LEADER 01577nam2-2200481---450- 001 990002874940203316 005 20070306154743.0 010 $a1-84171-681-2 035 $a000287494 035 $aUSA01000287494 035 $a(ALEPH)000287494USA01 035 $a000287494 100 $a20070302d2005----km-y0itay50------ba 101 $aeng 102 $aGB 105 $a||||||||001yy 200 1 $a<> : Sites of Meroitic and Ballaña age 210 $aOxford$cArchaeopress$d2005 215 $aXIV, 160 p., [25] p. di tav.$cill. 225 2 $aSudan Archaeological Research Society publication$v13 225 2 $aBAR International series$v1335 410 0$12001$aBAR International series$v1335 410 0$12001$aSudan Archaeological Research Society publication$v13 454 1$12001 461 1$1001000287493$12001 606 $aScavi archeologici$ySudan 606 $aScavi archeologici$yEgitto 676 $a962.5 22 700 1$aADAMS,$bWilliam Y.$0242681 801 0$aIT$bsalbc$gISBD 912 $a990002874940203316 951 $aXI.5. Coll. 12/212.2$b189807 L.M.$cXI.5.$d00121297 959 $aBK 969 $aUMA 979 $aVITALE$b90$c20070302$lUSA01$h1626 979 $aVITALE$b90$c20070302$lUSA01$h1629 979 $aVITALE$b90$c20070302$lUSA01$h1629 979 $aVITALE$b90$c20070302$lUSA01$h1630 979 $aVITALE$b90$c20070302$lUSA01$h1636 979 $aVITALE$b90$c20070306$lUSA01$h1547 979 $aVITALE$b90$c20070306$lUSA01$h1547 996 $aSites of Meroitic and Ballaña age$9991457 997 $aUNISA LEADER 05653nam 22006491 450 001 9911006767103321 005 20230803033120.0 010 $a1-62870-827-1 010 $a3-03826-096-7 035 $a(CKB)3710000000025402 035 $a(EBL)1910279 035 $a(SSID)ssj0001190012 035 $a(PQKBManifestationID)11677256 035 $a(PQKBTitleCode)TC0001190012 035 $a(PQKBWorkID)11189306 035 $a(PQKB)10734721 035 $a(MiAaPQ)EBC1910279 035 $a(EXLCZ)993710000000025402 100 $a20131021h20132013 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aStructural health monitoring $eresearch and applications : peer reviewed papers from the 4th Asia-Pacific workshop on structural health monitoring, December 5-7, 2012, Melbourne, Australia /$fedited by W.K. Chiu and S.C. Galea 210 1$aDurnten-Zurich, Switzerland :$cTrans Tech Publication,$d[2013] 210 4$d©2013 215 $a1 online resource (582 p.) 225 1 $aKey engineering materials ;$vvolume 558 300 $aDescription based upon print version of record. 311 $a3-03785-715-3 320 $aIncludes bibliographical references and index. 327 $aStructural Health Monitoring: Research and Applications; Preface, Committees and Sponsors; Table of Contents; A One Stage Damage Detection Technique Using Spectral Density Analysis and Parallel Genetic Algorithms; Application of Wavelet Parameters for Impact Damage Detection in Plates; Damage Identification and Assessment in Tapered Sandwich Structures Using Guided Waves; A Framework for Reliability Assessment of an In-Service Bridge Using Structural Health Monitoring Data; Modeling of Environmental Effects for Vibration-Based SHM Using Recursive Stochastic Subspace Identification Analysis 327 $aModal Acoustic Emission Investigation for Progressive Failure Monitoring in Thin Composite Plates under Tensile TestLaser Lock-In Thermography for Fatigue Crack Detection; In Situ Blade Deflection Monitoring of a Wind Turbine Using a Wireless Laser Displacement Sensor Device within the Tower; Guided Wavefield Images Filtering for Damage Localization; Strain as Damage Indicator for Truss and Frame Structures; Guided Waves for Aircraft Panel Monitoring; Time-Domain Hybrid Global-Local Prediction of Guided Waves Interaction with Damage 327 $aA Robust Procedure for Damage Detection from Strain Measurements Based on Principal Component AnalysisPrediction and Measurement of Lamb Wave from Debondings at Structural Features in Composite Laminates; Substructure Damage Detection Method for Shear Structure Using Sub-Time Series and ARMAX; Structural Design and Verification of Composite Pressure Vessels for Submarine External Stowage; Verification of Structural Health Assessment Method Using Full-Scale Collapse Test of Four-Story Steel Building; Damage Characterisation of Carbon Fibre Reinforced Composite Plate Using Acoustic Emission 327 $aNonlinear Properties of Lamb Waves under Modulation of Fatigue Damage: Finite Element Simulation with Experimental ValidationSingle Transducer Pair Lamb Wave Time Reversal for Damage Detection in Composite Laminates; Development of the Damage Detection Method for CFRP Structures Using Distributed BOCDA Optical Fiber Sensor; Dynamic Displacement Estimation from Acceleration Measurements Using a Wireless Smart Sensor; Optimal Structural Health Monitoring Feature Selection via Minimized Performance Uncertainty; Imaging Damage Using Mixed Passive and Active Sensors 327 $aDistributed Strain Monitoring for Damage Evolution in CFRP Bolted Structures with Embedded Optical FibersLamb Wave Based Monitoring of Fatigue Crack Growth Using Principal Component Analysis; Structural Health Monitoring of Space Vehicle Thermal Protection Systems; Active Evacuation Guidance and Structural Health Monitoring System for Buildings Using Sensor Agent Robots; Sensor Agent Robot with Servo-Accelerometer for Structural Health Monitoring; Damage Assessment Methodology for Nonstructural Components with Inspection Robot; Flight Tests Performed by EMBRAER with SHM Systems 327 $aScattering Matrix Approach to Informing Damage Monitoring and Prognosis in Composite Bolted Connections 330 $aStructural health monitoring has international relevance across maritime, aerospace and infrastructure domains for both civilian and military end-users. The aim of this book is to collect the most recent developments and research knowledge on this topic, with focusing in particular on the Asia-Pacific region. The collection covers 54 peer reviewed papers covering up-to-date research results in structural health monitoring. Fifty-six papers from the December 2012 workshop present new developments in monitoring aircraft structure conditions, civil structures, wind turbines, pipelines, and buildi 410 0$aKey engineering materials ;$vv. 558. 606 $aStructural health monitoring$vCongresses 606 $aStructural analysis (Engineering)$vCongresses 610 1 $aStructural health monitoring 610 1 $aHealth monitoring 615 0$aStructural health monitoring 615 0$aStructural analysis (Engineering) 676 $a624.1 701 $aChiu$b W. K$01823345 701 $aGalea$b S. C$01823346 712 12$aAsia-Pacific Workshop on Structural Health Monitoring 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9911006767103321 996 $aStructural health monitoring$94389945 997 $aUNINA