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1.
田庄煤矿主采煤层为石炭系太原组16上及17煤层,威胁煤层开采的地下水水源主要为十下灰、十三、十四灰和奥灰含水层。其中十三、十四灰含水层水力联系密切,可按同一含水层看待。十下灰岩水为16上煤的直接充水水源,十三、十四灰灰岩水和奥灰灰岩水为16上及17煤层的底板间接充水水源,在构造地段有可能转化为直接充水水源。在研究煤矿群孔放水试验的基础上,全面分析了氢氧同位素资料,结果表明井田内十下灰和奥灰含水层有各自的补、径、排系统,正常情况下水力联系较弱;十三、十四灰含水层与十下灰和奥灰含水层均发生着水力联系,在采掘及导水断层的影响下,其含水层间地下水联系变得更加密切。两种研究的结论基本一致,增加了成果的科学性和可信性。  相似文献   

2.
奥灰水是东滩矿下组煤安全开采的主要水害威胁和重点防治对象。东滩矿下组煤底板奥灰水压高达7.20~11.46 MPa,在不考虑底板受采动破坏影响下,奥灰对17煤的突水系数为0.077~0.158 MPa/m,最小值亦接近现有规程标准上限值(0.10 MPa/m)。为了查清奥灰含水层水文地质条件进而制定合理的奥灰水防治措施,基于矿井的水文地质条件及奥灰放水试验,建立了适合本矿井的水文地质模型,并利用地下水模拟软件Visual Modflow,计算了奥灰含水层水文地质参数。通过验证,该水文地质模型能够客观的反映奥灰天然流场,为今后预测矿井涌水量、奥灰疏降水量提供了依据。   相似文献   

3.
对济宁何岗煤矿16上、17煤水文地质条件进行补充勘探。研究认为济宁何岗煤矿井田内主要含水层有第四纪砂砾层,山西组3上、3下煤层顶底板砂岩、太原组三灰、十下灰、十三灰及奥陶纪灰岩。16上、17煤的主要水害是太原组下部灰岩水和奥灰水,16上、17煤水文地质条件属中等局部复杂类型,开采时的矿井最大涌水量为816m3/h。断层和裂隙是诱发突水的主要因素,生产中必须采取有效的安全防水措施。  相似文献   

4.
井下钻孔注浆治理奥灰水技术   总被引:3,自引:1,他引:3  
肥城矿区水文地质条件极其复杂,奥灰水水位高,水量大,严重制约着煤矿开采的正常进行。通过肥城矿区井下施工奥灰孔进行奥灰水治理的经验及技术,认为井下施工奥灰孔,建立井下水文观测网以及对奥灰表层进行注浆改造,是行之有效的防治奥灰水的途径。  相似文献   

5.
本文概括地阐述了邯邢矿区水文地质条件和奥灰水对煤层开采的影响,认为奥灰水的宏观条件基本查明,提出不再需要进行大范围勘探,而只需分析单个井田水文地质条件以分别对待的防治观点。   相似文献   

6.
闫勇 《煤田地质与勘探》2005,33(Z1):125-130
通过对潘西煤矿水文地质条件及开采实际揭露情况综合分析,对奥灰突水机理进行了研究,在此基础上对受奥灰水严重威胁的19层煤的开采提出了防治途径.  相似文献   

7.
沙曲井田位于山西河东煤田离柳矿区的中部,处在柳林泉域岩溶水系统的径流区。矿区奥灰水水量大,水位标高为+797~+802m,其中的4#煤底板承受奥灰水压2~5MPa,10#煤底板承受奥灰水压3~6MPa,属带压开采矿井。利用井田以往的地质及水文地质勘探资料,应用GMS软件建立矿区三维立体模型和地下水渗流的数学模型,实现水文地质结构三维可视化,使数学模型能正确地反映预测区的水文地质条件,达到数值仿真效果;应用有限差分数值法,对开采上组煤(3#+4#)和下组煤(8#+9#、10#)时,石炭系太原组灰岩含水层和奥陶系峰峰组含水层的疏降进行矿井涌水量预测,为矿井的安全生产和防治水工作提供依据。  相似文献   

