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采掘诱发裂隙导通顶板上覆含水砂层中产生的水力坡度是渗透型溃砂的关键判断依据之一,但是,到目前为止主要是采用定流量下的稳定流水力坡度表达式计算,而实际上,上覆含水层中水动力条件和涌水量在溃水溃砂过程中都是非稳定的。本文依据非稳定流理论,给出了二维潜水、承压水单井定降深模型下的水力坡度J的解析公式,并分析了J随时间和距离的演变特征。结果表明,对于潜水,J随与井的距离r的增加而下降,下降速度随r的增加而减小;存在拐点r′,当r<r′时,J随时间延长而下降,在r>r′时,J随时间延长而增加;随着地下水头H0的增加,J是增加的;本文获得的潜水的非稳定流条件下的J大于潜水稳定流的J。对于承压水,J随r的增加而下降,下降速度随r的增加而减小;与潜水不同的是,在不同r处,J随时间延长而下降,不存在拐点;随着H0的增加,J是增加的;本文获得的承压水的非稳定流条件下的J不总大于承压水稳定流的J。最后,在伊犁河谷某矿对本文方法进行了初步应用。 相似文献
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矿山地下工程渗透变形破坏造成的典型灾害类型包括顶板突水溃砂、底板突水、防水闸墙与围岩界面渗透破坏等。本文从刘国昌先生对我国矿山水文地质工程地质学发展的奠基作用谈起,综述了矿山底板岩体渗透变形破坏突水灾害机理和防控技术进展。回顾了煤矿底板突水系数提出、改进和应用的历史,从底板渗透变形破坏产生的渗透力学机理重新阐释了突水系数的物理含义。基于底板岩体结构临界抗渗水力坡度建立了抗渗安全系数突水判别方法,其底板临界抗渗水力坡度可由半经验方法估算。在对底板突水评价方法演进分析的基础上,提出了底板危险源辨识和突水危险性动态评价方法。对底板突水灾变的主动防控措施的防控原理及效果评估方法进行了分析。最后,讨论了矿山底板渗透稳定性方面需要进一步深入研究的科学问题。 相似文献
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钱塘江冲海积粉土以砂质粉土为主,呈“高粉性、低黏性”的地区特点,在地下水动水压力作用下极易产生渗透破坏。粉土是介于砂性土和黏性土之间的一种过渡类型土,工程性质既与砂性土不同又与黏性土有较大区别。采用自行研制的粉土抗渗强度测定设备,对钱塘江冲海积粉土5种典型样本和微层理原状样本进行了渗透稳定试验。结果表明,钱塘江冲海积粉土渗透稳定性差,抗渗强度低;砂质粉土临界水力比降icr为1.01~1.25,破坏形式为局部流土,从临界水力比降icr发展到破坏比降iF的过程是瞬间的,基坑开挖遇到该类土层极易产生渗透破坏;黏质粉土临界水力比降icr随黏粒含量增加而增加,从临界水力比降icr发展到破坏比降iF有个短暂的过程,是整体流土破坏;钱塘江冲海积粉土渗透稳定各向异性;渗流垂直微层理方向的临界水力比降icr最大,是渗流沿微层理方向icr的2.5倍左右。研究结果为粉土地基渗透破坏防治提供参考。 相似文献
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钱塘江冲海积粉土以砂质粉土为主,呈'高粉性、低黏性'的地区特点,在地下水动水压力作用下极易产生渗透破坏。粉土是介于砂性土和黏性土之间的一种过渡类型土,工程性质既与砂性土不同又与黏性土有较大区别。采用自行研制的粉土抗渗强度测定设备,对钱塘江冲海积粉土5种典型样本和微层理原状样本进行了渗透稳定试验。结果表明,钱塘江冲海积粉土渗透稳定性差,抗渗强度低;砂质粉土临界水力比降icr为1.011.25,破坏形式为局部流土,从临界水力比降icr发展到破坏比降iF的过程是瞬间的,基坑开挖遇到该类土层极易产生渗透破坏;黏质粉土临界水力比降icr随黏粒含量增加而增加,从临界水力比降icr发展到破坏比降iF有个短暂的过程,是整体流土破坏;钱塘江冲海积粉土渗透稳定各向异性;渗流垂直微层理方向的临界水力比降icr最大,是渗流沿微层理方向icr的2.5倍左右。研究结果为粉土地基渗透破坏防治提供参考。 相似文献
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基于模糊数学理论,通过统计经验数据,采用熵值法对影响近松散含水层安全开采的关键因素赋权,利用GIS定量确定各个因素的隶属度,构造了基于熵值的模糊综合评判模型。以山东某矿六采区01工作面开采为例,选择覆岩厚度、断层构造、第四系底部粘土层厚度、底部含水层的单位涌水量、煤层开采厚度、导水裂隙带高度6个影响因素为评判指标,确定了可行性程度的评判集:{较低,低,中等,高,很高},依据水体下开采的有关安全规程,采用GIS方法确定了各个因素的隶属度,并利用历史开采经验数据确定各个影响因素的权重。对该工作面近松散含水层下开采的评判结果表明,该工作面控制采高为2 m时开采是安全可行的,开采过程中针对薄弱环节采取了相应措施,没有发生突水溃砂事件,初步验证了该模糊综合评判模型的实用性。 相似文献
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粉砂地基深基坑工程土体渗透破坏机理及其影响研究 总被引:1,自引:0,他引:1
在砂土和粉土地区,渗透破坏是威胁基坑稳定性和周围环境的主要因素。基坑工程是由土、水以及围护结构组成的一个复杂系统,影响基坑工程渗透破坏的因素很多。在总结前人对土体渗透破坏与基坑工程渗透破坏模式的研究基础上,结合渗流对土体性质影响的试验成果,提出了考虑渗流、开挖卸荷以及围护结构变形共同作用的基坑工程渗透破坏分析方法,并分析了均质地基基坑工程的渗透破坏模式。将该方法运用于某粉砂地基基坑渗透破坏工程实例,通过有限元数值模拟,揭示了渗透破坏过程及其对围护结构的影响。通过对该基坑工程实例的分析认为,在进行基坑工程设计时不仅需要进行防止流砂、管涌等验算,还需考虑基坑工程整体破坏的可能性。 相似文献
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In the framework of various studies to characterize the aquifer at the groundwater experimental field near Montalto Uffugo, Italy, the present work estimates the spatial distribution of hydraulic conductivity of the unconsolidated deposits that underlie the area, by applying the geostatistical technique of kriging with external drift to electrical-resistivity and hydraulic-conductivity data. The reliability of the estimation method was tested by implementing a model, based on the method of cells, that simulates groundwater flow, with the estimated values of hydraulic conductivity. The results obtained indicate that the estimation method used has an acceptable degree of reliability. 相似文献
