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1.
王瑶 《陕西煤炭》2020,39(2):68-72
黄陵矿区位于黄陇侏罗纪煤田北部,主要开采2#煤层,矿井生产中对各含水层特征认识不一,严重影响了煤矿的安全生产。针对此问题,收集整理黄陵矿区历年来的勘查数据,对各地层含水性特征进行客观分析与研究,并对主要含水层的富水性进行详细论述。研究结果表明,影响矿区煤层采掘的主要含水层为白垩系下统洛河组含水层和侏罗系中统直罗组含水层,其中,洛河组含水层对矿井采掘的影响较为突出。洛河组含水层富水性属于弱-中等,弱富水性区域位于矿区的东部,中等富水性区域位于矿区的中西部。今后矿井防治水工作中需高度重视矿区中西部洛河组含水层对煤矿采掘的影响。  相似文献   
2.
The ability of indigenous microorganisms to degrade benzene, toluene, ethylbenzene and xylenes (BTEX) in laboratory scale flow-through aquifer columns was tested separately with hydrogen peroxide (110 mg/l) and nitrate (330 mg/l as NO3) amendments to air-saturated influent nutrient solution. The continuous removal of individual components from all columns relative to the sterile controls provided evidence for biodegradation. In the presence of hydrogen peroxide, the indigeneous microorganisms degraded benzene and toluene (> 95%), meta- plus para-xylene (80%) and ortho-xylene (70%). Nitrate addition resulted in 90% removal of toluene and 25% removal of ortho-xylene. However, benzene, ethylbenzene, meta- and para-xylene concentrations were not significantly reduced after 42 days of operation. Following this experiment, low dissolved oxygen (< 1 mg/l) conditions were initiated with the nitrate-amended column influent in order to mimic contaminated groundwater conditions distal from a nutrient injection well. Toluene continued to be effectively degraded (> 90%), and more than 25% of the benzene, 40% of the ethylbenzene, 50% of the meta- plus para-xylenes and 60% of the ortho-xylene were removed after several months of operation.  相似文献   
3.
用土壤含水层处理系统去除水库微污染有机物的试验研究   总被引:10,自引:2,他引:8  
本文针对当前中国饮用水源污染以微污染为主的特点,以北京三家店水库原水和永定河河道砂为研究对象,设计了用于表征土壤含水层处理系统的一维土柱,进行污水净化效果的试验研究。结果表明,土壤含水层处理系统对三家店水库微污染水中的有机物有一定的去除效果,在0.12m/d的水力负荷条件下,对CODMo去除率虽然仅为15%,但是出水达到了地表水Ⅱ类水质标准;对BOD5的去除率达到了55%,可以被有效地去除。渗透速率相同时,水力负荷周期对去除效果的影响不明显,但在保证一定水力负荷的情况下,可适当延长落干期,恢复土壤的渗透能力,达到较好的处理效果。同时,土壤含水层处理系统的净化能力主要发生在土层50cm以内。  相似文献   
4.
Investigations of water inrushes from aquifers under coal seams   总被引:6,自引:0,他引:6  
In many coal mines, limestone-confined aquifers underlie coal seams. During coal extraction from these mines, water inrushes occur frequently with disastrous consequences. This paper introduces the hydrogeological conditions of the coal mines and the potential water inrush disasters from aquifers under coal seams. It then presents the water inrush mechanism. The main factors which control water inrushes include strata pressure, mining size, geologic structures and the water pressure in the underlying aquifer. Analysis shows that reduction of confinement due to mining is the major cause of the water-conducting failure in the floor strata. The depth of the failure zone is strongly dependent on the mining width. This paper also presents field observation results of the water-conducting failure in the floor strata, and applies the finite element method coupled with stress-dependent permeability to analyze hydraulic conductivity enhancement due to coal extraction. Finally, theoretical and empirical methods to predict water inrushes are given, and technical measures for improving mine design and safety for coal extraction over aquifers are presented. These measures include fault and fracture grouting and mining method modification such as changing long-wall to short-wall mining.  相似文献   
5.
An analytical solution is presented to the problem of steady groundwater flow seeping into a pumped cylindrical hole partially penetrating a homogeneous and anisotropic confined aquifer overlying a gravel substratum. Solutions are obtained for two general cases of the problem: (1) when the level of the pumped hole is below the confining layer; (2) when it is above it. The validity of the proposed theory is tested by comparing analytical predictions obtained for a few flow situations with corresponding results obtained by numerical means. The theory presented here can be utilized to convert the rate of rise of water in a pumped auger hole into directional conductivities of soil, in areas where water is found to be in a confined state overlying a gravel substratum. The study shows that the conductivity values calculated by neglecting the confining pressure of an artesian aquifer with a gravel base [i.e., by applying the existing (Boast and Kirkham in 1971), auger hole seepage theory for a phreatic aquifer with a gravel base to confined situations] may result in serious error; hence, the artesian head of an aquifer must be accounted for while computing the conductivity values. Further, it is observed that the area contributing flow to a pumped auger hole/well with a gravel base is mostly restricted to a short radial distance from the center of the hole, particularly for situations where the gravel substratum is located close to the bottom of the hole. This is in contrast to auger hole flow situations overlying an impervious substratum, where the domain contributing flow is mostly spread out to a considerable distance from the center of the hole.  相似文献   
6.
