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41.
我国大多数磷石膏渣场建于山谷之中,并以黏土底垫层作为防渗层。通过建立针对典型山谷型磷石膏渣场的渗流模型,使用二维有限元渗流分析方法对山谷型磷石膏渣场酸性工艺水的渗漏模式和渗漏量进行了分析。分析表明:山谷型磷石膏渣场酸性工艺水渗漏量不仅和黏土防渗层的垂直渗透系数有关,而且与黏土防渗层下部风化岩层的水平渗透性相关。如水平渗透性较大,黏土防渗层对阻止酸性工艺水流失的作用有限。分析还表明,由于谷口垂直防渗帷幕不大可能封堵住所有风化岩层中的裂隙,很难阻止渗过黏土防渗层的酸性工艺水向渣场外渗漏。 相似文献
42.
Charles R. Fellows Patrick L. Brezonik 《Journal of the American Water Resources Association》1980,16(4):635-641
ABSTRACT: Direct measurements indicate that subsurface seepage in the littoral zone contributed 17.5 and 2.0 percent of the total hydraulic inputs, respectively, to Lakes Conway and Apopka, Florida. Two variations of seepage measuring devices were evaluated and gave relative standard deviations of 7 and 24 percent. Measurement inaccuracies were minimized by using large diameter (0.9 cm ID) plastic tubing. For a given transect perpendicular to shore, flow patterns were reproducible over time. Seepage flows ranged from 0 to 112 1/m2-day and most were between 4 and 30 1/m2-day. The detection limit was about 0.2 1/m2-day for a one-hour collection period. Seepage occured primarily within 30 m of shore and generally decreased exponentially with distance from shore. The shape of the bottom profile influenced flow patterns; lake bottoms with steeper slopes had higher flows that were compressed within a narrower zone. After a short-term rain event at Lake Conway, seepage flows increased rapidly to 2.4 times the prerain flow for 1 h and decreased to near background within about 6 h. 相似文献
43.
ABSTRACT: The Conservation Areas in South Florida have been considered as one of the major water storage areas to provide a water supply for the Everglades National Park and Lower East Coast (LEC). Due to the increasing water demands of the area, additional backpumping of the surplus runoff from the LEC area into the Conservation Areas has been considered as one of several alternative plans. The Receiving Water Quantity (EPA, 1971) model has been adapted and modified to be applicable in the Conservation Areas to investigate the possible impact of additional inflow under various backpumping cases. The modification of the model included Manning's roughness coefficient, depth of flow, width of hypothetical channels through marsh areas, rainfall input, seepage rate, etc. The use of the Monte Carlo technique for area computations was found to be easy and time saving both in area and weighting rainfall input to each node. Comparison of results generated by this modified model with the recorded values in Conservation Areas 1 and 2A indicated that the model not only can be a very good evaluation tool to simulate the hydraulic regime of the Conservation Areas system but also a proper tool for investigating the impact of additional inflow resulting from the backpumping related to the water use planning and management. 相似文献
44.
ABSTRACT The effect of hydrologic and chemical processes on salinization of stored waters was determined for two small floodwater-retarding structures located in western Oklahoma. One structure, already designed to accommodate a large influx of sediment, was further overdesigned hydrologically by upstream diversion of approximately one-half the inflow. Over a 2-year period, the total salinity of stored waters increased approximately 22 times and the stored water volume decreased to 1/33 its initial volume in the overdesigned structure, while both volume and salinity of stored waters remained comparatively stable in the other structure. The lack of sufficient dilution by better quality surface runoff and the increased residence time of water in the impoundment apparently caused most of the salinity increase. The bulk of the salt load entering the over-designed structure, to be concentrated later by evaporation, was associated with base rather than storm inflow. After base inflow ceased, substantial losses of salt load and stored water occurred concurrently. The loss was not adequately explained by chemical precipitation in association with evaporation. Seepage and evaporation-associated variables appeared to account for much of the hydrologically unexplained loss of stored waters. 相似文献
45.
