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丘陵区采矿排水对周边地下水流动系统影响分析 被引量:6
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作者 刘佩贵 陶月赞 +1 位作者 周加鸿 张利 《工程勘察》 CSCD 北大核心 2011年第8期51-54,共4页
丘陵地区地下水资源相对紧缺,然而为保证矿区安全开采,地下开采工程要求排出大量的地下水,尤其是承压水的流失对上覆渗水性强的含水层水位下降可能存在不可忽视的影响,甚至影响到周边居民的饮水安全。为此,本文以皖西丘陵地区霍邱铁矿... 丘陵地区地下水资源相对紧缺,然而为保证矿区安全开采,地下开采工程要求排出大量的地下水,尤其是承压水的流失对上覆渗水性强的含水层水位下降可能存在不可忽视的影响,甚至影响到周边居民的饮水安全。为此,本文以皖西丘陵地区霍邱铁矿群开采为例,在建立地下水水流数值模型基础上,分析采矿排水对上覆第四系孔隙水的影响程度,结果表明:矿床持续开采5年后,研究区内第四系地下水水位的累积附加降深等值线超过5m的面积约为183.5km2,占研究区总面积的13.90%;持续开采到第10年末,影响范围增大至209km2,扩大了近26km2,且局部出现含水层疏干现象。 展开更多
关键词 丘陵地区 采矿排水 累积附加降深 饮水安全
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关于建立采矿排水水资源税费三阶段征收新机制的思考 被引量:1
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作者 柳长顺 贾仰文 曹国亮 《中国水利》 2018年第18期52-54,共3页
矿山井田开拓阶段、正常开采阶段与停产闭矿阶段都不同程度地影响与破坏水资源。从绿色发展高度与全生命周期视角,在分析采矿各阶段对水资源影响与破坏机理、规律的基础上,提出建立采矿排水资源税费三阶段征收新机制的建议,即井田开拓... 矿山井田开拓阶段、正常开采阶段与停产闭矿阶段都不同程度地影响与破坏水资源。从绿色发展高度与全生命周期视角,在分析采矿各阶段对水资源影响与破坏机理、规律的基础上,提出建立采矿排水资源税费三阶段征收新机制的建议,即井田开拓阶段核发取水许可证,按排水量征收水资源税费;正常开采阶段按排水量或采矿量征收水资源税费;停产闭矿阶段使用提取的老窑水治理保证金或基金进行老窑水治理。 展开更多
关键词 采矿排水 全生命周期 水资源税费 机制
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采矿排水对周边水环境影响分析 被引量:3
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作者 吴丹 陶月赞 刘佩贵 《安徽地质》 2011年第4期305-308,共4页
矿床采选过程中,不可避免地造成一定的外排废水,从而可能影响到周边地表水或地下水水质,为此,本文选取安徽省霍邱县铁矿群为例,应用模糊层次综合评价法以及改进的层次分析法,通过分析沿岗河及其支流采集的水样的水质指标测定结果,对矿... 矿床采选过程中,不可避免地造成一定的外排废水,从而可能影响到周边地表水或地下水水质,为此,本文选取安徽省霍邱县铁矿群为例,应用模糊层次综合评价法以及改进的层次分析法,通过分析沿岗河及其支流采集的水样的水质指标测定结果,对矿区周边地表水的水质进行了评价。评价结果表明:各监测断面的水质均达到Ⅰ类水标准,说明在监测时段内,采矿外排水还未对周边地表水环境产生影响。 展开更多
关键词 模糊层次分析 水环境 采矿排水
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安徽省铜陵某矿山引发塌陷地质灾害成因分析
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作者 汪璐 《中国金属通报》 2023年第3期153-155,共3页
地面塌陷在很多情况下会对周围的自然资源和项目建设带来极为严重的负面影响,因此要深入分析地质灾害,并采取针对性的防治处理措施。本文中,以安徽省铜陵某矿山发生的塌陷地质灾害为例,着重探讨塌陷事故的形成原因以及具体应采取的防治... 地面塌陷在很多情况下会对周围的自然资源和项目建设带来极为严重的负面影响,因此要深入分析地质灾害,并采取针对性的防治处理措施。本文中,以安徽省铜陵某矿山发生的塌陷地质灾害为例,着重探讨塌陷事故的形成原因以及具体应采取的防治措施,以供参考。 展开更多
关键词 铜陵 水文地质条件 采矿排水 塌陷灾害 成因分析
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Applicability of surface directional wells for upper Silesia Basin coal seams' drainage ahead of mining 被引量:1
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作者 Jura Bartlomiej Skiba Jacek Wierzbinski Krystian 《International Journal of Mining Science and Technology》 SCIE EI 2014年第3期353-362,共10页
Methods of exploitation drainage, which is presently applied in polish hard coal mines in Upper Silesian Coal Basin(Poland), are not effective enough, high risk of methane hazard can be observed, and production capaci... Methods of exploitation drainage, which is presently applied in polish hard coal mines in Upper Silesian Coal Basin(Poland), are not effective enough, high risk of methane hazard can be observed, and production capacity of the mining plant is not fully used. Methane hazard, which may occur during planned coal exploitation, is presented in this paper. Following parameters are taken into consideration in the forecasts: coal extraction parameters, geological and mining conditions, deposit's methane saturation degree and impact of coal exploitation on the degasification coefficient of the seams, which are under the influence of relaxation zone. This paper presents the results of the analysis aiming to verify applicability of drainage ahead of mining of the coal seams by using surface directional wells. Based on the collected data(coal seams' structural maps, profiles of the exploratory wells, geological cross-sections), the lab tests of drilling cores and direct wells' tests, static model of the deposit was constructed and suitable grid of directional wells from the surface was designed. Comparison of forecasted methane emission volume between the two methods is investigated. The results indicated the necessity of performing appropriate deposit's stimulations in order to increase effectiveness of drainage ahead of mining. 展开更多
关键词 COAL Methane drainage Methane hazard forecasting Numerical modeling Deposit simulation
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Research and development on cutting scale machine in the coal mine shaft
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作者 任保才 《Journal of Coal Science & Engineering(China)》 2004年第1期78-82,共5页
