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101.
黔东及毗邻地区南华纪锰矿成矿期构造主要为同沉积断层,该类型断层在成矿期十分发育,控制和形成了南华纪早期不同序次的次级裂谷盆地,同沉积断层的垂向发育形成了锰矿成矿通道,同沉积断层可作为古天然气渗漏沉积型锰矿床关键地质找矿标志,本文阐述了其主要判别特征。南华纪锰矿形成后,历经加里东运动、印支运动及燕山运动等构造运动,总体来说,该区构造格局主要是受到燕山运动影响形成。本文也讨论了研究区成矿后广泛发育且比较典型,对锰矿层保存与破坏有着较大影响的犁式正断层及其判别特征。  相似文献   
102.
川西坳陷东坡沙溪庙组气藏成藏演化模式   总被引:1,自引:0,他引:1  
川西坳陷东坡气藏主力产层为沙溪庙组,其圈闭类型以构造-岩性圈闭为主,多为致密砂岩储层,但断层发育,有效改善了储层物性,断砂匹配样式与构造演化对油气成藏过程有重要影响。基于前人已有的认识,通过沙溪庙组气藏成藏动力演化、气水分布特征及生烃期次分析,结合构造演化、成藏幕次等研究,认为沙溪庙组天然气成藏受构造古隆起、断砂配置、储层物性、构造演化影响,形成了“构造控向、断砂控运、储层控藏、演化控调”的成藏演化模式,同中存异,高庙子地区古构造的控制作用更为明显,而中江地区岩性控制作用占主导。沙溪庙组气藏间歇性充注具“燕山期三幕成藏,喜山期调整改造”的成藏特征,多期构造演化和较强的储层非均质性影响了含气饱和度,导致沙溪庙组气藏分布、气藏产能差异大。  相似文献   
103.
张健  张国祥  王金意 《江苏地质》2018,42(1):127-130
不同影响因素对页岩水力压裂效果有不同的影响。基于三维数值计算模型介绍了水力压裂的典型过程,针对水平最小主应力、页岩的弹性模量和渗透系数对压裂的影响进行了分析。结果表明:随着水平最小主应力的增加,裂缝高度也随之增加;随着页岩的弹性模量增加,裂缝的高度随之降低;随着渗透系数的增加,裂缝高度也随之增加;随着压裂液的黏度系数提高,裂缝的高度降低。  相似文献   
104.
李爱  王建  宋樾  刘建国  薛胜超 《地质学报》2018,92(2):263-277
红旗岭铜镍硫化物矿床位于兴-蒙造山带东部。矿区出露30多个镁铁-超镁铁质侵入体,主要由橄榄岩、辉石岩和辉(苏)长岩组成。本文通过对红旗岭含矿镁铁-超镁铁质岩体的主、微量及铂族元素(PGE)的研究,探讨了红旗岭岩体成矿母岩浆性质、PGE亏损的原因以及岩体形成的构造环境。全岩主、微量元素地球化学分析表明,红旗岭岩体具有高MgO(平均28.75%)、低TiO2(平均0.44%),富集轻稀土元素(LREE)、亏损高场强元素(HFSE),极低ΣPGE(平均2.08×10~(-9))和高Cu/Pd(平均2916×10~3)的特征。岩石样品显示相似的微量和PGE配分模式,表明其来源于相同的岩浆源区。根据橄榄石-熔体平衡及质量平衡原理估算出红旗岭母岩浆为高镁玄武质岩浆(MgO=10.74%、FeO=7.78%)。红旗岭母岩浆在早期演化过程中发生硫化物熔离作用导致了红旗岭含矿岩体PGE的极度亏损。结合中亚造山带东段构造演化历史,本文认为红旗岭岩体形成于晚三叠世碰撞后伸展环境,矿床的形成受到了古亚洲洋俯冲结束后板片断离的影响。  相似文献   
105.
