胀特性理论分析,建立了光纤轴向应变与水平变形的转化方法;其次开展室内试验确定了金属基... 针对煤柱内部微裂纹萌生、变形破坏等潜在安全隐患,利用布里渊光时域反射(BOTDR)分布式光纤传感技术进行煤柱水平变形监测。首先,根据煤柱破坏碎胀特性理论分析,建立了光纤轴向应变与水平变形的转化方法;其次开展室内试验确定了金属基索状传感光纤轴向拉伸响应情况,并根据煤柱变形破坏规律修正了应变系数,最后以陕西大柳塔煤矿活鸡兔井为工程背景,对22206工作面区段煤柱水平变形实现现场监测。监测结果表明:区段煤柱采动侧和未采动侧存在明显的水平变形差异,采动侧变形量最大,约为未采动侧的5倍,但煤柱整体水平变形较小,仅出现弹性变形,煤柱较稳定;煤柱变形分区明显,呈现中部为弹性核区,两侧为塑性破坏区的分区特征;工作面从测点前20m推进至测点后40m时,煤柱水平应变呈指数增长,远离测点之后变形趋于稳定,反映煤柱变形与采动应力扰动之间的动态关联;通过分析煤柱水平应变与垂直应力,发现两者呈指数相关关系,定量建立了煤柱水平应变与垂直应力关系式,说明煤柱变形与破坏很大程度上取决于采动应力的分布与演化。利用BOTDR技术对区段煤柱内部变形进行监测可以精确获取区段煤柱内部的微观变形信息,对于煤柱留设尺寸确定、围岩控制及采空区压力评估等具有重要指导意义。 展开更多
关键词 分布式光纤 区段煤柱 水平变形 煤柱稳定性
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弹−塑性基础边界两侧采空(留煤柱)基本顶板结构初次破断特征
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作者 陈冬冬 李子健 +5 位作者 谢生荣 何富连 罗昱 蒋再胜 马翔 李辉 《煤炭学报》 EI CAS CSCD 北大核心 2024年第5期2195-2211,共17页
为了研究两侧采空留煤柱工程条件下基本顶板结构的断裂位态及工程指导意义,构建考虑实体煤弹塑性变形与两侧煤柱宽度及支撑能力弱化的基本顶板结构双塑化基础边界力学模型,基于有限差分算法与主弯矩破断准则系统计算了在非对称煤柱区和... 为了研究两侧采空留煤柱工程条件下基本顶板结构的断裂位态及工程指导意义,构建考虑实体煤弹塑性变形与两侧煤柱宽度及支撑能力弱化的基本顶板结构双塑化基础边界力学模型,基于有限差分算法与主弯矩破断准则系统计算了在非对称煤柱区和长边实体煤区的断裂线形态、区位属性及整体位态特征,并从7个层面、横纵向4对区域与传统模型对比,阐明新模型所得新结论及工程意义。结论如下:(1)两侧非对称煤柱参数对长边实体煤区域的基本顶主弯矩及破断位置影响小,但分别显著影响煤柱区的主弯矩大小、位置及断裂形态。两侧煤柱区(较强/宽煤柱区+较弱/窄煤柱区)基本顶断裂线形态有3类演化模式,随基本顶厚度及弹模增大而煤柱宽度、支撑能力及悬顶跨度减小,其变化规律为:非对称的“连续单弧形+连续单弧形”→“连续单弧形+开口间断双短弧形”→非对称的“开口间断双短弧形+开口间断双短弧形”。(2)长边实体煤区基本顶的断裂线主要有3类区位属性,随基本顶厚度及弹模增大而实体煤的塑性区宽度、塑化程度及悬顶跨度减小,其演变规律为:断裂线在塑性煤体区(C-S式)→弹塑性煤体分界区(C-TS式)→弹性煤体区(C-T式);(3)考虑断裂线区位属性,随基本顶厚度和弹模增大而煤柱宽度、支撑能力及悬顶跨度减小的基本顶全区域破断模式及演变规律为:C-S式的■→C-TS式的■→C-T式的■→C-T式的■→C-T式的■。针对研究两侧采空(煤柱)基本顶板结构破断的3类力学模型,从7个层面对比了3类模型的重要区别,从横向4个区域(开采区域的前方与后方、两侧煤柱区)与纵向4个区域(非对称遗留煤柱下伏、下伏开采空间出/进煤柱/体)阐明了其重要工程作用。 展开更多
关键词 遗留煤柱 基本顶 两侧采空 弹−塑性基础 板结构
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相邻空区影响下三软巷道变形破坏规律与煤柱留设宽度研究
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作者 解盘石 林伟典 +4 位作者 张小明 张颖异 黄宝发 杨航 曾佑富 《煤炭工程》 北大核心 2024年第3期1-9,共9页
为了探究相邻空区影响下三软煤层巷道掘进时不同煤柱宽度下巷道围岩变形破坏规律,采用理论计算、数值模拟、物理相似模拟与现场实测相结合的研究方法,分析存在临空区后不同区段煤柱宽度下巷道围岩应力演化规律、塑性破坏范围以及位移分... 为了探究相邻空区影响下三软煤层巷道掘进时不同煤柱宽度下巷道围岩变形破坏规律,采用理论计算、数值模拟、物理相似模拟与现场实测相结合的研究方法,分析存在临空区后不同区段煤柱宽度下巷道围岩应力演化规律、塑性破坏范围以及位移分布特征。结果表明:临空区是造成巷道掘进后非对称破坏的主要原因,使煤柱主应力方向与垂向夹角增大,巷道两帮应力呈煤柱侧大于实体煤侧的非对称分布特征;三软巷道破坏形式以剪切破坏为主,破坏主体为两帮,随着煤柱宽度增大,主应力方向与垂向夹角减小,巷道围岩破坏程度降低,临空区对巷道不同位置的影响程度不同,巷道中部围岩破坏程度大于端头处且煤柱侧破坏程度大于实体煤侧;煤柱宽度增大对巷道围岩应力以及煤柱破坏的改善程度有限,现场结果显示当煤柱宽度为20 m时巷道正常维护满足需求。 展开更多
关键词 三软巷道 煤柱宽度 巷道失稳 相邻空区 非对称破坏
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优化我国养老金制度体系:个人养老金制度的发展定位 被引量:1
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作者 马源 《金融教育研究》 2024年第2期66-73,共8页
我国已初步建成了第三支柱个人养老金制度,但该制度尚未实现规模化发展。分析现行养老金制度体系面临的现实困境后发现诸多问题,如第一支柱可持续性面临挑战,第二支柱发挥的作用有限,养老资产规模不足等。个人养老金制度对于优化我国养... 我国已初步建成了第三支柱个人养老金制度,但该制度尚未实现规模化发展。分析现行养老金制度体系面临的现实困境后发现诸多问题,如第一支柱可持续性面临挑战,第二支柱发挥的作用有限,养老资产规模不足等。个人养老金制度对于优化我国养老金体系具有关键作用。据此,明确个人养老金制度的发展定位,包括完善三支柱养老保障体系、提高基本养老保险待遇水平、增加养老金资产储备、强化个人养老储备意识。提出政府应该协调发展三支柱养老保险,实施税收激励政策并加强宣传教育以激励个人的有效参与,优化养老资产储备的投资管理的相关建议。 展开更多
关键词 个人养老金制度 三支柱养老保障体系 养老资产储备 个人参与意识
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