The deposit scale in the coal mine shaft usually causes serious accidents, such as making rope broken, cage seized or dropped. To solve this kind of problems, the re-search of the cutting scale mechanism was made, and... The deposit scale in the coal mine shaft usually causes serious accidents, such as making rope broken, cage seized or dropped. To solve this kind of problems, the re-search of the cutting scale mechanism was made, and a new type of removal scale equipment was made with using imported hard alloy material. The cutting experiment and actual cutting show that it can adapt to abominable condition in the shaft, such as narrow space, wet and excessive shaft crevice water and so on, and can work safely and reliably, and has high cutting scale efficiency. It can also cut out the deposit scale in the circular section of shaft. 展开更多
关键词 deposit scale in shaft wall cutting scale cutting mechanism cutting scale ma-chine
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Influence of drainage of aquifer on settling of ground surface in mining area with high ground water level
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作者 WANG Zhi-rong CHEN Ling-xia YANG Zhan-jun 《Journal of Coal Science & Engineering(China)》 2010年第3期296-299,共4页
Based on the basic principles of hydrogeology and soil mechanics, studied thegenesis mechanism and control factors of settling of ground surface caused by the drainageof the aquifer in the construction of coal mines, ... Based on the basic principles of hydrogeology and soil mechanics, studied thegenesis mechanism and control factors of settling of ground surface caused by the drainageof the aquifer in the construction of coal mines, and put forward a corresponding calculatingmodel demonstrated by practical example.The study provides mining areas,which are covered with a very thick Quaternary soil layer and abundant ground water, witha theoretical basis aimed at forecasting the settling of ground surface. 展开更多
关键词 drainage of aquifer settling of ground surface gravity stress permeation stress
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Patterns and security technologies for co-extraction of coal and gas in deep mines without entry pillars 被引量:5
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作者 Nong Zhang Fei Xue Nianchao Zhang Xiaowei Feng 《International Journal of Coal Science & Technology》 EI 2015年第1期66-75,共10页
Retaining gob-side entryways and the stability of gas drainage boreholes are two essential techniques in the co-extraction of coal and gas without entry pillars (CECGWEP). However, retained entryways located in deep... Retaining gob-side entryways and the stability of gas drainage boreholes are two essential techniques in the co-extraction of coal and gas without entry pillars (CECGWEP). However, retained entryways located in deep coal mines are hard to maintain, especially for constructing boreholes in confined spaces, owing to major deformations. Consequently, it is difficult to drill boreholes and maintain their stability, which therefore cannot guarantee the effectiveness of gas drainage. This paper presents three measures for conducting CECGWEP in deep mines on the basis of effective space in retained entryways for gas drainage, They are combinations of retaining roadways and face-lagging inclined boreholes, retaining roadways and face-advancing inclined boreholes, and retaining roadways and high return airway inclined boreholes. Several essential techniques are suggested to improve the maintenance of retained entryways and the stabilization of boreholes. For the particular cases considered in this study, two field trials have verified the latter two measures from the results obtained from the faces 1111(1) and 11112(1) in the Zhuji Mine. The results indicate that these models can effectively solve the problems in deep mines. The maximum gas drainage flow for a single hole can reach 8.1 m^3/min and the effective drainage distance can be extended up to 150 m or more. 展开更多
关键词 Retaining gob-side entryways Stability of borehole Gas pressure relief Co-extraction of coal and gas without the entry pillar
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江淮之间金属矿集区供排水安全关键技术研究与应用
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作者 洪久余 《中国科技成果》 2016年第16期28-30,共3页
本项目以安徽省霍邱和庐南矿集区为例开展研究,从理论与实践上系统改进了矿坑涌水量预测方法,有效提高了预测精度;实现了矿坑排水影响系统、定量评价;研发了矿集区水资源梯级利用模式,用水效率、供水保证程度均大幅提高。项目推广... 本项目以安徽省霍邱和庐南矿集区为例开展研究,从理论与实践上系统改进了矿坑涌水量预测方法,有效提高了预测精度;实现了矿坑排水影响系统、定量评价;研发了矿集区水资源梯级利用模式,用水效率、供水保证程度均大幅提高。项目推广应用取得了良好的经济与社会效益,具有推广价值。 展开更多
关键词 金属矿集区 矿坑涌水量 采矿排水影响 水资源综合利用
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