新一代油藏巖樣成像技術(shù)(英)

[加入收藏][字號(hào): ] [時(shí)間:2009-01-19  來(lái)源:E&P  關(guān)注度:0]
摘要:簡(jiǎn)介:新一代計(jì)算機(jī)斷層掃描能夠給出頁(yè)巖油藏納米級(jí)的真實(shí)孔隙結(jié)構(gòu),并采用新算法計(jì)算三維成像的頁(yè)巖物性,結(jié)果的精確度都是前所未有的。 Computing properties from 3-D imaging Next-genera...
簡(jiǎn)介:新一代計(jì)算機(jī)斷層掃描能夠給出頁(yè)巖油藏納米級(jí)的真實(shí)孔隙結(jié)構(gòu),并采用新算法計(jì)算三維成像的頁(yè)巖物性,結(jié)果的精確度都是前所未有的。

Computing properties from 3-D imaging 

Next-generation computed tomography (CT) scanning reveals the actual pore structure of shale reservoirs at the nanometer scale, and breakthrough algorithms compute the physical properties of shale from these 3-D images ? all with unprecedented accuracy.

A two-dimensional slice through a shale. The dark areas are the pores. The white spots are high density framboidal pyrites. The gray areas are siliceous minerals. The light gray areas are carbonate minerals.

Analysis of reservoir rock samples has long been regarded as a cumbersome process requiring costly coring operations, increased drilling risk, and time-consuming physical lab experiments. Shales are particularly difficult to measure using physical methods as a result of the rocks’ small pore sizes. But Ingrain, a startup oilfield service company, has achieved a technical breakthrough by applying advanced digital imaging and computing technologies to the process of physical core analysis. Ingrain’s digital approach to measuring rock properties provides operators with the porosity, permeability, conductivity, and elastic properties of shales.

This non-destructive process accommodates all types of reservoir rocks, including those that are difficult or impossible to subject to physical lab experiments such as oil sands and shales. Without the constraints of a physical lab, the process can return accurate measurements from cores or drill cuttings within days ? fast enough to aid critical drilling and production decisions.

Challenges to shale property measurement

Shales have some of the smallest pores found in any clastic or non-clastic reservoir rock. As a result, hydrocarbon flow in shale reservoirs occurs in pore structures that are orders of magnitude smaller than typical sandstone or carbonate reservoirs. This complexity makes it difficult to measure shale properties in physical lab experimentation.

Until now, efforts at digital rock properties measurement in shales failed because rock samples were not being imaged at the nanometer level, or computations were being performed on simplified pore network models that didn’t accurately characterize the detailed fabric of reservoir rocks.

Next-generation technology

The new process begins with a team of trained geologists evaluating rock samples and preparing them for imaging with industrial-grade CT scanners. Hundreds of 2-D scans of each rock sample are layered to create a high-resolution 3-D digital capture of the rock sample. Most conventional samples are imaged using a MicroXCT system that functions at resolutions up to one micron. For shale samples, Ingrain uses a NanoXCT, the only machine of its kind currently being used in the oil and gas industry. With the ability to produce accurate images of a sample’s pore network at a resolution of .05 microns, the NanoXCT is particularly valuable in capturing the complex pore networks of unconventional reservoirs, including shales.

After imaging, geologists apply sophisticated image segmentation software to differentiate between the grains and pore space within the 3-D volume. The final result is a digital version of the actual fabric of the original physical rock, which Ingrain calls a “vRock.” This vRock reveals the complete pore network at a level of detail that allows the company to accurately compute physical and fluid flow properties. The proprietary fluid flow computations are based on the lattice-Boltzman method, which allows for simulation of fluid flow in pore spaces of any complexity.

By unifying innovative technology with its proprietary segmentation methods and computational algorithms, the company provides operators with new insight into their reservoirs. Further, the speed of the process allows for large number of samples to be processed quickly, resulting in more measurements and the ability to better characterize the intricacies of the reservoirs at hand. This has high value in shale reservoirs, where inherent heterogeneities require large amounts of data to create accurate reservoir models.

When the process is complete and results are delivered, vRocks are stored for operators in a secure database. Software runs in a web browser, giving geoscientists the option of requesting multiple analyses on the same vRock to modify parameters and observe how the results change.

Improving decisions and reducing risk

The ability to measure shale properties introduces new elements of knowledge that can improve decision-making and reduce risk. For example, velocity measurements are typically used to predict pore pressure. But in shale formations, velocity is affected not only by pressure but also by the silt content of the shale (high silt content causes high velocity). In shale reservoirs where there is a risk of overpressure, this new analysis method can improve pore pressure prediction by measuring silt content in shales.

Further, the solid hydrocarbon content of the shale can be quantified, which helps in interpreting well logs of shale sections.

Shales and other unconventional assets will continue to challenge operators simply because they require trial and adoption of new methods and technologies. By introducing a new level of insight and knowledge to the E&P process, Ingrain is empowering operators with the basic information required to overcome the challenges of shales, ultra-low permeability, and complex reservoirs.


          您的分享是我們前進(jìn)最大的動(dòng)力,謝謝!
關(guān)鍵字: 油藏 
關(guān)于我們 | 會(huì)員服務(wù) | 電子樣本 | 郵件營(yíng)銷 | 網(wǎng)站地圖 | 誠(chéng)聘英才 | 意見反饋
Copyright @ 2012 www.tolkopozitiv.com Inc All Rights Reserved 全球石油化工網(wǎng) 版權(quán)所有
京ICP證120803號(hào) 京ICP備05086866號(hào)-8 京公網(wǎng)安備110105018350
主站蜘蛛池模板: 久久国产精久久精产国| 催眠体验馆最新章节| 久久久久亚洲精品男人的天堂| 色综合久久综合欧美综合网| 扒开双腿猛进入喷水免费视频| 动漫美女被爆羞羞免费| 99久久国产热无码精品免费| 欧美国产日韩A在线观看| 国产成人精品免费视频大全| 丰满少妇被猛烈高清播放| 精东传媒国产app| 国产美女精品久久久久久久免费| 亚洲丝袜制服欧美另类| 青娱乐国产盛宴| 娇小xxxxx性开放| 亚洲婷婷天堂在线综合| 韩国成人毛片aaa黄| 好男人资源免费手机在线观看| 亚洲日韩精品欧美一区二区一 | 国产鲁鲁视频在线观看| 亚洲av专区无码观看精品天堂| 蜜桃视频在线观看免费网址入口| 娇喘午夜啪啪五分钟娇喘| 亚洲日韩中文字幕| 青青操免费在线观看| 成人免费黄网站| 亚洲日韩精品无码专区网址| 菠萝蜜国际通道麻豆三区| 天天干天天色综合网| 小说区综合区首页| 亚洲欧洲日产韩国在线| 金莲你下面好紧夹得我好爽| 女人18毛片免费观看| 乱色熟女综合一区二区三区| 精品国产日韩亚洲一区在线| 国产精品天天在线午夜更新| 中文字幕无线码中文字幕免费| 污视频网站在线观看| 国产免费一期二期三期四期| [中文][3d全彩]舞房之夜| 日韩伦理电影在线免费观看|