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InternationalSocietyforRockMechanics(ISRM)ChinaLectureTourThePast,PresentandFutureforRockMechanicsProfessorJohnAHudsonISRMPresident-elect2023-2023ImperialCollegeandRockEngineeringConsultants,London,UK第1页Whatishappeninginrockmechanicsnowandwhatwillhappeninthefuture?第2页Whatistheapproachforpredictingthefuture?Peoplesaythattopredictthefuture,oneshouldstudythepast,studyhistoryButwealsoneedtoconsiderwhatishappeningnowandwhatfactorscouldinfluenceusinthefuture第3页So,tostudythefutureforrockmechanics,weadopttheapproachofHippocratesover2023yearsago:“Considerthepast,diagnosethepresent,foretellthefuture.”
Hippocrates,460-377BC第4页Beforerockmechanicsbecameadisciplineinitsownrightinthe1960s,manymajorprojectswereconstructed–withoutthetechniquesandknowledgethatwehavetoday.ConsiderthepastStonehenge,UKBuilt~5000yearsago第5页TheHooverDambuiltinthe1930sontheColoradoRiverbetweenNevadaandArizonastatesintheUSAisanexcellentexample.Theconcretegravitydamwasconstructedinthe1930s,is726ft(221m)highandhasa1.5GWcapacity第6页HooverDam,USA,1930s1.5GWcapacity第7页
RockmechanicsinChina:“CenturyAchievementsinChineseRockMechanicsandRockEngineering”,2023book,HoHaiUniversityPressChineserockmechanicsstartedin1958Atthatearlytime,ThreeGorgesRockFoundationResearchGroupestablishedProfessorTanJionKie,formerlyVice-DirectorofIRSM-CAS.(IvisitedProfZhuWeishenatIRSMatWuhanin1988).1970sGezhoubaDamnearThreeGorgesDamsite–wasdesignedandconstructedbypurelyChineseengineers–softrocklayersbeneaththedamfoundation,insitublocksheartesting第8页ChineseNationalGroupoftheInternationalSocietyofRockMechanics(ISRM)formedin1978ChineseJournalofRockMechanicsandRockEngineeringformedin1986SeveralChineserockmechanicsconferenceshavebeenheld,includingSINOROCK2023whichwasheldattheThreeGorgesDamSite
ISRM2023CongressinBeijing第9页IntheWest,alsointhe1960srockmechanicsbecomesarecognisedsubjectFormationoftheInternationalSocietyforRockMechanics,1962 FirstPresident:LeopoldMüller 1962-1966第10页“Wedon’tknowtherockmassstrength.ThatiswhyweneedanInternationalSociety.”L.Müller,May1962
第11页Griffithcriterion(fromtheUK)forruptureindirecttension,1921第12页GriffithCrackinaUniaxialCompressionStressField第13页Intheearlydays,rockmechanicswasdominatedbyelasticsolutionsforstressesandstrains“FundamentalsofRockMechanics”,1969byJCJaegerandNGWCookLaboratorytestingsignificantlyimprovedbytheuseofservo-controlledtestingmachinestocontrolfailure第14页Beforethedaysofnumericalmodelling,photo-elasticitywasused--morecomplexshapesthanclassicalelasticity
第15页Stifftestingmachine–Wawersik1968
(modifiedafterCook(1966))UniversityofMinnesota,USAAbilitytoobtainthecompletestress-straincurve:1968第16页Examplesofthecompletestress-straincurvesobtainedbyWawersik第17页ContinuumandDiscontinuumRegimesInelasticElasticElasticUnloadingForceDeformationDiscontinuum(Mining)(seismic)(aseismic)ContinuumWiththiscompletestress-straincurve,wecanunderstandwhathappensafterthepeakstrengthisreached第18页 Lateron,thesignificantroleoffractureswasrealised: CHILEvsDIANE
CHILE:Continuous,Homogeneous,Isotropic, Linearly Elastic–theassumptionoftenmadeinmodelling
DIANE:Discontinuous,Inhomogeneous,Anisotropic, NotElastic–therockreality Numericalmodellingwasintroducedin the1970sItwasn’tuntil1993thatthefirstencyclopaediainrock mechanicsandrockengineeringwasproduced: “Comprehensiverockengineering”1993,5volumes, 4407pages,Editor:JAHudson
第19页DiagnosethepresentWhatiscurrentlybeingbuilt?andWhatiscurrentlyhappeninginrockmechanics?第20页QingjiangrivergorgelocationoftheShuibuyahydroelectricproject.
