久久建筑网(m.kkreddy.com)致力打造一个专业的建筑学习分享平台! 用户登陆 免费注册 | 每日签到 | 金币充值| 会员中心 | 上传资料
  位置提示: 主页 > 隐藏域 > 资料库 > 正文

Zhang-2012-Rock physics-based seismic trace an(3)

//m.kkreddy.com 15-09-30 点 击: 字体: 【

structuresandconventionalseismicprospectingtechniqueshavebeenusedtoidentifypotentialgashydrateaccumulations,withsomedegreeofcertainty.Theintegrationofloggingandseismicdata,however,providesamorerobustinterpretationofgashydratepresenceanddistribution.Thelinkbetweenloggingdataandseismicdataisrockphysicsmodeling,whichwillbedevelopedinthefollowingsectionsofthereport.

3.3.1.IdentifyingsandsandclaysfromLWDlogs

Oneofthemainexplorationtasksinagashydratereservoircharacterizationstudyistodiscriminatesandsfromclaysand,moreimportantly,toseparatehighlyconcentratedhydrate-bearingsandsfromwater-bearingsandsandfree-gas-bearingsands.ClaysinterbeddedwithdiscretesandscomprisemostofthesedimentsinthedeepwaterGulfofMexico.Figures3e5illustratetypicalwell-logdatafortheGC955area.Ingeneral,eachoftheGC955wellsischaracterizebyarelativelythickstratigraphicsectionextendingfromthesea?oortoadepthbelow300mbsfthatischaracterizedbyrelativelyhighgammaraylogvaluesof70APIandhigher,whichsuggestsclay-dominatedsediments.Withinthemoredeeplyburiedlog-inferredgammaraysand-richsections,thegammaraylogdropstoabout25API.

Rockphysicsdepthtrendscanbecomplicatedbyvaryinglithology,mineralogy,?uidproperties,andporepressurecondi-tions(Avsethetal.,2005).Ingeneral,acousticimpedanceofshallowsedimentsincreaseswithdepthduetocompaction.Closetothesea?oor,sandshavehigherimpedancethanclaysbecauseclaystendtohavehigherwatercontentthansands.However,theporosityofclaysdecreasesfasterwithdepththanthatofsandsintheveryshallowsectionbecauseclaystendtocompactmoreeasilyduringearlyburial(Velde,1996).Theimpedanceofclaystendstoincreasemorequicklythanthatofsands.Thus,animpedancecrossoverofsandsandclaysmayoccurintheshallowsection.Belowthecrossover,clayshavehigherimpedance.NeidellandBerry(1989)observethattheimpedanceofshallowunconsoli-datedPleistocenesandsislowerthanthatofassociatedclays.Hilterman(2001)illustratesthattheimpedanceofsandsislessthanclaysfromveryshallowsectionto4000mbsfinGulfof

00

00

100

200Depth(mbsf)

300

4005006000

50100150

1

GammaRay(API)

2.2515002000250030001.51.75210

3

Resistivity(m)Vp(m/s)Density(g/cm)

Figure3.Gammaray,resistivity,compressional-wave(Vp)acoustic,anddensitylogsfromwellGC955-I,showingathicksandzone.Thelowdensityvaluesinthenon-hydrate-bearingportionofsand-richsectionareprobablyproducedbyboreholewashout(Guerinetal.,2009).


124Z.Zhangetal./MarineandPetroleumGeology34(2012)119e133

a

GC955-H

100200

Depth(mbsf)

300400

500600

501105010015015002000250030001.51.752

3

Resistivity(m)GammaRay(API)Vp(m/s)Density(g/cm)

b

GC955-Q

100100100100

Depth(mbsf)

200200200200

300300300300

400

450

50100150GammaRay(API)

400450

400400

450450

1500200025003000

1.51.752.02.25

3

Resistivity(m)Vp(m/s)Density(g/cm)

Figure4.Gammaray,resistivity,compressional-wave(Vp)acoustic,anddensitylogsfromwells(a):GC955-Hand(b)GC955-Q,showinghighlyconcentratedgashydratewithin

sand-richsections.Notethatthedensitylogsareofgoodqualityinthehydrate-bearingportionofsand-richsection.Thelowdensityvaluesinthenon-hydrate-bearingportionofsand-richsectionareprobablyproducedbyboreholewashout(Guerinetal.,2009).

