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1.
以前的研究表明密度和核磁共振测井数据可用来精确计算储层的天然气饱和度。传统的气体储层中开发的用于天然气饱和度计算的密度-磁共振法也可用于天然气水合物饱和度分析。在不使用复杂方程或假设的情况下,基于经验方程,密度-磁共振方法可得到精确的地层孔隙度、气体和(或)天然气水合物饱和度。本文通过密度-磁共振响应方法来识别Mallik 5L-38井所穿沉积剖面中的天然气水合物带。结果证明密度-磁共振方法可以计算经气体校正后的孔隙度和精确的天然气水合物饱和度。  相似文献   

2.
针对目前地层压力不能够精确预测的问题,提出了利用测井声波资料配合相关测井曲线预测地层压力的三参数模型法,该方法考虑了与地层声速相关的3个主要因素,即泥质含量、孔隙度、有效应力。将该方法应用于济阳坳陷东营凹陷,通过实测压力系数与预测压力系数的对比分析,结果表明:利用三参数模型法预测地层压力在提高地层压力预测精度方面具有一定的有效性与合理性。  相似文献   

3.
应用测井资料进行储层有效厚度预测是最直接的预测手段。从地球物特征研究出发,寻找能反应岩性的测井敏感性参数,用这些敏感性参数与地震联合进行反演,得到岩性反演剖面,通过岩性剖面与所确定的门槛沿目的层值拾取砂岩厚度,最后转换成储层有效厚度预测平面图。该方法通过实际应用表明,利用测井资料预测地震储层有效厚度效果较明显。  相似文献   

4.
浅地层剖面测量是海洋工程勘察、灾害地质调查和大陆架海洋地质科学研究的重要手段,资料解译的准确程度将对地质调查和研究成果的可靠性造成直接影响。由于发收分置型浅地层剖面仪的激发装置与接收装置是分开的,当调查区域的水深过浅时,将其近似为自激自收的单道地震系统会导致地层的畸变,水深越浅地层畸变率越大。根据浅地层剖面仪的基本原理,推导出了浅部地层厚度畸变校正公式,为用C-View软件更准确地解译此类浅地层剖面资料提供了参考。海底沉积物的声速直接影响浅地层剖面地层厚度解译的准确性,利用卢博等建立的适用于中国东南近海的声速经验公式,在某人工岛构造调查中,根据地质钻孔获取的孔隙度参数计算各沉积层的平均声速,建立相应的声速结构剖面,对地层厚度进行校正,取得较好的效果,用孔隙度预测声速的方法参数容易获取,能够提高浅地层剖面资料的解译精度,使地层的厚度更接近于实际,具有一定的实用意义。  相似文献   

5.
海底沉积层的声速足浅地层剖面资料采集和处理的关键参数之一,通常的做法是将地层的声速设定为一个经验值,而实际上声速并非定值.通过对国内外主要沉积物声速颅测方程的比较,利用卢博等建立的适用于中国东南近海的声速经验公式,在某人工岛构造调查中,根据地质钻孔获取的孔隙度参数计算各沉积层的平均声速,建立相应的声速结构剖面,应用于浅...  相似文献   

6.
在井约束的随机反演过程中,通常利用单一测井曲线来指示储层,这种方法使用的曲线类型单一,不能完整地反映储层特征。因此,提出利用多种测井曲线来重构一种更接近储层真实特性的曲线,相比较伽马、中子等曲线而言,重构后的曲线与波阻抗具有更好的相关性,反演出来的岩性剖面更加真实。针对D区实际资料,利用曲线重构反演技术进行目标区储层预测,取得了相对常规单一曲线岩性反演更好的效果,证明了该方法的有效性。  相似文献   

7.
海底浅表层(小于1 m)沉积物的物理性质,如粒度、孔隙度、密度等是海洋沉积学研究和海洋工程地质分析的重要内容,目前主要基于有限的海底取样或原位测试获取这些沉积物的物理性质。浅地层剖面是基于声学信号(频率几千赫兹)在沉积物中的传播得到可反映沉积地层结构的数据,其中的一些声学参数,如海底反射系数、波阻抗等与沉积物物理性质密切相关。如何充分而有效地利用浅地层剖面资料,反演得到剖面覆盖区海底浅表层沉积物的物理性质参数,极具科学意义和应用价值,且基于声学属性反演沉积物物理性质是当前研究的热点。为此,本文基于渤海LD16-3CEPA至LD10-1PAPD路由段的浅地层剖面数据和海底表层沉积物的实测物理参数,利用Biot-Stoll模型建立研究区海底反射系数和沉积物物理性质之间的关系,并基于浅地层剖面数据计算得到的海底反射系数,反演了研究区海底浅表层沉积物的孔隙度、密度、平均粒径等物理性质参数。其中反演的孔隙度、密度、平均粒径与实测孔隙度、密度、平均粒径基本相符,偏差度基本都在20%的偏差范围内,表明该反演方法在该区的应用是可行的。  相似文献   