Damis233mhigh.ProjectsinChina第21页LongtanHydroelectricpowerstation,Hongshuiriver,GuangxiProvince,China
第22页ThreeGorgesProjectontheYangtzeRiver,China,18GWLargesthydroelectricdamintheworldWorldwideinreaseinenergyconsumptionis20GW/year第23页InternationalconferencesSponsoredbytheChineseAcademyofSciences(CAS)andtheInternationalJournalofRockMechanics&MiningSciencesThreeGorgesDamonYangzeRiver第24页LastweekIwasatJinPingIIhydroelectricprojectontheYalongRiverTunnelswillhaveoverburdenof2,500mandsohighstressesandrockspalling第25页印度板块菲律宾板块欧亚板块太平洋板块北美板块DynamicregionsofChinaandadjacentareasSlidefrom:“TheRecentTectonicStressFieldandStrongEarthquakesinChina”XieFurenInstituteofCrustalDynamics,CEA第26页Itisessentialforrockengineeringtounderstandthegeologyataprojectsite,forexampleattheJinPingIIsite第27页
H/W=3H/W=1.5H/W=1H/W=2H/W=0.5SimulatedwithRFPA2DDrCATangCATangetal.(1999)Numericalstudiesoftheinfluenceofmicrostructure onrockfailureinuniaxialcompression,IJRMMS.RockFailureProcessAnalysis(RFPA)Numericalmodelling第28页UndergroundResearchLaboratories第29页Atpresent,therearemajorrockengineeringprojectsbeingconstructedweanticipatethiswillcontinueacrosstheworldgeologicalandsiteinvestigationtechniquesareimprovingnumericalmethodshaveimprovedsignificantlysothatthe rockcannowberealisticallyrepresentedinthemodellingthereisrapidtelephoneandinternetcommunicationthereisincreasedinternationalco-operationitisnoweasytoobtainscientificinformationthroughthe internetWhatisgoingtohappennext?第30页ForetellthefutureLetusconsiderthepossibilitiesforthefutureintermsof:theshortterm(thenext20years)thelongerterm(thenext100years)第31页Therockmechanicsfuture: Part1–theshortterm(thenext20years)Requirementsformaterials,energy,structuresTheglobalenvironmentSustainabledevelopmentEthicalengineeringThetechnologicalfuture
Therockmechanicsfuture: Part2–thelongerterm(thenext100years)第32页SustainabledevelopmentIstheexploitationofundergroundspacecompatiblewiththeconceptofsustainabledevelopment?第33页Whatissustainabledevelopment? Bruntland1987definition: “Developmentthatmeetstheneedsofthepresentgenerationwithoutcompromisingtheabilityoffuturegenerationstomeettheirownneeds”第34页Givenanexistingsystem(whetheravirginspaceoradevelopedspace),isitacceptabletolocateanewfacilityinthesystem—withinthecontextofsustainabledevelopment?ExistingsystemProposednewproject第35页EthicalengineeringThedecisionsandactionsofengineershaveaprofoundimpactontheworldwelivein,andsocietyatlarge.Makingaclearandpubliccommitmenttooperatingwithintegrityandhonestyisessentialtocreateagreaterleveloftrustandconfidence,andapositiveperceptionoftheengineeringprofession.第36页ThetechnologicalfutureDuringconstruction,anexperiencedengineercanlookattheroofofanexcavationinrockanddecidewhetherornotitisdangerous.Howisthisdone?Byexperienceoperatingonthe1Mborsovisualinformationbeingreceivedthroughtheengineer’seyes.So,ifacameraismonitoringtheroof,itshouldbepossibleinthefutureforaneuralnetworkcomputerprogramtoevaluatetheconditionsvia,forexample,1Mbimagesinthesamewayastheengineer.第37页ItisnowrecognizedthatGeological-Thermal-Hydrological-Mechanical-Chemical-Engineeringmodellingisrequiredtofullyunderstandthemechanismsthatoccurintherockmass.Geological: sitegeometry,lithology,fracturesThermal: heatloads,heatflowHydrological: waterpressures,waterflowMechanical: rockstress,stiffness,strengthChemical: waterchemistry,swellingrocksEngineering: effectsofexcavation第38页RockexcavationBlastingorTunnelBoringMachines?