高含水期注采井网的重组调整   总被引:16,自引:3,他引:13  
河南双河油田厚油层发育,特高含水开发期剩余可动油滞留在层内夹层发育的部位和注采井网不完善区、多口油井或注水井之间的滞留区、压力平衡区。提出以注采井组为调整单元、以剩余油相对富集的流动单元或单层为调整对象,按井组重新组合注采关系,钻少量新井,通过对老井的封、补、调及低效井的综合治理,将强化注采关系与改变液流方向结合,达到增加注入水波及体积、提高驱替压力梯度而动用利余油的目的。双河油田北块Ⅳ1-3层系实施井网重组调整后,注采井数比由0.63增至0.82,整个单元水驱采收率由46.28%提高到49.5%。图2表1参25  相似文献   
7.
在分析高含水开发单元特点的基础上,针对该阶段剩余油的品位、分布和油水关系极为复杂、挖潜难度大的技术难点,提出了适合江苏复杂断块油田高含水开发单元改善水驱开发效果的思路和工作程序、技术对策,并在真武油田高含水开发单元进行了实际应用,取得了良好的效果.  相似文献   
8.
Determining the thickness of a LNAPL (light non-aqueous phase liquid) hydrocarbon plume in the fractured rock surrounding a borehole is a very important aspect in determining the quantity and degree of contamination of the groundwater and soil, as well as deciding on applicable remediation measures. This review aims to compare some of the field and empirical methods to eventually propose a method of confirming the plausibility of the determined thickness. General insight is supplied relating to the occurrence of groundwater in the Earth’s crust, the basic principles of multiphase flow and the properties of the three fluids of importance, being water, Jet A-1 fuel and air. From the methods applied, the field bail-down method of Hughes et al. and the mathematical approach according to CONCAWE supplied reasonable results, with the Zillox and Muntzer equation providing no rational outcome due to changing water levels from regular bailing of the LNAPL. Furthermore, practically none of these methods have been developed for deep, fractured aquifers. By plotting regular depths to water and fuel on the abscissa axis with free product thickness on the ordinate, the depth to water and depth to fuel linear plots will intersect where the free product thickness equals zero. This indicates the static water level (i.e., the ground water level prior to hydrocarbon contamination) and by subtracting this from the free product depth, a maximum product thickness is obtained.   相似文献   
9.
The nonlinear Boussinesq equation is used to understand water table fluctuations in various ditch drainage problems. An approximate solution of this equation with a random initial condition and deterministic boundary conditions, recharge rate and aquifer parameters has been developed to predict a transient water table in a ditch-drainage system. The effects of uncertainty in the initial condition on the water table are illustrated with the help of a synthetic example. These results would find applications in ditch-drainage design.Notation A / tanh t - a lower value of the random variable representing the initial water table height at the mid point - a+b Upper value of the random variable representing the initial water table height at the midpoint - B tanh t - C 4/ - h variable water table height - h mean of the variable water table height - h m variable water table height at the mid point - h m mean of the variable water table height at the mid point - K hydraulic conductivity - L half spacing between the ditches - m 0 initial water table height at the mid point - N Uniform rate of recharge - S specific yield - t time of observation - x distance measured from the ditch boundary - (4/SL)(NK)1/2 - (L/4)(N/K)1/2 - dummy integral variable  相似文献   
10.
卢全中      李聪  刘聪      占洁伟     《延边大学学报(自然科学版)》2021,(2):366-375
地裂缝类型多样,灾害严重。根据主导因素及动力类型,将地裂缝分为构造地裂缝和非构造地裂缝两大类和16个类别; 基于地裂缝的工程地质特征、水文地质特征和活动特征,认为地面沉降区构造地裂缝发生超常活动的本质原因是地裂缝错断了含水层,在过量抽取地下水时地裂缝两侧形成明显的水头差,产生不均匀压缩,从而导致地表发生较大的差异沉降; 提出了采用定向钻井打通被错断含水层以实现地裂缝两侧水位自然平衡的地面沉降区构造地裂缝防控方法——通水调压控裂法(CABHP),该方法可以有效控制地面沉降区的构造地裂缝活动,避免大量土地资源浪费和灾害损失。  相似文献   
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