渝东北地区五峰组—龙马溪组暗色泥页岩沉积厚度介于30.92~164.47m之间,其中在朝阳镇咸池剖面及田坝一带厚度最大,往研究区东西两侧具有减薄的趋势。全区总有机碳含量平均3.32%,中部(平均3.93%)和西部(平均3.59%)相对东部(平均2.77%)具有更高的有机质丰度。有机质以I型腐泥型为主,西部个别剖面及东部栗子坪一带夹少量Ⅱ_1—Ⅱ_2型干酪根,其成熟度普遍处于高成熟—过成熟阶段,呈现自北向南升高的趋势。石英、脆性矿物含量普遍较高(尤其是中西部区块),黏土矿物较低,更易产生储气裂缝及利于后期压裂。储层特征方面,中部地区泥页岩具有更高的孔隙度和较低的渗透率,同时比表面积也相对更高,以有机质孔隙为主。中部区块田坝—朝阳—文峰一带含气性最好,结合页岩厚度、总有机碳含量分布、储层条件及构造保存条件分析,本区中部区块田坝—朝阳—文峰一带具有更好的页岩气勘探前景,是该区下一步勘探的重点区域。  相似文献   
106.
The formation environment of the main coal seam in Shengli coal mine is analyzed, and the effect of coal ash parameters on the coal-forming environment is mainly discussed according to gray component parameters combined with other coal quality test analysis data. Results show that the hydrodynamic conditions of the main coal during coal accumulation have a general pattern of strong northeast and weak southwest, and lakeside swamp is generally in the retrograde process from south to north. The No.5 coal seam is a water entry cycle, and the No.5lower coal is a water withdrawal cycle. The No.6 thick coal seam is formed in the peat swamp environment where the water is shallow and the groundwater activity is weak. The input of terrestrial debris material was most abundant in the formation period of No.5lower coal, followed by No.5 coal, and that in No.6 coal is the least. Vertically, the peat swamp environment changed from weak reduction to weak oxidation to strong reducing environment. The ash yield was low to high to low from bottom to top. The organic sulfur is the main type of sulfur in the main coal seam. The weaker the hydrodynamic condition, the higher the organic sulfur content in the reduction environment, while lower organic sulfur content in the oxidation environment. The peat swamp water of No.5lower coal is medium alkaline, and the peat swamp water of No.5 and No. 6 coals is weakly alkaline or acidic.  相似文献   
107.
冻融循环对不同孔隙率页岩相似材料影响的试验研究   总被引:2,自引:2,他引:0  
基于地质力学模型试验的相似理论,针对寒区岩体工程,分别制作了5种不同孔隙率的页岩相似材料,进行冻融循环试验,探究不同孔隙率的页岩相似材料在冻融前后,其主要物理力学参数的变化规律。试验研究表明:在冻融循环后,页岩相似材料的单轴抗压强度、三轴抗压强度、弹性模量、粘聚力、内摩擦角有不同程度的减小,孔隙率、泊松比有不同程度的增大。页岩相似材料的物理力学参数受冻融循环的影响随孔隙率的增大先增大后减小,孔隙率处于9.4%~13.6%时,受冻融循环影响最大;孔隙率处于5.8%~9.4%时,受冻融循环的影响随孔隙率的增大有增大的趋势;孔隙率处于13.9%~19.1%时,受冻融循环的影响随孔隙率的增大有减小的趋势。研究结果可以为西部寒区的岩土工程建设和减灾提供相关的科学依据。  相似文献   
108.
对川西南荥经坳陷内三口页岩气井尤其是川荥页1井奥陶系开展了系统的岩心观察和分析。三口钻井在梁山组之下均发育十余米厚的灰黑色泥岩,其中川荥页1井灰黑色泥岩厚近16m。沉积相分析认为灰黑色泥岩为浅水陆棚相,泥岩之下发育的大套砂岩为滨岸近滨亚相,总体向上海水逐渐变深。砂岩中发育丰富的沉积软变形构造及波状交错层理、浪成沙纹层理、平行层理、斜层理等构造。川荥页1井上部泥岩中见大量三叶虫、笔石和腕足等化石及其碎片,鉴定表明含有代表中下奥陶统的常见生物分子,如对笔石(Didymograotus sp.)、大洪山虫(Taihungshania sp.)等。该套砂泥岩组合在沉积相及古生物化石等方面明显区别于荥经坳陷周缘奥陶系五峰组—志留系龙马溪组,与研究区及邻区中下奥陶统红石崖组、湄潭组、大湾组、大官山组中段等层位相当。  相似文献   
109.
