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1.
Understanding the pore water conversion characteristics during hydrate formation in porous media is important to study the accumulation mechanism of marine gas hydrate. In this study, low-field NMR was used to study the pore water conversion characteristics during methane hydrate formation in unsaturated sand samples. Results show that the signal intensity of T2 distribution isn’t affected by sediment type and pore pressure, but is affected by temperature. The increase in the pressure of hydrogen-containing gas can cause the increase in the signal intensity of T2 distribution. The heterogeneity of pore structure is aggravated due to the hydrate formation in porous media. The water conversion rate fluctuates during the hydrate formation. The sand size affects the water conversion ratio and rate by affecting the specific surface of sand in unsaturated porous media. For the fine sand sample, the large specific surface causes a large gas-water contact area resulting in a higher water conversion rate, but causes a large water-sand contact area resulting in a low water conversion ratio (Cw=96.2%). The clay can reduce the water conversion rate and ratio, especially montmorillonite (Cw=95.8%). The crystal layer of montmorillonite affects the pore water conversion characteristics by hindering the conversion of interlayer water.©2022 China Geology Editorial Office.  相似文献   

2.
Grain-displacing hydrate deposits exist at many marine sites, which constitute an important part of methane hydrate resources worldwide. Attributed to the difficulties in acquiring field data and synthesizing experimental samples, the formation and property characterization of grain-displacing hydrate remains less understood and characterized than the pore-filling hydrate in current literature. This study reviews the formation mechanisms of grain-displacing hydrate from the perspective of geological accumulation and microscale sedimentary property. The experimental methods of synthesizing grain-displacing hydrate in the laboratory and the current knowledge on the property of grain-displacing hydrate sediment are also introduced. Shortcomings in current theories and suggestions for future study are proposed. The work is hoped to provide valuable insights for the research into the hydrate accumulation, geophysics, and hydrate exploitation targeted at the grain-displacing hydrate in the marine sediments.©2022 China Geology Editorial Office.  相似文献   

3.
《China Geology》2022,5(4):630-636
In this work, the authors monitored the formation and dissociation process of methane hydrate in four different rock core samples through nuclear magnetic resonance (NMR) relaxation time (T2) and 2D imaging measurement. The result shows that the intensity of T2 spectra and magnetic resonance imaging (MRI) signals gradually decreases in the hydrate formation process, and at the same time, the T2 spectra move toward the left domain as the growth of hydrate in the pores of the sample accelerates the decay rate. The hydrate grows and dissociates preferentially in the purer sandstone samples with larger pore size and higher porosity. Significantly, for the sample with lower porosity and higher argillaceous content, the intensity of the T2 spectra also shows a trend of a great decrease in the hydrate formation process, which means that high-saturation gas hydrate can also be formed in the sample with higher argillaceous content. The changes in MRI of the sample in the process show that the formation and dissociation of methane hydrate can reshape the distribution of water in the pores.©2022 China Geology Editorial Office.  相似文献   

4.
冰点下水合物在多孔介质的生成是一个复杂的多相转化过程,为了研究冰点下多孔介质中水合物生成过程的水相转化率、气体消耗量与稳定压力等生成特性,在定容条件下,进行不同孔径与粒径的多孔介质中甲烷水合物在冰点下的生成实验。所使用的多孔介质平均孔径为1295 nm、1796 nm和3320 nm。研究结果表明:水合物生成结束时水的转化率随着初始生成压力的增大而增大,随着温度的升高而降低,随着孔径的增大而增大;在相同的孔径下,多孔介质粒径的增大降低了水合物的生成速率但对最终气体消耗量没有影响;在相同的温度下,随着初始生成压力的增大,实验最终压力、气体消耗量与最终水的转化率均随之升高;温度越高,不同的生成初始生成压力下体系的最终稳定压力与水的转化率相差越大;在多孔介质的毛细管作用力与结合水的共同作用下,冰点下水合物生成的水的转化率会大大地降低。在本实验条件下,水相转化为水合物的比例最高为32.39%。  相似文献   