第39页 Therockmechanicsfuture: Part2–thelongerterm(50-100years)So,weareabletohaveagoodfeelfortheshorttermfuture,butwhatislikelytohappeninthelongerterm?Thetechnologicaldevelopmentswillbedramaticandpossiblydifficultforustocomprehendnow.第40页GrowthincomputingpowerNext50-100yearsNext20yearsAllhumanbrainsOnehumanbrainOnemousebrainOneinsectbrainNowCalculationspersecondper$1000第41页Technologyisbeingimplementedincreasinglyrapidly第42页Whatwillhappentobooks?Microsofthaveannouncedthattheywillmake25millionpagesofbooksanddocumentsavailablefromtheBritishLibraryonlineandfreeofcharge.GooglePrint–samethingsforUSlibraries…第43页Publishing–InformationcommunicationComputerswillwritepapersaboutthecumulativeadvancesinrockmechanicsviaallthepaperspublishedeachyear,andabouttheirmonitoringexperiences,etc.Ifcomputersbecomeauthors,howshouldtheybeidentified,oridentifythemselves?Willwebeabletotelliftheauthorishumanoracomputer?第44页Computerdesignofrockengineeringfacilities
Atthemoment,weashumanengineersdecidethatweneedarockengineeringfacility,thenwemakepreparations,operateadesignmodel,evaluatetheconsequences,etc.Isitpossiblethatallthiscouldbecomputerisedoneday?Couldthecomputerdecidewhatengineeringfacilitiesarerequired,thenindicatewhatsiteinvestigationisrequired,thenchoosethemostappropriatenumericalmodelfromitslibrary,andthendecideontheoptimalengineeringdesign?第45页AttendanceatconferencesItwillbeanoptionwhetherweattendaconferencephysicallyorelectronically.Somepeoplewillwishtoattendphysicallybut,withmoreandmorepressureoneveryone’stime,theelectronicattendancewillbepreferredbymanyothers.Thishasmanyadvantages,notleastofwhichisthatonecouldattendmanymoreconferences.第46页Futuretechnologicaldevelopments...Howlargecanacavernbe?RedwallcavernGrandCanyon,USA第47页Futuretechnologicaldevelopments...Howlargecanacavernbe?Stressconcentrationisindependentofexcavationsize.So,inanunfracturedrockmass,thecaverncouldbeanysize. 100m,1000m?第48页Willwebecomeanybetteratpredictinghazardsandfailure?第49页PorteauBluffonHighway99NorthofVancouver,CanadaCharacterizingthefracturesatasiteCivilengineering第50页Mt.Tai:"thefirstamongthefivesacredmountainsofChina"and"thefirstmountainunderheaven".第51页FailureofalargerockwedgeattheTeutonicBoreMine,WesternAustraliaMiningengineering第52页Theengineermusthaveapredictivecapabilityfordesign,andthatpredictivecapabilitycanonlybeachievedifthekeyfeaturesoftherockrealityhaveindeedbeencapturedinthemodel.Issuesofspecialdifficultyandimportanceinnumericalmodellingarethefollowing: ·Systematicevaluationofgeologicalandengineeringuncertainties ·Understandingandrepresentationoflargerockfractures ·Quantificationoffractureshape,size,connectivityandeffectof fractureintersectionsforDFNandDEMmodels ·Representationofrockmasspropertiesandbehaviourasan equivalentcontinuumandexistenceoftheRepresentativeElemental Volume(REV) ·Representationofinterfacebehaviour ·Scaleeffects,homogenizationandupscalingmethods ·Numericalrepresentationofengineeringprocesses,suchas excavationsequence,groutingandreinforcement ·TimeeffectsfromLJingandJAHudson(2023)Numericalmet
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