Minerals constitute a primary ecosystem control on organic C decomposition in soils, and therefore on greenhouse gas fluxes to the atmosphere. Secondary minerals, in particular, Fe and Al (oxyhydr)oxides—collectively referred to as “oxides” hereafter—are prominent protectors of organic C against microbial decomposition through sorption and complexation reactions. However, the impacts of Mn oxides on organic C retention and lability in soils are poorly understood. Here we show that hydrous Mn oxide (HMO), a poorly crystalline δ-MnO2, has a greater maximum sorption capacity for dissolved organic matter (DOM) derived from a deciduous forest composite Oi, Oe, and Oa horizon leachate (“O horizon leachate” hereafter) than does goethite under acidic (pH 5) conditions. Nonetheless, goethite has a stronger sorption capacity for DOM at low initial C:(Mn or Fe) molar ratios compared to HMO, probably due to ligand exchange with carboxylate groups as revealed by attenuated total reflectance-Fourier transform infrared spectroscopy. X-ray photoelectron spectroscopy and scanning transmission X-ray microscopy–near-edge X-ray absorption fine structure spectroscopy coupled with Mn mass balance calculations reveal that DOM sorption onto HMO induces partial Mn reductive dissolution and Mn reduction of the residual HMO. X-ray photoelectron spectroscopy further shows increasing Mn(II) concentrations are correlated with increasing oxidized C (C=O) content (r = 0.78, P < 0.0006) on the DOM–HMO complexes. We posit that DOM is the more probable reductant of HMO, as Mn(II)-induced HMO dissolution does not alter the Mn speciation of the residual HMO at pH 5. At a lower C loading (2 × 102 μg C m?2), DOM desorption—assessed by 0.1 M NaH2PO4 extraction—is lower for HMO than for goethite, whereas the extent of desorption is the same at a higher C loading (4 × 102 μg C m?2). No significant differences are observed in the impacts of HMO and goethite on the biodegradability of the DOM remaining in solution after DOM sorption reaches steady state. Overall, HMO shows a relatively strong capacity to sorb DOM and resist phosphate-induced desorption, but DOM–HMO complexes may be more vulnerable to reductive dissolution than DOM–goethite complexes.  相似文献   
110.
Landslide-prone slopes in earthquake-affected areas commonly feature heterogeneity and high permeability due to the presence of cracks and fissures that were caused by ground shaking. Landslide reactivation in heterogeneous slope may be affected by preferential flow that was commonly occurred under heavy rainfall. Current hydro-mechanical models that are based on a single-permeability model consider soil as a homogeneous continuum, which, however, cannot explicitly represent the hydraulic properties of heterogeneous soil. The present study adopted a dual-permeability model, using two Darcy-Richards equations to simulate the infiltration processes in both matrix and preferential flow domains. The hydrological results were integrated with an infinite slope stability approach, attempting to investigate the hydro-mechanical behavior. A coarse-textured unstable slope in an earthquake-affected area was chosen for conducting artificial rainfall experiment, and in the experiment slope, failure was triggered several times under heavy rainfall. The simulated hydro-mechanical results of both single- and dual-permeability model were compared with the measurements, including soil moisture content, pore water pressure, and slope stability conditions. Under high-intensity rainfall, the measured soil moisture and pore water pressure at 1-m depth showed faster hydrological response than its simulations, which can be regarded as a typical evidence of preferential flow. We found the dual-permeability model substantially improved the quantification of hydro-mechanical processes. Such improvement could assist in obtaining more reliable landslide-triggering predication. In the light of the implementation of a dual-permeability model for slope stability analysis, a more flexible and robust early warning system for shallow landslides hazard in coarse-textured slopes could be provided.  相似文献   
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