5.
李刚  李小森 《现代地质》2010,24(3):627-631
过冷度是甲烷水合物合成过程的主要驱动力,在沉积物中进行不同过冷度下甲烷水合物合成实验,有利于找出水合物合成过程的动力学影响因素,进而研究自然界沉积物中水合物的成藏过程。在定容条件下,以不同的过冷度进行甲烷水合物在沉积物中的合成实验。实验结果表明甲烷水合物在沉积物条件下的合成过程包括气液溶解、核化、生长、稳定4个阶段。在相同初始状态,不同过冷度条件下的水合物合成后系统状态均处在相平衡曲线上,而随着过冷度的减小,气体转换率和水合物的饱和度不断降低。通过实验数据回归得出在沉积物条件下过冷度与甲烷水合物诱导时间的经验关系式。通过对比发现,沉积物中水合物合成所需要的过冷度仅为2.5 ℃,大大低于不含沉积物的纯水体系。  相似文献   

6.
沉积物与流体流动的性质是影响水合物形成和聚集的两个重要因素,为研究水合物在沉积地层中的赋存机制必须探明高压环境下含水合物沉积物在非饱和渗流条件下的相互影响关系。以逸度差为水合物反应驱动力,反应动力学常数为Arrhenius类型,建立了包括非饱和流体流动-沉积物特征-水合物形成动力学耦合的二维模型,从理论上研究了多孔介质内流体与沉积物参数如含水率、去饱和系数、水力分布和水合物饱和度等在孔隙内的相互影响规律。结果表明,在设定的条件下,随着反应的进行孔隙水压力随时间逐渐大,在相同条件下水合物饱和度与温度增加导致孔隙水压力变大,其中水合物饱和度的影响较小,而沉积物基质吸力、去饱和系数与本征动力学常数则与孔隙水压力成反向变化,其中本征动力学常数的影响较大。  相似文献   

7.
《China Geology》2019,2(3):276-286
In this paper, the mechanical properties of gas hydrate-bearing sediments (GHBS) were summarized and the instability mechanism of submarine hydrate-bearing slope (SHBS) was analyzed under the background of the test production of gas hydrate in the northern part of the South China Sea. The strength reduction finite element method (SRFEM) was introduced to the stability analysis of submarine slopes for the safety of the test production. Two schemes were designed to determine the physical and mechanical parameters of four target wells. Through the division of the hydrate dissociation region and the design of four working conditions, the range and degree of hydrate dissociation at different stages during the test production were simulated. Based on the software ABAQUS, 37 FEM models of SHBS were set up to analyze and assess the stability of the submarine slopes in the area of the test production. Necessary information such as safety factors, deformation, and displacement were obtained at different stages and under different working conditions. According to the calculation results, the submarine slope area is stable before the test production, and the safety factors almost remains the same during and after the test production. All these indicate that the test production has no obvious influence on the area of the test production and the submarine slopes in the area are stable during and after the test production.  相似文献   

8.
《China Geology》2020,3(2):210-220
Shenhu Area is located in the Baiyun Sag of Pearl River Mouth Basin, which is on the northern continental slope of the South China Sea. Gas hydrates in this area have been intensively investigated, achieving a wide coverage of the three-dimensional seismic survey, a large number of boreholes, and detailed data of the seismic survey, logging, and core analysis. In the beginning of 2020, China has successfully conducted the second offshore production test of gas hydrates in this area. In this paper, studies were made on the structure of the hydrate system for the production test, based on detailed logging data and core analysis of this area. As to the results of nuclear magnetic resonance (NMR) logging and sonic logging of Well GMGS6-SH02 drilled during the GMGS6 Expedition, the hydrate system on which the production well located can be divided into three layers: (1) 207.8–253.4 mbsf, 45.6 m thick, gas hydrate layer, with gas hydrate saturation of 0–54.5% (31% av.); (2) 253.4–278 mbsf, 24.6 m thick, mixing layer consisting of gas hydrates, free gas, and water, with gas hydrate saturation of 0–22% (10% av.) and free gas saturation of 0–32% (13% av.); (3) 278–297 mbsf, 19 m thick, with free gas saturation of less than 7%. Moreover, the pore water freshening identified in the sediment cores, taken from the depth below the theoretically calculated base of methane hydrate stability zone, indicates the occurrence of gas hydrate. All these data reveal that gas hydrates, free gas, and water coexist in the mixing layer from different aspects.  相似文献   

