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971.
The range of observed chemical compositions of natural terrestrial waters varies greatly especially when compared to the essentially constant global composition of the oceans.The concentrations of the REEs in natural terrestrial waters also exhibit more variation than what was reported in seawater,In terrestrial waters ,pH values span the range from acid up to alkaline,In addition,terrestrial waters can range from very dilute waters through to highly concentrated brines.The REE concentrations and their behavior in natural terrestrial waters reflect these compositional ranges,Chemical weathering of rocks represents the source of the REEs to natural terrestrial waters and ,consequently,the REE signature of rocks can impart their REE signature to associated waters,In addition,Because of the typical low solubilities of the REEs both surface and solution complexation can be important in fractionating REEs in aqueous solution.Both of these processes are important in all natural terrestrial waters,however,their relative importance varies as a function of the overall solution composition,In alkaline waters,for example,Solution complexation of the REEs with carbonate ions appears to control their aqueous distributions whereas in acid waters,the REE signature of the labile fraction of the REEs is readily leached from the rocks.In circumneutral pH waters,both processes appear to be important and their relative significance has not yet been determined.  相似文献   
972.
A modeling method that takes into account known points on a geological interface and plane orientation data such as stratification or foliation planes is described and tested. The orientations data do not necessarily belong to one of the interfaces but are assumed to sample the main anisotropy of a geological formation as in current geological situations. The problem is to determine the surfaces which pass through the known points on interfaces and which are compatible with the orientation data. The method is based on the interpolation of a scalar field defined in the space the gradient in which is orthogonal to the orientations, given that some points have the same but unknown scalar value (points of the same interface), and that scalar gradient is known on the other points (foliations). The modeled interfaces are represented as isovalues of the interpolated field. Preliminary two-dimensional tests carried-out with different covariance models demonstrate the validity of the method, which is easily transposable in three dimensions.  相似文献   
973.
晋南地穹列煤层气赋存区构造应力分析   总被引:2,自引:0,他引:2  
根据晋南地穹列构造型相分析,恢复了4期应力场:①地洼初动期(印支期)近S-N水平挤压;②地洼激烈期(燕山期)NWW-SEE水平挤压;③地洼余动期(喜山早期)NNE-SSW水平挤压;④地洼余动期(喜山中期)NW-SE、NWW-SEE近水平伸展。其现代构造应力场以NW-SE向伸展应力场为主,但在沁水地穹则表现为NEE-SWW向近水平挤压应力场。有限元模拟分析证实:此局部挤压应力场的动力来源于挽近地质时期太行山和霍山的隆起与抬升,临汾地洼和太原地洼中的伸展应力场则与地洼壳体下部慢源物质逸散所导致的侧向拉伸有关。区内应力降的分布特点与晋南地穹列断裂构造发育程度具有良好的对应相关性,在高应力降区,单位体积煤层气含量显著高于其它地区。模拟主应力差等值线图中两个高主应力差值区恰好与东部沁水地穹中两个高含气量区相对应,充分说明地洼余动期构造应力场中高压应力区是煤层气富集的有利地区。  相似文献   
974.
本文介绍了瑶沟等地区勘查金矿的放射性和非放射性气体地球化学方法的研究成果:基本查明了应用本方法勘查金矿的主要条件是金矿中伴生有足够的U,Hg和碳酸盐矿物;研制成了壤中气(Rn-CO2)联测技术,提高了测量质量和探测深部矿体的能力;利用壤中气(Rn-CO2)异常进行了成矿预测,并已获得成功。  相似文献   
975.
460铀矿床成矿构造背景   总被引:1,自引:1,他引:1  
任之鹤  万天丰 《铀矿地质》1997,13(3):154-158
460矿床为一个大型斑岩型铀-钼矿床。晚侏罗世近东西向分布的火山岩系为铀元素的预富集打下了基础。白垩纪流纹斑岩为其主要的成矿母岩,可能为NE向展布。早第三纪末期的热液活动使铀进一步富集成矿,在区域应力场作用下,矿体呈NW走向。晚第三纪的表生淋积作用,使矿体上部近地表处形成次生富集带。基于上述研究,可以进一步明确此类矿床的找矿方向。  相似文献   
976.