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This paper studies the reliability of magnetotelluric (MT) method detection for overburden failure (OF) height in shallow seam mining. According to the geological conditions of the 52,505 working face in the Daliuta mine, five observation lines have been designed to detect the apparent resistivity (AR) of the overburden before and after mining. Analyzed the characteristic points of the face and the AR of the overburden on the main section and studied the characteristics of AR for various overburden lithologies. The AR of the overlying strata corresponding to different failure conditions is also different. Further obtained the height of the caved zone (CZ) on the working face was 25.6 m, and the height of the water flowing fracture zone (WFFZ) was 82.5 m. Finally adopted the numerical simulation and an empirical formula for calculation to validate the MT detection results and proved that it was reliable to use the MT method to detect OF height, thus providing a convenient, fast, economical, and reliable method for detecting OF heights when mining in shallow seams. 相似文献
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Evaluation of aquifers vulnerability to contamination in the Yarmouk River basin, Jordan, based on DRASTIC method 总被引:2,自引:0,他引:2
The existing different human activities and planned land uses put the groundwater resources in Jordan at considerable risk. There are evidences suggesting that the quality of groundwater supplies in north Jordan is under threat from a wide variety of point and non-point sources including agricultural, domestic, and industrial. Vulnerability maps are designed to show areas of greatest potential for groundwater contamination on the basis of hydrogeological conditions and human impacts. DRASTIC method incorporates the major geological and hydrogeological factors that affect and control groundwater movement: depth to groundwater (D), net recharge (R), lithology of the aquifer (A), soil texture (S), topography (T), lithology of vadose zone (I), and hydraulic conductivity (C). The main goal of this study is to produce vulnerability maps of groundwater resources in the Yarmouk River basin by applying the DRASTIC method to determine areas where groundwater protection or monitoring is critical. ArcGIS 9.2 was used to create the groundwater vulnerability maps by overlaying the available hydrogeological data. The resulting vulnerability maps were then integrated with lineament and land use maps as additional parameters in the DRASTIC model to assess more accurately the potential risk of groundwater to pollution. The general DRASTIC index indicates that the potential for polluting groundwater is low in the whole basin, whereas the resulting pesticide DRASTIC vulnerability map indicates that about 31% of the basin is classified as having moderate vulnerability, which may be attributed to agricultural activities in the area. Although high nitrate concentrations were found in areas of moderate vulnerability, DRASTIC method did not depict accurately the nitrate distribution in the area. 相似文献