9.
冲绳海槽中段西陆坡下缘天然气水合物存在的可能性分析   总被引:28,自引:0,他引:28  
孟宪伟  刘保华 《沉积学报》2000,18(4):629-633
海洋中的天然气水合物主要发育在有机质供应充分、沉积速率快、热流值较高、水深大于300m的大陆斜坡和活动边缘的增生楔发育区;沉积物类型主要以泥质砂岩、砂质泥岩和浊积岩为主。似海底反射层(BSR)和极性反转是识别天然气水合物层的关键标志。冲绳海槽中段西陆坡下缘水深大于1000m;沉积物类型主要为粉砂质泥和泥质粉砂,在部分层位见浊积层。与东海陆架相比,西陆坡下缘的有机质含量、沉积速率的热流值都较高,其范围分别为0.75%~1.25%、10~40cm/ka和70~437mw/m2;单道地震剖面具有明显的似海底反射层(BSR)和极性反转特征,因此,推断冲绳海槽中段西陆坡下缘可能存在天然气水合物层。  相似文献   

10.
《China Geology》2020,3(1):16-27
Bottom simulating reflector (BSR) has been recognized as one of the indicators of gas hydrates. However, BSR and hydrate are not one-to-one correspondence. In the Xisha area of South China Sea (SCS), carbonate rocks wildly develop, which continuously distribute parallel to the seafloor with high amplitude on seismic sections, exhibiting reflections similar to BSRs in the Shenhu area nearby. This phenomenon causes some interference to hydrates identification. In this paper, the authors discussed the typical geophysical differences between carbonate rocks and hydrates, indicating that the main difference exists in relationship between porosity and velocity, causing different amplitude versus offset (AVO) characters. Then the authors proposed a new model assuming that the carbonates form the matrix and the hydrate fill the pore as a part of the matrix. The key modeling parameters have been optimized constrained by P-velocities and S-velocities simultaneously, and the model works well both for carbonate rock and gas hydrate bearing sediments. For quantitative identification, the authors calculated the velocities when carbonates and hydrates form the matrix together in different proportions. Then they proposed a carbonate and hydrate identification template (CHIT), in which the possible hydrate saturation (PHS) and possible carbonate content (PCC) can be both scaled out for a group of sample composed by P-velocity and S-velocity. If PHS is far larger than PCC, it is more likely to be a hydrate sample because carbonates and hydrates do not coexist normally. The real data application shows that the template can effectively distinguish between hydrates and carbonate rocks, consequently reducing the risk of hydrate exploration.  相似文献   

11.
天然气水合物的地热研究进展   总被引:8,自引:0,他引:8  
天然气水合物的地热研究在以下几个方面都取得了重要进展,热流与似海底反射层的关系,水合物稳定带的研究;水合物热物理参数的确定;水合物形成过程中的热状态;热导率的应用,指出了今后水合物的地热学研究方向。  相似文献   

12.
The isotopic composition (δD and δ18O) and chloride concentration (Cl) of pore waters from the northern Cascadia continental margin offshore Vancouver Island were measured to characterize the relations between the water flow regime and the distribution, formation and dissociation of gas hydrates. The δD values of pore waters in gas hydrate-bearing sediments are slightly higher ( 1‰) than those of seawater as the result of gas hydrate dissociation during core recovery and handling. Within the seismic blanking zone, the δD values were slightly lower (− 1‰) than values measured from sites outside the blanking area (0‰). We attribute these differences to 1) distillation of D-rich water during hydrate formation in the center of the blanking zone and 2) limited migration of pore water between inside and outside of the blanking zone due to different fluid fluxes. In contrast, the δ18O values and Cl concentrations do not show significant spatial variation due to decreased isotopic fractionation of oxygen and small fraction of chloride relative to hydrogen isotope during gas hydrate formation. The δD value of pore water, therefore, appears to be a sensitive indicator of gas hydrate occurrence. We estimate that gas hydrate occupied at least 2.0 to 6.3% of sediment pore space using δD distribution in this area.  相似文献   