Mexico.Figure5showsthenormalcompactiontrendfortheGC955area.Itisspeculatedthatthesedimentinducedimpedancecross-overoccursatashallowdepthintheGC955studyarea.Withinthegashydrate-bearingsedimentarysectionofourinterestinthisstudy,from350to700mbsf,theacousticimpedanceofsandsislessthanthatofclays.

Figure6showsthatclays,water-bearingsands,andhydrate-bearingsandsarewellseparatedinthecrossplotofcompressional-wavevelocityversusgammarayvalueintheGC955-Hwell.Water-bearingsandshaverelativelylowcompressional-wavevelocities,whereashydrate-bearingsandsarecharacterizedbyhighvelocities.3.3.2.Rockphysics-basedgashydratemodel

Impedancetrendsinhydrate-bearingsandscanbedescribedbyarockphysics-basedgashydratemodelthatderivesaphysics-basedrelationshipbetweenhydratesaturationandelasticpropertiesofsediments(Vp,Vsanddensity).Effectivemedia,contactmodels,and?uidsubstitutiontheoriesareallusedtocreatetherockphysicsmodelinthisreport.ThefundamentalprinciplesandequationsarepresentedbyMavkoetal.(2009)andhavealsobeenusedbyLeeetal.(2009)toconductsimilarinversionsofgashydrateaccumulationsinnorthernAlaska.Inthisstudythesedimentarysectionisassumedtobeanisotropiccompositemediaofporousrockwith


Z.Zhangetal./MarineandPetroleumGeology34(2012)119e133125

Vp(m/s)

Neutronporosity(%)

Figure5.Compressional-wavevelocityversusneutronporosityfromwellsGC955-H,GC955-I,andGC955-Q,showingnormalcompactiontrend(Hamilton,1971)andhighvelocitygas-hydrate-bearingsands.

isotropicmineraland?uidcomponents,andgashydrate.Themineralcomponentsincludemostlyclaysandsilica-richsands;the?uidcomponentsarewaterandgasinmostcases.Weassumethatgashydrateandfreegasgeneratedintheporespaceofsandsreducethewater-?lledporositybutthatthetotalporespacewouldnotchange(LeeandCollett,2001).Thehydratethat?llstheporespacepartiallyactsasacomponentof?uidandpartiallyactsasacomponentofthemineralframe.Thisbehaviorhasbeenobservedinlaboratorystudies(BuffettandZatespina,2000;Yunetal.,2005;Wintersetal.,2004;Priestetal.,2009).

TheHashin-Shtrikmanlowerboundwasusedtosimulateelasticmoduliofhydrate-bearingsediments(Mavkoetal.,2009).Thelowerlimitoftheboundforeffectiveelasticmoduliiswatersaturatedsedimentwithoutanyhydrate.ThehigherlimitoftheboundistheReussaverageofhydrateandmineralcomponents

(Helgerudetal.,1999;HanandBatzle,2004).Itissuggestedthatatlowgashydratesaturations,hydrate?oatsintheporespaceandisconsideredtobeinsuspension.Whenhydratesaturationincreases,thehydratebecomesgrainsupported.Gashydratehasbothpore?llingandgraincontactedbehaviorsatrelativelyhighgashydratesaturation.Weusetheparameter(ε)providedbyLeeandWaite(2008)todescribebothpore?llingandgraincontactedbehavior.

Weusedthe“Waltonsmoothmodel”topredicttheelasticmoduliofthe“dryrock”matrixandGassmann’sequationtopredicttheelasticmodulioffullywatersaturatedsediment(Mavkoetal.,2009).Table2includestheelasticconstantsusedforthecalculation.Ifgashydrateispresentintheporespace,theHashin-Shtrikmanlowerboundisusedtocomputetheelasticmoduliofthehydrated-bearingsands;iffreegasispresent,Gassmann’sequationisusedtocalculateelasticmoduliofthefree-gas-bearingsands.Uniformgasdistribu-tionisassumedandthe?uidbulkmodulusiscomputedfromtheReussaverageofwaterandgasbulkmoduli(Helgerudetal.,1999).Finally,thecompressional-andshear-wavevelocitiesarecomputedfromthewell-log-derivedmodulianddensities.