8.
为了获得无测井或岩心资料地区天然气水合物赋存海域未固结成岩地层的体积密度,对ODP164、ODP204、IODP311航次实际钻探资料进行了分析,统计了体积密度、孔隙度、颗粒密度的分布情况及其相互关系.分析结果表明,水合物赋存的未固结成岩地层孔隙度很高,一般大于40%,在此范围内体积密度主要受到孔隙度制约,而对骨架颗粒...  相似文献   

9.
归一化层速度是对任意深度处的层速度进行归一化处理的一种速度形式,归一化处理的目的是把任意深度处的层速度转换为与深度无关的格式,归一化后层速度的横向变化主要取决于地层岩性,孔隙度等物性的变化,利用这一特点可以方便地利用已知钻井资料对其进行标定,比较简单地进行地层岩性,孔隙度等特性的预测。实际应用表明,其预测结果与钻井揭示吻合较好,预测效果令人满意。  相似文献   

10.
PL油田为国内第1个大型花岗岩潜山油田,发育孔隙裂缝型储层,潜山岩性多样,平面分布规律及其对储层的控制作用复杂,研究难度大。利用PL油田的岩矿和测井资料识别了岩浆岩和变质岩双重潜山结构;利用岩心岩屑的元素数据和QAPF岩性分类法,判别二长花岗岩和花岗闪长岩2种岩性,结合常规测井资料,首次建立了基于自然伽马的可细分酸性岩浆岩的判别标准;在此基础上,明确了岩性变化规律,探讨了潜山演化及岩性变化模式,并对岩性的平面变化对潜山储层发育的影响进行了机理分析。该研究为后期开发寻找优质储层奠定了基础,以期对同类型潜山油藏储层研究具有指导意义。  相似文献   

11.
运用多功能水流时间谱测井技术原理和测井方法,通过优化活化期与谱周期匹配,可以提高测井资料质量。应用实例表明该技术能准确地探测油管、套管内外的水流情况,判断油、水井窜漏部位,定量分析注水井的注入剖面,该技术在中原油田的实际应用取得了良好地质效果。  相似文献   

12.
This work benefited from a comprehensive set of logging and mineralogical data that was acquired from the 2-km-deep EST433 borehole of Montiers-sur-Saulx (Meuse, France). A multiple linear regression analysis was performed on three sets of data: (a) sonic data (P- and S-wave velocities), (b) total combinable magnetic resonance (TCMR) porosity data, and (c) X-ray diffraction (XRD) data. The analysis was performed to estimate the clay content in the Callovo-Oxfordian (COx) claystone and other clay-rocks of the stratigraphic column. The inferred statistical relationships were compared to results obtained from a conventional spectral gamma ray (GR) approach.The results indicate that simple linear regressions using only elastic wave velocities (a) accounted for more than 81% of the vertical variability of the clay content in the COx formation (i.e., coefficient regression R2 values greater than 81%) and (b) enable the estimation of clay content with the same accuracy as the spectral GR approach. Both approaches, our acoustic regressions and spectral GR methodology, provide estimate errors that are within the range of uncertainties associated with the XRD analysis applied. Moreover, using the whole set of XRD data showed that the elastic wave velocities and the TCMR porosity as explanatory variables are better predictors of total clay content than swelling clay mineral content.Blind estimations of clay content were performed using data acquired in clay-rocks from the same stratigraphic column and in the COx formation located a few kilometers distant in the EST423 borehole. The results demonstrated that the established regressions must be used with caution when vertically and horizontally extrapolating the estimated clay content. This difficulty is partly explained by the influence of the microstructure of the studied clay-rocks, which was insufficiently taken into account via the petrophysical variables considered in this work.  相似文献   