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Meriem Snineh Nour-Eddine Laftouhi Khalid Mehdi Abdenbi El Mandour Abdessamad Hejjaj Laila Mandi 《Environmental Earth Sciences》2018,77(3):102
The Bleida fractured aquifer is not well studied in terms of water resources as previous geophysical investigations in this area were undertaken for mining purposes. This study utilized magnetic resonance sounding surveys in order to define the distribution of water resources in the region of Bleida and to locate areas favorable for the drilling and construction of productive hydraulic boreholes. For this purpose, eight magnetic resonance sounding surveys were conducted in two sites at the intersection of faults in basement rocks. The results of these surveys indicated that there were two distinct levels of saturation in fractured rock that decreased with depth. 相似文献
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Use of geochemical modeling to evaluate the hydraulic connection of aquifers: a case study from Chianan Plain, Taiwan 总被引:1,自引:0,他引:1
Hsueh-Yu Lu Tsung-Kwei Liu Wen-Fu Chen Tsung-Ren Peng Chung-Ho Wang Meng-Hsun Tsai Tai-Sheng Liou 《Hydrogeology Journal》2008,16(1):139-154
Aquifers are generally composed of highly permeable layers that can conduct a considerable amount of groundwater. Traditionally,
aquifer units are correlated through the concept of lithostratigraphy. For low-permeable aquifers, it is difficult to define
the spatial distribution of hydrogeological units, and this study attempts to use geochemical modeling to identify the groundwater
flow paths in an area of Taiwan. Multiple geochemical analyses, including groundwater chemistry; stable isotopic compositions
of hydrogen, oxygen and carbon; and radiocarbon contents were performed. Using these parameters as the constraints of geochemical
models, the hydraulic connection was examined between pairs of possibly interlinked wells along four selected cross sections,
and the conceptual groundwater model was accordingly established. The resultant model suggests that the hydraulic connection
between aquifers should be correlated with the concept of chronological stratigraphy, especially for low-permeable, unconsolidated
aquifers. Using Darcy’s law, the hydraulic conductivities of the fine-sand aquifers were estimated to be between 3.14 × 10−5 and 1.80 × 10−4 m/s, which are roughly one order of magnitude higher than those derived by in situ pumping tests. The substantial extraction
of groundwater over a long period in the studied area could accelerate groundwater flow, leading to an overestimation of the
aquifer permeability.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users.