13.
How natural gas hydrates nucleate and grow is a crucial scientific question. The research on it will help solve practical problems encountered in hydrate accumulation, development, and utilization of hydrate related technology. Due to its limitations on both spatial and temporal dimensions, experiment cannot fully explain this issue on a micro-scale. With the development of computer technology, molecular simulation has been widely used in the study of hydrate formation because it can observe the nucleation and growth process of hydrates at the molecular level. This review will assess the recent progresses in molecular dynamics simulation of hydrate nucleation and growth, as well as the enlightening significance of these developments in hydrate applications. At the same time, combined with the problems encountered in recent hydrate trial mining and applications, some potential directions for molecular simulation in the research of hydrate nucleation and growth are proposed, and the future of molecular simulation research on hydrate nucleation and growth is prospected.©2022 China Geology Editorial Office.  相似文献   

14.
Rising methane gas bubbles form massive hydrate layers at the seafloor   总被引:3,自引:0,他引:3  
Extensive methane hydrate layers are formed in the near-surface sediments of the Cascadia margin. An undissociated section of such a layer was recovered at the base of a gravity core (i.e. at a sediment depth of 120 cm) at the southern summit of Hydrate Ridge. As a result of salt exclusion during methane hydrate formation, the associated pore waters show a highly elevated chloride concentration of 809 mM. In comparison, the average background value is 543 mM.A simple transport-reaction model was developed to reproduce the Cl observations and quantify processes such as hydrate formation, methane demand, and fluid flow. From this first field observation of a positive Cl anomaly, high hydrate formation rates (0.15-1.08 mol cm−2 a−1) were calculated. Our model results also suggest that the fluid flow rate at the Cascadia accretionary margin is constrained to 45-300 cm a−1. The amount of methane needed to build up enough methane hydrate to produce the observed chloride enrichment exceeds the methane solubility in pore water. Thus, most of the gas hydrate was most likely formed from ascending methane gas bubbles rather than solely from CH4 dissolved in the pore water.  相似文献   

15.
SDS和THF对甲烷水合物合成影响的实验研究   总被引:3,自引:0,他引:3  
甲烷水合物的人工合成是实验室内进行水合物模拟地层钻探研究的关键步骤。利用水合物合成及模拟微钻实验系统,分别进行了加入少量十二烷基硫酸钠(SDS)和四氢呋喃(THF)的甲烷水合物人工合成试验。通过对比实验,分析研究了SDS和THF对甲烷水合物生成速度及生成量的影响。实验表明,在纯水体系中加入微量的SDS和THF,不仅能够促进甲烷水合物快速成核,还可以增加甲烷水合物的合成量,从而节省了大量的实验时间,这也便于对含水合物沉积地层钻探钻井液设计和水合物模拟地层微钻实验的深入研究。  相似文献   

16.
海洋天然气水合物元素地球化学异常的实验研究   总被引:4,自引:1,他引:3  
刘昌岭  陈敏  业渝光 《现代地质》2005,19(1):96-100
海洋天然气水合物在生成过程中会引起周围沉积物孔隙水中元素地球化学异常,这些异常是指示天然气水合物存在的重要标志。在自制的实验装置上,模拟了海洋天然气水合物的生成过程,对海水中各离子浓度的变化进行了初步研究。结果表明:在不同的反应条件下,水合物的生成对各离子浓度变化的影响不同。压力越大,耗气量越大,生成水合物的量就大、纯度高,其排盐效应也较强,导致海水溶液中离子浓度的增高,而水合物中离子含量却呈降低趋势。  相似文献   