8.
新驿煤矿下组煤矿井涌水量预测研究   总被引:2,自引:0,他引:2  
在系统收集水文地质资料的基础上,运用"大井法"和水文地质比拟法对开采16煤的涌水量进行了预测,利用突水系数法,对八采区16煤底板奥灰突水危险性进行了评价,得出了突水系数分区图。经综合分析对比,采用大井法的预测结果:即开采16煤正常涌水量为482m3/h,最大涌水量为540m3/h;奥灰突水量初期为1 083~10 640m3/h,一般为660~4470m3/h;如对奥灰采取疏排降压方案,疏降排水量预计为770m3/h。此结果可作为矿井回采阶段防治水设计的参考。  相似文献   

9.
为安全开采下组煤,详细分析了矿区奥灰水文地质条件.以研究煤层底板突水因素、突水机理为切入点,利用地理信息系统技术,对下组煤开采之前奥灰突水的危险性进行了预测,即可分为3个区(安全区、可能突水区、突水区),同时提出下组煤先期开采的范围为-210 m水平以上范围.  相似文献   

10.
本文借用井田外围奥灰水勘探资料对井田水文地质特征作了综合分析,为该区下组煤的开发水文地质工作提供了研究实例。   相似文献   

11.
12.
南秦岭下地壳组成及岩石圈的拆离俯冲作用   总被引:3,自引:3,他引:3       下载免费PDF全文
根据新提供的Pb同位素组成及岩石地球化学研究成果,本文进一步证实了位于北秦岭北界的明港地区发育的早中生代安山玄武质火山角砾岩岩筒所携带的下地壳捕虏体属于南秦岭。所恢复的南秦岭下地壳剖面自下而上为:底侵成因的变辉长岩-基性麻粒岩(其中含有榴辉岩及辉石岩的透镜体)-酸性麻粒岩。秦岭造山带总体的岩石因模型为:南秦岭(扬子块体)向北拆离俯冲,北秦岭地壳向华北仰冲,华北岩石因呈楔状插入秦岭造山带,拆离面约在中、下地壳之间。南秦岭俯冲岩片延伸的范围在平面上有可能达到400km。  相似文献   

13.
14.
青藏高原综合观测研究站的回顾与展望   总被引:1,自引:1,他引:0  
赵林  郭东信 《冰川冻土》1998,20(3):287-292
中国科学院青藏高原综合观测研究站从1988年建站到1998年以来,在各个方面均取得了长足的发展,横向生产性项目的开展和完成不仅解决了部队和地方的实际问题,而且缓和了观测研究站在运行过程中所面临的经费严重不足的问题,同时也为我所冻土专业研究人员提供了在生产中实践的机会,在基础理论研究方面,承担了国家攀登计划项目,国家基金项目,中国科学院重点项目和中国科学院冰冻圈专项项目等的研究工作,在多年冻土变化,  相似文献   

15.
16.
铀钍的地球化学及对地壳演化和生物进化的影响   总被引:10,自引:2,他引:8  
本文论述了在含挥发份和贫挥发份条件下U、Th的迁移行为及其对地球和行星演化的影响,并阐述了造成地球独特地质演化历史的原因。提出了U、Th在地球中的迁移模式以及该模式对地壳形成、演化的控制作用和对生物发展演化的可能影响。  相似文献   