Résumé En règle générale, les aquifères sont constitués de couches très perméables capables de conduire des quantités d’eau considérables. Les unités aquifères sont traditionnellement corrélées d’un point de vue lithostratigraphique. Dans le cas des aquifères à faible perméabilité, il s’avère difficile de définir une distribution spatiale des unités hydrogéologiques, et cette étude tente d’utiliser la modélisation géochimique pour identifier les cheminements des eaux souterraines dans un secteur de Taiwan. Plusieurs analyses géochimiques ont été réalisées ; elles incluent la chimie des eaux souterraines, les isotopes stables de l’hydrogène, de l’oxygène et du carbone et l’abondance en carbone 14. En utilisant ces paramètres comme contraintes pour les modèles géochimiques, les liaisons hydrauliques entre les puits potentiellement interconnectés ont été étudiées deux par deux, le long de quatre coupes présélectionnées, et le modèle conceptuel a été établi en conséquence. Ce modèle résultant suggère que les connexions hydrauliques inter-aquifères devraient être corrélées avec les concepts stratigraphiques, surtout pour les aquifères non consolidés à faible perméabilité. Les perméabilités dans les aquifères de sables fins ont été estimées par la loi de Darcy entre 3.14 × 10−5 et 1.80 × 10−4 m/s, soit environ un ordre de grandeur au-dessus de celles issues des tests de pompage sur site. L’exploitation substantielle des eaux souterraines sur une longue période dans la zone d’étude peut accélérer les écoulements souterrains, menant à une surestimation de la perméabilité de l’aquifère.
Resumen Los acuíferos están generalmente compuestos de capas muy permeables que pueden conducir una cantidad considerable de agua subterránea. Tradicionalmente, se ponen en correlación las unidades acuíferas a través del concepto de litoestratigrafía. Para los acuíferos de baja-permeabilidad, es difícil de definir la distribución espacial de unidades hidrogeológicas y este estudio intenta usar modelamiento geoquímico para identificar las direcciones del flujo de agua subterránea en un área de Taiwán. Se realizó el análisis geoquímico múltiple, incluyendo la química del agua subterránea, la composición de isótopos estables de hidrógeno, oxígeno y carbono, y el contenido de radiocarbono. Usando estos parámetros como limitantes de modelos geoquímicos, la conexión hidráulica se examinó entre pares de pozos posiblemente interrelacionados, a lo largo de cuatro cortes transversales seleccionados y de acuerdo con esto se estableció el modelo conceptual del agua subterránea. El modelo resultante sugiere que la conexión hidráulica entre los acuíferos deba interrelacionarse con el concepto de estratigrafía cronológica, sobre todo para los acuíferos sin consolidar de baja permeabilidad. Usando la ley de Darcy, se estimaron las conductividades hidráulicas de los acuíferos de arena fina obteniendo valores entre 3.14 × 10−5 y 1.80 × 10−4 m/s, las cuales son aproximadamente un orden de magnitud mayor, que aquéllos obtenidos in situ por las pruebas de bombeo. La extracción considerable de agua subterránea durante un periodo largo en el área estudiada, podría acelerar el flujo de agua subterránea, llevando a una sobrestimación de la permeabilidad en los acuíferos.相似文献
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The distribution of saline groundwater and its relation to the hydraulic conditions of aquifers and aquitards: examples from Israel 总被引:1,自引:0,他引:1
The effect of separation by aquitard layers on the distribution of saline groundwater in coastal aquifers has been demonstrated in two Israeli coastal aquifers: the Mediterranean and the Dead Sea aquifers. There is vertical separation in the Dead Sea area, even where the clayey aquitard layers are <1?m thick, exhibited by large differences in hydraulic head (2?C5?m), salinity (TDS of 50?C340?g/L) and chemical composition (e.g. Na/Cl range 0.28?C0.55). Similar features are found in the Mediterranean coastal aquifer, where the separating aquitard layers are thicker (??5?C10?m). Here, the different subaquifers host fresh and saline groundwater of different ages (tritium and 14C ages range from tens to thousands of years), as well as different chemical compositions. This high resolution of results can be obtained only by drilling without fluids; otherwise, the spatial information may lead to incorrect representation of the studied aquifer. This is especially important in saline systems where only partial flushing occurs and, thus, large variations in salinity and chemical composition are expected. The main factors controlling the salinity of groundwater in subaquifers in coastal aquifers are their connection to the sea or saline lakes, existence of brines, salinization and flushing rates, and separation by aquitard layers. 相似文献