TheestimatesofhydratesaturationderivedfromtheJIPLegIIresistivitylogdataintheGC955wellsbyGuerinetal.(2009)wereusedtocalibratethemodel(Fig.7).Compressional-wavevelocityisoneofmainfactorstodetermineseismicacousticamplitudes.Figure7showsthatpredictedvelocitiesincreaseveryslightlyatlowgashydratesaturationslessthan0.12becausehydrateinthislow-saturationcase,hasastrongeffecton?uidsandaweakeffectonthematrix.Suchslightchangewouldnotcausetheamplitudeofhydrate-bearingsedimentstostandoutfromthebackgroundamplitudeofwatersaturatedsedimentsethusmakingthemdif?culttodistinguish.

Vp(m/s)

Table2

Elasticconstantsforcomponentsofsediments.ComponentSandClayHydrateWater

Gammaray(API)

Figure6.Compressional-wavevelocityversusgammarayfromwellGC955-H,showingclay-richsections,water-bearingsandsandgas-hydrate-bearingsands.A1-m-thickinterpolating?lterwasappliedtotherawvelocityandgammaraydatabetween350and437mbsf.

r,g/cm3

2.652.580.911.02

K,GPa3620.97.72.29

G,GPa456.853.20


126

Z.Zhangetal./MarineandPetroleumGeology34(2012)119e133

340032003000

)

s/2800m(p2600V2400220020001800

Gashydratesaturation(fraction)

Figure7.Compressional-wavevelocitiesversusmodel-derivedgashydratesatura-tions.Theredboxescorrespondtomeasuredpointsfromdepthinterval410e450mbsfinGC955-H.Thegreenlinecorrespondstopredictedcompressional-wavevelocitiesestimatedfromourrockphysicsmodelusingε?0.12whichsuggestedbyLeeandWaite(2008),andcoordinatenumber?3.5whichwasusedtopredictvelocitiesofshallowsedimentsinGulfofMexicobyDutta(2009).Aporosityof0.46wasusedinthepredictionofcompressional-wavevelocitiesbasedonloganalysisatthesection.(Forinterpretationofthereferencestocolourinthis?gurelegend,thereaderisreferredtothewebversionofthisarticle.)

Word文件下载:Zhang-2012-Rock physics-based seismic trace an(3).doc







  ※相关链接
热点排行 更多>>
· 免费农村房屋设计图 附效果图
· 结构力学视频教程[同济大学]80集
· 新农村住宅设计图3套
· 200多个施工工艺动画打包
· 全套别墅施工图纸(cad文件)
· 建筑施工手册第四版高清完整(共267M).rar
· 广联达计价软件GBQ4.0初级视频教程
· 一套别墅的施工效果图 CAD 3D模型
· 02S701 砖砌化粪池图集免费
· 05J909工程做法图集
· 12J201平屋面建筑构造
· 建筑专业标准规范大全
· 12J1工程做法图集
· 12J003室外工程图集
· cad字体全集能显示钢筋符号
· 11G329-1~3图集(合订本)
· 12G901系列图集(1-3)
· 2010广东省建筑与装饰工程综合定额(PDF版)
· 广联达安装算量软件GQI2013视频教程全集
· 建筑工程资料员一本通
· 12G614-1 砌体填充墙结构构造
· 常用建筑工程验收标准
· 豪华别墅CAD全套+室内效果图
· 三层超豪华别墅建筑和结构CAD图纸+效果
· 施工组织设计实例大全
· 2013建设工程工程量清单计价规范完整版
· 05s502图集阀门井
· 12G901-1~3
· 07FJ02-《防空地下室建筑构造》图集(PDF清晰版
· GB50268-2008 《给水排水管道工程施工及验收规
· [福建]框架核心筒结构超高层商务综合体总承包工程
· 2017年《造价管理》教材电子版
· 给排水规范大全(2016)
· 3层单家独院式别墅全套图纸(值得珍藏)
· 工程监理新人岗前培训ppt课件
· 2017年版一建-市政新思维标注考点版
· GB50500-2013全套清单规范(内含所有专业)
· 建筑老司机都懂的施工安全常识
· 12YJ1-6图集大全
· 2017年造价工程师考试用书
· 一级建造师法规17教材
· 宁夏标准图集大全
· 建筑设计资料集精华本
· 注册岩土工程师全套规范
· 公共设施施工组织设计大全
· 西南j11合订本
· 供配电历年真题
· JGJ39-2016托儿所幼儿园建筑设计规范
· 一份完整的工程案例(图纸、算量稿)
· 浙江省安装工程预算定额
· 2016年一级建造师电子版教材
· 中国暴雨统计参数图集(2006版)
· 水工设计手册第一版(八卷全)
· 西南11J图集合集
· 2015造价师考试建设工程技术与计量安装教材
· 民用建筑电气设计手册(第二版)
· 给排水实践教学及见习工程师图册
· 创意庭院
· 中国十大著名地标建筑
· 05图集电气
  • 数百万工程资料下载
    久久建筑网提供 图纸/书籍/方案/图集