城市地下水流场人工调控与减灾方案 总被引:2,自引:1,他引:1
以郑州市为例,针对城市区域长期过量开采地下水导致的一系列严重的环境地质灾害,诸如地下水水位持续下降形成区域地下水降落漏斗并不断扩张、含水层疏干、供水井吊泵、泉水断流、地下建筑工程浸没、地面沉降和塌陷等,探讨了城市地下水流场人工调控的减灾方案。建立了地下水系统的准三维动态数值仿真模型,以非均质各向同性渗流模型仿真地下水流,用不规则三角网格有限差分法求解了三维数值仿真模型。先解逆问题反求参数,再解正问题计算地下水各项资源量,数值仿真预报地下水渗流场至1998年。在此基础上,通过地下水渗流场的宏观调控与优化管理,使研究区内不合理开采地下水资源所引发的环境灾害减小到最低程度,为郑州市的环境减灾工作提供了科学依据。 相似文献
46.
基于最大Lyapunov指数分析的尾矿坝浸润线控制混沌方法 总被引:1,自引:1,他引:1
为了改善尾矿坝浸润线状况,提出了一种控制混沌方法。该方法对时间序列叠加一个周期振动,通过最大Lyapunov指数分析,来判别叠加前后系统混沌特性的变化,进而实现控制混沌。应用这种方法,分析了银山铅锌矿尾矿坝浸润线实测数据。结果表明,叠加周期振动可以降低最大Lyapunov指数。最大Lyapunov指数的降低程度与振动周期成负相关,与振幅成正相关。采用控制混沌方法,即对尾矿排放、库水位调节、排渗、不同尾矿库的使用等措施进行周期性控制,可以提高尾矿坝安全度,实现尾矿坝科学管理。中还以防洪高度为例,具体分析了尾矿坝工程中的控制混沌,表明该方法在应用上是可行的。 相似文献
47.
48.
频繁发生的城市内涝灾害,成为城市建设管理工作中讫待解决的的重大问题。地面明流超量、城市大量蓄水场地被侵占、城市路面下渗能力降低是引发内涝的主要原因。城市雨水资源化是从雨水源头做起,增加雨水收集利用量,优化排蓄组合,增大渗透量。既有效地实现雨水资源化,又达到减排与缓排洪水流量,抑制城市内涝的目的。 相似文献
49.
Hydrochemistry of urban groundwater, Seoul, Korea: the impact of subway tunnels on groundwater quality 总被引:1,自引:0,他引:1
Chae GT Yun ST Choi BY Yu SY Jo HY Mayer B Kim YJ Lee JY 《Journal of contaminant hydrology》2008,101(1-4):42-52
Hydrogeologic and hydrochemical data for subway tunnel seepage waters in Seoul (Republic of Korea) were examined to understand the effect of underground tunnels on the degradation of urban groundwater. A very large quantity of groundwater (up to 63 million m3 year− 1) is discharged into subway tunnels with a total length of 287 km, resulting in a significant drop of the local groundwater table and the abandonment of groundwater wells. For the tunnel seepage water samples (n = 72) collected from 43 subway stations, at least one parameter among pathogenic microbes (total coliform, heterotrophic bacteria), dissolved Mn and Fe, NH4+, NO3−, turbidity, and color exceeded the Korean Drinking Water Standards. Locally, tunnel seepage water was enriched in dissolved Mn (avg. 0.70 mg L− 1, max. 5.58 mg L− 1), in addition to dissolved Fe, NH4+, and pathogenic microbes, likely due to significant inflow of sewage water from broken or leaking sewer pipes.Geochemical modeling of redox reactions was conducted to simulate the characteristic hydrochemistry of subway tunnel seepage. The results show that variations in the reducing conditions occur in urban groundwater, dependent upon the amount of organic matter-rich municipal sewage contaminating the aquifer. The organic matter facilitates the reduction and dissolution of Mn- and Fe-bearing solids in aquifers and/or tunnel construction materials, resulting in the successive increase of dissolved Mn and Fe. The present study clearly demonstrates that locally significant deterioration of urban groundwater is caused by a series of interlinked hydrogeologic and hydrochemical changes induced by underground tunnels. 相似文献
50.
地铁建设中地下水影响是环境损伤事故最重要的诱因,分析了近年地铁施工及渗害诱发地层沉降、建筑坍塌的典型工程事故。鉴于泡沫剂改良渣土是盾构隧道施工中维护开挖面稳定及控制地层渗害的极端重要性,研制了一种新型泡沫剂发泡装置,进行了泡沫剂改良地层的系列实验研究,获得了泡沫剂对粘性土和砂土的渗透性影响、流动性影响的实验规律,可为盾构施工中开挖面稳定性与渗害控制提供重要依据。 相似文献