LEADER 06177nam 2200841 a 450 001 9910830453403321 005 20200228052912.0 010 $a1-118-55772-7 010 $a1-118-58761-8 010 $a1-118-58781-2 035 $a(CKB)3360000000455820 035 $a(EBL)1120684 035 $a(SSID)ssj0000871734 035 $a(PQKBManifestationID)11478047 035 $a(PQKBTitleCode)TC0000871734 035 $a(PQKBWorkID)10823957 035 $a(PQKB)10490063 035 $a(MiAaPQ)EBC1120684 035 $a(WaSeSS)IndRDA00019398 035 $a(OCoLC)828679468 035 $a(CaSebORM)9781118587614 035 $a(EXLCZ)993360000000455820 100 $a20091208d2010 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aAdvances in computed tomography for geomaterials$b[electronic resource] $eGeoX 2010 /$fedited by Khalid A. Alshibli, Allen H. Reed ; associate editors, Les Butler ... [et al.] 205 $a1st edition 210 1$aHoboken, New Jersey :$cJohn Wiley & Sons,$d2010. 215 $a1 online resource (443 p.) 225 1 $aISTE 300 $aPapers presented March 1-3, 2010 in New Orleans, La. sponored by Louisana Sate University and the Naval Research Laboratory, Stennis Space Center, Mississippi. 311 $a1-84821-179-1 320 $aIncludes bibliographical references and index. 327 $aCover; Advances in Computed Tomography for Geomaterials; Title Page; Copyright Page; Table of Contents; Foreword; Keynote Paper: Sand Deformation at the Grain Scale Quantified Through X-ray Imaging; Quantitative Description of Grain Contacts in a Locked Sand; 3D Characterization of Particle Interaction Using Synchrotron Microtomography; Characterization of the Evolving Grain-Scale Structure in a Sand Deforming under Triaxial Compression; Visualization of Strain Localization and Microstructures in Soils during Deformation Using Microfocus X-ray CT 327 $aDetermination of 3D Displacement Fields between X-ray Computed Tomography Images Using 3D Cross-CorrelationCharacterization of Shear and Compaction Bands in Sandstone Using X-ray Tomography and 3D Digital Image Correlation; Deformation Characteristics of Tire Chips-Sand Mixture in Triaxial Compression Test by Using X-ray CT Scanning; Strain Field Measurements in Sand under Triaxial Compression Using X-ray CT Data and Digital Image Correlation; Latest Developments in 3D Analysis of Geomaterials by Morpho+; Quantifying Particle Shape in 3D; 3D Aggregate Evaluation Using Laser and X-ray Scanning 327 $aComputation of Aggregate Contact Points, Orientation and Segregation in Asphalt Specimens Using their X-ray CT ImagesIntegration of 3D Imaging and Discrete Element Modeling for Concrete Fracture Problems; Application of Microfocus X-ray CT to Investigate the Frost-induced Damage Process in Cement-based Materials; Evaluation of the Efficiency of Self-healing in Concrete by Means of ?-CT; Quantification of Material Constitution in Concrete by X-ray CT Method; Sealing Behavior of Fracture in Cementitious Material with Micro-Focus X-ray CT 327 $aExtraction of Effective Cement Paste Diffusivities from X-ray Microtomography ScansContributions of X-ray CT to the Characterization of Natural Building Stones and their Disintegration; Characterization of Porous Media in Agent Transport Simulation; Two Less-Used Applications of Petrophysical CT-Scanning; Trends in CT-Scanning of Reservoir Rocks; 3D Microanalysis of Geological Samples with High-Resolution Computed Tomography; Combination of Laboratory Micro-CT and Micro-XRF on Geological Objects 327 $aQuantification of Physical Properties of theTransitional Phenomena in Rock from X-ray CT Image DataDeformation in Fractured Argillaceous Rock under Seepage Flow Using X-ray CT and Digital Image Correlation; Experimental Investigation of Rate Effects on Two-Phase Flow through Fractured Rocks Using X-ray Computed Tomography; Keynote Paper: Micro-Petrophysical Experiments Via Tomography and Simulation; Segmentation of Low-contrast Three-phase X-ray Computed Tomography Images of Porous Media; X-ray Imaging of Fluid Flow in Capillary Imbibition Experiments 327 $aEvaluating the Influence of Wall-Roughness on Fracture Transmissivity with CT Scanning and Flow Simulations 330 $aThis title discusses a broad range of issues related to the use of computed tomography in geomaterials and geomechanics. The contributions cover a wide range of topics, including deformation and strain localization in soils, rocks and sediments; fracture and damage assessment in rocks, asphalt and concrete; transport in porous media; oil and gas exploration and production; neutron tomography and other novel experimental and analytical techniques; image-based computational modeling; and software and visualization tools. As such, this will be valuable reading for anyone interested in the appli 410 0$aISTE 606 $aSoil mechanics$xResearch$vCongresses 606 $aRock mechanics$xResearch$vCongresses 606 $aTomography$vCongresses 606 $aThree-dimensional imaging in geology$vCongresses 606 $aMaterials$xTesting$vCongresses 606 $aConcrete$xAnalysis$vCongresses 606 $aRadiography$xIndustrial$vCongresses 615 0$aSoil mechanics$xResearch 615 0$aRock mechanics$xResearch 615 0$aTomography 615 0$aThree-dimensional imaging in geology 615 0$aMaterials$xTesting 615 0$aConcrete$xAnalysis 615 0$aRadiography$xIndustrial 676 $a624.151 676 $a625.122 700 $aAlshibli$b Khalid$01621361 701 $aAlshibli$b Khalid$01621361 701 $aReed$b Allen H$095051 712 02$aLouisiana State University (Baton Rouge, La.) 712 02$aNaval Research Laboratory (John C. Stennis Space Center) 712 12$aGeoX 2010 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910830453403321 996 $aAdvances in computed tomography for geomaterials$93954604 997 $aUNINA