  • 复式楼装修方案dwg
    复式楼装修方案_dwg

  • 桥涵(上册)
    桥涵(上册).pdf

  • 《梦幻西游》案例分析.ppt
    《梦幻西游》案例分析.ppt文献资料!

  • 2011昌平区初三一模数学试题(含答案)
    2011昌平区初三一模数学试题(含答案),2011中考复习资料之真题篇,新年华学校010-51663232。 金属

  • 百家讲坛之道德与法律
    百家讲坛之道德与法律.txt,百家讲坛。 “硫酸泼熊”引发的思考袁济喜 主讲人简介: 袁济喜中国人民

  • 危险化学品安全管理条例(最新2011)
    危险化学品安全管理条例(最新2011),2011年3月发布的《危险化学品安全管理条例》。。

  • 你是学生??
    最佳答案: //m.kkreddy.com 久久建筑网 是的!!!!建筑设计!! http://www.99jianzhu.

  • 日本佛教史
    日本佛教史。

  • 育明教育:北京大学风景园林考研参考书,北大风景园林
    育明教育:北京大学风景园林考研参考书,北大风景园林考研复试线,北大考研专业课辅导 ,育明教育,五

  • 开童装注意事项
    开童装注意事项,s。 如何做好童装零售微软中国表格 如何做好童装零售?如何开好童装店? 分享到空间分

  • 公务员辅导专家锁定21组经典公务员面试题
    公务员辅导专家锁定21组经典公务员面试题,公务员面试 公务员辅导专家锁定组经典公务员面试题表格 公

  • DLT 5187.2-2004 火力发电厂运煤设计技术规程 第2部分
    DLT 5187.2-2004 火力发电厂运煤设计技术规程 第2部分:煤尘防治.pdf

  • 作业十一
    作业十一,11。

  • 求最大重复子串.ppt
    求最大重复子串.ppt,OI论文 字符串 ACM。

  • GBJ13-86 室外给水设计规范
    GBJ13-86 室外给水设计规范.pdfGBJ13-86 室外给水设计规范

  • 通达信文件修改对比工具Portable.exe
    通达信文件修改对比工具Portable.exe,所有同类文件同步比较,非常方便的一款对比工具。

  • 2002版《水利工程施工机械台时费定额
    2002版《水利工程施工机械台时费定额2002版《水利工程施工机械台时费定额2002版《水利工程施工机械

  • lecture07-2005
    lecture07-2005,代数图论--图的谱理论--最小割 与最大割 参考资料。

  • 西方经济学复习要点
    西方经济学复习要点,挺全的,应该有用。 《宏微观经济学》的期末复习大纲年月日朱志芬細明?、、、、

  • 卫生专业资格考试神经电生理(脑电图)技术考试练习题
    卫生专业资格考试神经电生理(脑电图)技术考试练习题,卫生专业资格考试神经电生理(脑电图)技术考