13.
14.
The passive northern continental margin of the South China Sea is rich in gas hydrates, as inferred from the occurrence of bottom-simulating reflectors (BSR) and from well logging data at Ocean Drilling Program (ODP) drill sites. Nonetheless, BSRs on new 2D multichannel seismic reflection data from the area around the Dongsha Islands (the Dongsha Rise) are not ubiquitous. They are confined to complex diapiric structures and active fault zones located between the Dongsha Rise and the surrounding depressions, implying that gas hydrate occurrence is likewise limited to these areas. Most of the BSRs have low amplitude and are therefore not clearly recognizable. Acoustic impedance provides information on rock properties and has been used to estimate gas hydrate concentration. Gas hydrate-bearing sediments have acoustic impedance that is higher than that of the surrounding sediments devoid of hydrates. Based on well logging data, the relationship between acoustic impedance and porosity can be obtained by a linear regression, and the degree of gas hydrate saturation can be determined using Archie’s equation. By applying these methods to multichannel seismic data and well logging data from the northern South China Sea, the gas hydrate concentration is found to be 3–25% of the pore space at ODP Site 1148 depending on sub-surface depth, and is estimated to be less than values of 5% estimated along seismic profile 0101. Our results suggest that saturation of gas hydrate in the northern South China Sea is higher than that estimated from well resistivity log data in the gas hydrate stability zone, but that free gas is scarce beneath this zone. It is probably the scarcity of free gas that is responsible for the low amplitudes of the BSRs.  相似文献   

15.
钻井揭示庙北地区沙一段储层物性较差,该区是否发育优质储层直接影响着下一步的勘探决策。综合利用壁心、薄片、地震、钻井及分析化验等资料,分析储层特征和影响因素,探讨了优质储层分布,分析表明,庙北地区沙一段为低孔、低渗—特低渗储层,储集空间为粒间溶孔和粒内溶孔。碱性水体条件下的碳酸盐矿物强胶结、扇三角洲边缘相带和黏土矿物向伊利石的转化是导致储层物性差的主要因素,溶蚀作用是控制优质储层发育的决定因素。受沉积相带、溶蚀强度及异常高压等条件控制,同沉积断层下降盘的扇三角洲主河道区和水下隆起带上的碳酸盐岩浅滩为优质储层发育的有利区。研究成果对于该区油气勘探具有重要的参考意义。  相似文献   

16.
The Stø Formation is the most important reservoir interval in the Norwegian Barents Sea, however the reservoir quality can be highly affected by the detrimental effects of quartz cement where there have been extensive post depositional burial. Core plug data from well 7219/8-2 in the Southwestern Barents Sea shows abnormally high porosity and permeability values in certain units of the deeply buried and otherwise highly quartz cemented Stø Formation. The amount of quartz cement in the samples is inversely proportional to the porosity. Samples with high and low porosities are similar texturally and mineralogically, but the high porosity samples have a layer of illitic clay coating the majority of the detrital quartz grains. Illitic clay coating present at grain contacts can result in a lowered IGV given they aid in the dissolution of quartz at interfaces, also creating a source of dissolved silica. Clay induced dissolution means that silica saturation is not a limiting factor in quartz cementation in these samples. The results show that the illitic clay coating is capable of limiting the amount of authigenic quartz overgrowth from 20 to 23% in samples with negligible grain coating to 5–11% in the intervals with high coating coverage. The illitic clay coating inhibits quartz overgrowth by limiting the surface area available for nucleation on detrital grains. The Stø Formation comprises mainly shallow marine deposits of highly reworked clean sandstone. Abnormally high porosities appear to be linked to settings where sediments of a more proximal location are preserved without extensive reworking. The grain coating clay is illitic and most likely originates from clay infiltration processes prior to final deposition. The difference in extent of clay coating in similar facies can mostly be correlated with varying amount of post depositional reworking. This study suggests that there is a potential for considerable porosity and permeability to be preserved in deeply buried sandstones in the Barents Sea. This study could be important in the future exploration activity of deeply buried structures in the area.  相似文献   

17.
近代黄河水下三角洲底坡土体的差异侵蚀及土工特性   总被引:3,自引:2,他引:3  
近代黄河水下三角洲海底声波探测资料和土工资料揭示 :波浪、潮流在所研究区域海底沉积物中产生的差异侵蚀和不同的破坏行为受沉积物土工特性的控制。研究表明 ,粘粒含量低于10 % ,含水量在 30 %~ 4 5% ,孔隙比在 0 .8~ 1.2之间的土体抵抗破坏的能力较差 ,土体破坏形成塌陷凹坑 ;粘粒含量在 10 %~ 2 0 % ,含水量在 2 0 %~ 30 % ,孔隙比小于 0 .8的土体抵抗破坏的能力相对较强 ,被保留下来形成蚀余高地  相似文献   