井间地震串联滤波波场分离方法   总被引:2,自引:0,他引:2  
本文根据井间地震波场响应以及多种波场分离方法的性能,采用基于K-L变换的特征向量滤波与中值滤波相结合的串联滤波方法分离井间地震观测到的上、下行反射波。数值计算结果表明:在波场分离过程中,由于同时综合考虑了地震波能量主分量分布以及反射波同相轴时差两个参数,使得分离效果明显、处理更为简便,具有滤波特征矢量的选取条件更为宽松、无需精确确定拉平轴的时间等特点。  相似文献   
977.
判定地下水二维水动力弥散参数的直线图解法   总被引:1,自引:0,他引:1  
弥散参数的求得,是正确认识地下水污染运移及对其控制的前提。本文根据极值理论和非线性方程线性化手段,导出了浓度和时间变化的线性关系,得出了确定弥散参数的直线图解法。它可以弥补其它方法的不足。借用实际弥散试验资料对其进行了检验,表明所建数学模型与实际模型之间吻合良好,即所求得的参数结果可信。  相似文献   
978.
口泉沟南水源地环境同位素研究和水资源评价   总被引:3,自引:0,他引:3  
分析了大同矿区口泉沟南区的水文地质条件,利用氢,氧,铀,硫,碳等环境同位素研究了口泉南与相邻的泉域和三层洞泉域的关系及地下水的补给来源;用有限元法进行了地下水资源评价和水位预报,证明在该区建立供水10^4m^3的水源地是可能的。  相似文献   
979.
The paper is a report of the field campaign undertaken by an international team (Italian, French and Indonesian) a few weeks after the occurrence of a tsunami invading the south-eastern coast of Java (Indonesia) and it complements the results of a concurrent field survey by Asian and USA researchers. The tsunamigenic earthquake occurred on 3 of June 1994 in the Indian Ocean about 200 km south of Java. The tsunami caused severe damage and claimed many victims in some coastal villages. The main purpose of the survey was to measure the inundation and the runup values as well as to ascertain the possible morphological changes caused by the wave attacks. Attention was particularly focussed on the most affected districts, that is Lumajang, Jember and Banyuwangi in Java, although also the districts of Negera, Tebanan and Denpasar in Bali were examined. The most severe damage was observed in the Banyuwangi district, where the villages of Rajekwesi, Pancer and Lampon were almost completely levelled by the violent waves. Most places were hit by three significant waves with documented wave height often exceeding 5 m. The maximum runup value (9.50 m) was measured at Rajekwesi, where also the most impressive erosion phenomena could be found. In contrast, only in one place of the neighbouring island of Bali was there a slight tsunami, the rest of the island being practically unaffected.  相似文献   
980.
Amin  Ammar  Bankher  Khalid 《Natural Hazards》1997,16(1):57-63
The occurrence of land subsidence in the Kingdom Saudi Arabia is either natural or man-made. Natural land subsidence occurs due to the development of subterranean voids by a solution of host rocks in carbonate and evaporite terrains, over many areas of Saudi Arabia. Man-induced land subsidence is either due to the removal of groundwater in the agricultural areas or to wetting of unstable soils. Therefore, earth fissures and a lowering of the ground surface in unconsolidated sediments took place in alluvial plains and volcanic vent terrains. Unstable soils include Sabkha soils and loess sediments. These types of soils occur in coastal plains, desert areas and volcanic terrains. When this soil is wetted either during agricultural activities, waste disposal or even during a rain storm, subsidence takes place due to either the removal of salts from the Sabkha soil or the rearrangement of soil particles in loess sediments.  相似文献   
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