17.
In his last lifetime essay, “A Few Words about the Noosphere”, Academician V.I. Vernadsky (1944) wrote that all living organisms on the planet, including man, are integral to the biosphere of the Earth, its material and energy structure and cannot be physically independent of it even for a minute. However, the substrate that generates all living beings and is no less tightly bound to the biosphere has always been characterized by a significant geochemical heterogeneity, traced both in the vertical and in the lateral structure of all geospheres.
The present work is devoted to three most important aspects of modern geochemistry and biogeochemistry:
  • — evolution of the ecological and geochemical state of the environment under conditions of a virgin (anthropogenically untouched) biosphere;
  • — structural features of the geochemical organization of the modern noosphere;
  • — specificity of the interaction of living matter with the environment under increasing anthropogenic load.
On the basis of theoretical concepts of biogeochemistry and geochemical ecology, formulated in the works of V.I. Vernadsky, A.P. Vinogradov, A.E. Fersman, B.B. Polynov, A.I. Perel’man, M.A. Glazovskaya, V.V. Kovalsky, E. Odum, B. Commoner, E.I. Kolchinskii and others, the author puts forward a hypothesis that there exist two qualitatively different stages in the evolution of the biosphere.The first stage is recognized as the period of natural evolution of the biosphere during which it evolves successively into a more complex and more biogeochemically specialized object. In the course of the geological time, this constantly results, on the one hand, in an increase in species diversity and the perfection of individual species, and, on the other hand, to directed improvement and a greater differentiation of the geochemical conditions of the environment. At this stage, the evolution of all systems of the biosphere that were controlled by the mechanisms of self-organization and self-regulation resulted in the establishment of a dynamic equilibrium, which was responsible for the cycling of all essential chemical elements and therefore providing ecologically optimal geochemical conditions in all ecological niches and for all species and biocenoses inhabiting the biosphere at any given moment.The beginning of the second stage is related to the appearance of reason and qualitative changes in the biosphere caused by the goal-directed activity of the human mind, as an entirely new geological force that appeared to be able not only to disrupt the functioning of natural mechanisms of self-regulation and selforganization, but also to transform the environment in the intersts of a single biological species, Homo sapiens. A direct consequence of this change was the uncontrolled transformation of the natural environment, during which the primary structure (geochemical background) created in the course of billions of years was eventually superimposed by a qualitatively new layer of anthropogenically-derived chemical elements and compounds, thus building an interference pattern of a new geochemical field with which practically all modern living organisms are now forced to interact.An outstanding feature of the new evolutionary stage of the natural environment, called by Vernadsky the noosphere, is that biogeochemical changes at this stage proceed at a rate which exceeds that required for the living matter to adapt to these changes. The result is the disruption of the existing parameters of the biological cycle, leading to the emergence of a significant number of endemic diseases of geochemical nature.The proposed approach was used to prove the anthropogenic genesis of existing geochemical endemic diseases and explain the mechanisms of their appearance. In addition, this approach allowed us to develop a new methodology for mapping zones of ecological and geochemical risk and noticeably simplify the procedure of monitoring distribution and prevention of all diseases of geochemical nature.  相似文献   

18.
共和盆地层状地貌系统与青藏高原隆升及黄河发育   总被引:1,自引:0,他引:1       下载免费PDF全文
利用卫星遥感影像,结合实地调查和测年结果,对共和盆地层状地貌系统进行了解译、分析。研究表明,共和盆地层状地貌系统由山麓剥蚀面、洪积扇面、盆地面以及黄河阶地面构成,其空间结构、物质组成对发生于早更新世早期的青藏运动C幕和中更新世末期的共和运动反映清晰。青藏运动C幕使青藏高原主夷平面在高原差异性隆升中彻底解体,垂直变形量高达1700m。共和运动使黄河在0.11Ma进入共和盆地,其后黄河平均以3.5mm/a的侵蚀速率下切盆地,同时在盆地边部的山前古冲洪积扇以大致相近的速率被抬升,最终导致高差在2000m左右的层状地貌系统的出现。  相似文献   

19.
The experimental variogram computed in the usual way by the method of moments and the Haar wavelet transform are similar in that they filter data and yield informative summaries that may be interpreted. The variogram filters out constant values; wavelets can filter variation at several spatial scales and thereby provide a richer repertoire for analysis and demand no assumptions other than that of finite variance. This paper compares the two functions, identifying that part of the Haar wavelet transform that gives it its advantages. It goes on to show that the generalized variogram of order k=1, 2, and 3 filters linear, quadratic, and cubic polynomials from the data, respectively, which correspond with more complex wavelets in Daubechies's family. The additional filter coefficients of the latter can reveal features of the data that are not evident in its usual form. Three examples in which data recorded at regular intervals on transects are analyzed illustrate the extended form of the variogram. The apparent periodicity of gilgais in Australia seems to be accentuated as filter coefficients are added, but otherwise the analysis provides no new insight. Analysis of hyerpsectral data with a strong linear trend showed that the wavelet-based variograms filtered it out. Adding filter coefficients in the analysis of the topsoil across the Jurassic scarplands of England changed the upper bound of the variogram; it then resembled the within-class variogram computed by the method of moments. To elucidate these results, we simulated several series of data to represent a random process with values fluctuating about a mean, data with long-range linear trend, data with local trend, and data with stepped transitions. The results suggest that the wavelet variogram can filter out the effects of long-range trend, but not local trend, and of transitions from one class to another, as across boundaries.  相似文献   

20.
B. K. Maloney 《GeoJournal》1993,31(4):355-362
While botanists, archaeologists, historians and linguists have contributed to the debate on the origin of the coconut pollen analysts have been silent. This article attempts to integrate the results of recent palaeoecological research with findings from the other disciplines.  相似文献   

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