18.
为了研究黑潮跨过200m等深线对东海入侵的年际变化特征,本文基于ROMS(Regional Ocean Modeling System)海洋模式,对西北太平洋海域进行了高分辨率的数值模拟,模式水平分辨率高达4km,该分辨率可以很好地分辨黑潮以东区域的中尺度涡旋等过程。模式首先进行了6年的气候态模拟,然后进行了1993到2015年的后报模拟。模式很好地再现了东海陆架已知的环流结构,模拟出的对马海峡和台湾海峡的年平均流量和观测结果也比较一致。基于模式结果,利用旋转经验正交函数(REOF)的方法,对黑潮跨过200m等深线流量的年际变化进行分析。REOF的主要模态表明,黑潮跨过200m等深线对东海陆架的入侵主要发生台湾东北,并且入侵主要集中在黑潮次表层水中。主要模态的时间系数表明,黑潮入侵东海陆架的年平均流量存在一个8年的变化周期。相关性分析表明,黑潮入侵东海陆架的年际变化和太平洋年代际振荡PDO(Pacific Decadal Oscillation)指标具有显著的负相关,其相关系数达–0.63。该相关可以通过如下过程解释:PDO会导致东太平洋风应力涡度异常,由Sverdrup关系可知向赤道的体积输运也会相应地产生异常,根据质量守恒,向赤道体积输运的异常必然通过西边界流-黑潮的异常来平衡,从而导致黑潮入侵东海陆架强烈的年际变化。  相似文献   

19.
Currently, global shale gas exploration and exploitation are focused on marine shale. Recently, major shale gas-oil breakthroughs have been made within continental and marine–continental transitional shale in China. This study will show how transitional shale is of great importance. Based on geological field surveys, core observations, thin section analysis, organic geochemistry and X-ray diffraction, we systematically studied the basic geological characteristics (including lithology, mineral composition, and organic geochemistry) of this transitional shale. By comparative analysis of well logging data from 260 wells in the Taiyuan–Shanxi shale, we will show that these methods are effective for identifying organic-rich shale from conventional well logs and determining its thickness distribution in the Carboniferous–Permian strata of the Taiyuan–Shanxi transitional coal-bearing formation.The results indicate that the Taiyuan–Shanxi shale has a high TOC (most 2%–4%) and that the lithology is primarily carbonaceous shale with type Ⅱ2-Ⅲ kerogens. The high thermal maturation (Ro ≥ 1.1%) favors the generation of gas. The mineral components primarily include clay minerals, quartz, and plagioclase with a moderate brittle mineral content (47 wt.%) and high clay mineral content (51 wt.%) dominated by kaolinite (43%) and mixed-layer illite-smectite (31%). The transitional organic-rich shale on conventional log curves is generally characterized by higher gamma ray (GR), neutron porosity (CNL), acoustic travel time (AC), resistivity (Rt), potassium (K), and uranium (U) readings and a lower density (DEN), photoelectric absorption index (PE) and thorium-uranium ratio (TH/U). After analyzing the log response characteristics of the organic-rich shale, the most sensitive logging curves (such as CNL, AC, DEN, PE and U) were optimized to conduct logging overlays and to construct cross-plots to qualitatively identify organic-rich shale. The identified organic-rich shale amalgamates in the middle-upper member of the Taiyuan Formation and the lower member of the Shanxi Formation consistent with the results of the TOC analysis and practical gas logging. Based on the qualitative evaluation methods of the modified △LogR and a multivariate linear regression model, we calculated the TOC of shale wells in the Taiyuan–Shanxi formation. From this we calculated the characteristic values of organic-rich shale thickness. The results indicate that organic-rich shale in the Taiyuan formation is thicker than that in the Shanxi formation. Additionally, the thickness of organic-rich shale within lagoons and deep reed swamp facies are much thicker (25–35 m and 40–80 m) than other structural profile types, whereas their lateral distribution is less than that of marine shale. The relatively small continuous thickness of the single shale layer and high clay content may have negative effects for developing the shale gas potential.  相似文献   

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