17.
《China Geology》2023,6(2):208-215
The Qilian Mountain permafrost area located in the northern of Qinghai-Tibet Plateau is a favorable place for natural gas hydrate formation and enrichment, due to its well-developed fractures and abundant gas sources. Understanding the formation and distribution of multi-component gas hydrates in fractures is crucial in accurately evaluating the hydrate reservoir resources in this area. The hydrate formation experiments were carried out using the core samples drilled from hydrate-bearing sediments in Qilian Mountain permafrost area and the multi-component gas with similar composition to natural gas hydrates in Qilian Mountain permafrost area. The formation and distribution characteristics of multi-component gas hydrates in core samples were observed in situ by X-ray Computed Tomography (X-CT) under high pressure and low temperature conditions. Results show that hydrates are mainly formed and distributed in the fractures with good connectivity. The ratios of volume of hydrates formed in fractures to the volume of fractures are about 96.8% and 60.67% in two different core samples. This indicates that the fracture surface may act as a favorable reaction site for hydrate formation in core samples. Based on the field geological data and the experimental results, it is preliminarily estimated that the inventory of methane stored in the fractured gas hydrate in Qilian Mountain permafrost area is about 8.67×1013 m3, with a resource abundance of 8.67×108 m3/km2. This study demonstrates the great resource potential of fractured gas hydrate and also provides a new way to further understand the prospect of natural gas hydrate and other oil and gas resources in Qilian Mountain permafrost area.©2023 China Geology Editorial Office.  相似文献   

18.
甲烷水合物在AlCl3溶液中的相平衡条件   总被引:1,自引:0,他引:1  
利用可视法测定了甲烷水合物在AlCl3溶液中的三相平衡(甲烷水合物-AlCl3液相-甲烷气相)条件.AlCl3溶液中甲烷水合物的生成压力为4.040~8.382 MPa,温度为272.15~278.15 MPa.对相同摩尔浓度的AlCl3和KCl溶液中甲烷水合物生成条件的抑制作用进行了讨论.并将实验结果与前人的研究数据进行了对比,通过统计分析得到一计算甲烷水合物相平衡压力与温度的经验公式,经计算所得结果与实验数据一致.研究认为AlCl3溶液可以作为一种良好的抑制剂用于油气工业的输送管道中。  相似文献   

19.
天然气水合物储量巨大且富含甲烷,被视为21世纪最重要的潜在新型清洁能源之一。天然气水合物大多赋存在海底沉积物的孔隙介质中(少部分赋存于永久冻土层中),对其相变过程受孔隙介质影响规律的系统梳理和总结对未来的勘探开发具有重要意义。本文综合分析前人研究成果,将孔隙介质中天然气水合物的相变过程概化为水合物形成分解时的温压平衡条件变化、速率、稳定性、转化效率以及生长形态、分布状态等;将影响因素分为孔隙介质特性如孔径及粒径、润湿性、导热性能,以及孔隙介质中的物理化学因素如温压和水气条件,并总结了其影响规律和影响机理:(1)孔径及粒径能影响水合物温压平衡条件,较小粒径还能加快水合物相变速率,降低其转化效率。(2)润湿性能够决定水合物的微观生长形态及其与孔隙介质间的接触形式,亲水性强的介质表面能加快水合物的相变速率。(3)孔隙介质导热性能越强,水合物的相变速率越大。(4)温压条件控制下的温压驱动力越大,水合物的相变速率越大,但这种趋势不适用于温压驱动力过大的情形。(5)水气条件影响着水合物相变过程的温压平衡条件、相变速率、稳定性及分布状态。另外,本文分析了目前研究中的不足,并给出了未来的重点研究方向。  相似文献   

20.
宜昌潮水洞岩溶间歇泉动态特征及成因   总被引:1,自引:0,他引:1       下载免费PDF全文
郭绪磊  陈乾龙  黄琨  周宏 《地球科学》2020,45(12):4524-4534
潮水洞无降雨补给时仍有规律的间歇性流出,是典型的岩溶间歇泉,其流量、水化学动态规律及形成机制缺乏系统的研究.基于长期水文气象观测和水化学测试数据,分析了潮水洞不同时期流量、水温和电导率变化特征以及潮水洞岩溶水系统的水化学特征.潮水洞为多个岩溶水子系统的连接,其动态呈现为雨期和无雨期两个不同特征,且存在多个不稳定周期的间歇出流过程.通过c(Mg2+)/c(Ca2+)比值及水文动态特征辨识出间歇出流的地下水来源为天河板组灰岩含水层,随着过程流量的不断增加,深循环地下水占比最高达97%.结合水文地质条件概化出潮水洞岩溶水系统循环模式,天河板组灰岩含水层内虹吸管道的发育是间歇性动态特征的主要成因.   相似文献   

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