LEADER 01120nam a2200241 i 4500 001 991002588549707536 008 040525s2002 it a 000 0 ita d 020 $a8884340748 035 $ab12945213-39ule_inst 040 $aDip.to Scienze pedagogiche$bita 082 0 $a522.2 100 1 $aLanciano, Nicoletta$0486960 245 10$aStrumenti per i giardini del cielo : materiali per le classi, per i musei, per i parchi, per la formazione degli insegnanti e degli animatori culturali /$cNicoletta Lanciano 260 $aAzzano San Paolo :$bJunior,$c2002 300 $a157 p. :$bill. ;$c24 cm 440 0$aQuaderni di cooperazione educativa 650 4$aStrumenti astronomici 907 $a.b12945213$b21-09-06$c25-05-04 912 $a991002588549707536 945 $aLE022 522 LAN01.01$g1$i2022000110693$lle022$op$pE13.20$q-$rl$s- $t0$u1$v0$w1$x0$y.i13538767$z15-06-04 996 $aStrumenti per i giardini del cielo : materiali per le classi, per i musei, per i parchi, per la formazione degli insegnanti e degli animatori culturali$9281034 997 $aUNISALENTO 998 $ale022$b25-05-04$cm$da $e-$fita$git $h0$i0 LEADER 01059nam0 22002771i 450 001 UON00107744 005 20231205102622.748 100 $a20020107d1985 |0itac50 ba 101 $achi 102 $aCN 105 $a||||p ||||| 200 1 $aLiweng duiyun xinzhu$fYi Yinfan 210 $aBeijing$cShumu Wenxian Chubanshe$d1985 215 $a157 p.$d18 cm 410 1$1001UON00107770$12001 $aGuji Xiandu Chubanshe 606 $aLETTERATURA CINESE$xDINASTIA QING (1644-1911)$xCRITICA$3UONC014094$2FI 620 $aCN$dBeijing$3UONL000457 686 $aCIN VI A$cCINA - LETTERATURA CLASSICA (FINO AL 1911)$2A 700 0$aYI Yinfan$3UONV068718$0665689 712 $aShumu wenxian$3UONV246553$4650 801 $aIT$bSOL$c20240220$gRICA 899 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO$2UONSI 912 $aUON00107744 950 $aSIBA - SISTEMA BIBLIOTECARIO DI ATENEO$dSI CIN VI A 339 N $eSI SA 96708 7 339 N 996 $aLiweng duiyun xinzhu$91306963 997 $aUNIOR LEADER 05531nam 2200721Ia 450 001 9911020346803321 005 20200520144314.0 010 $a9786610648832 010 $a9781280648830 010 $a128064883X 010 $a9780470032008 010 $a0470032006 010 $a9780470031995 010 $a0470031999 035 $a(CKB)1000000000357070 035 $a(EBL)274313 035 $a(OCoLC)657629983 035 $a(SSID)ssj0000202424 035 $a(PQKBManifestationID)11199222 035 $a(PQKBTitleCode)TC0000202424 035 $a(PQKBWorkID)10252283 035 $a(PQKB)11235586 035 $a(MiAaPQ)EBC274313 035 $a(PPN)124552374 035 $a(Perlego)2771419 035 $a(EXLCZ)991000000000357070 100 $a20060911d2006 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aMicroporomechanics /$fLuc Dormieux, Djimedo Kondo, Franz-Josef Ulm 210 $aChichester, West Sussex, England ;$aHoboken, NJ $cWiley$dc2006 215 $a1 online resource (346 p.) 300 $aDescription based upon print version of record. 311 08$a9780470031889 311 08$a0470031883 320 $aIncludes bibliographical references (p. [319]-322) and index. 327 $aMicroporomechanics; Contents; Preface; Notation; 1 A Mathematical Framework for Upscaling Operations; 1.1 Representative Elementary Volume (rev); 1.2 Averaging Operations; 1.2.1 Apparent and Intrinsic Averages; 1.2.2 Spatial Derivatives of an Average; 1.2.3 Time Derivative of an Average; 1.2.4 Spatial and Time Derivatives of e; 1.3 Application to Balance Laws; 1.3.1 Mass Balance; 1.3.2 Momentum Balance; 1.4 The Periodic Cell Assumption; 1.4.1 Introduction; 1.4.2 Spatial and Time Derivative of e in the Periodic Case; 1.4.3 Spatial and Time Derivative of e of in the Periodic Case 327 $a1.4.4 Application: Micro- versus Macroscopic CompatibilityPart I Modeling of Transport Phenomena; 2 Micro(fluid)mechanics of Darcy's Law; 2.1 Darcy's Law; 2.2 Microscopic Derivation of Darcy's Law; 2.2.1 Thought Model: Viscous Flow in a Cylinder; 2.2.2 Homogenization of the Stokes System; 2.2.3 Lower Bound Estimate of the Permeability Tensor; 2.2.4 Upper Bound Estimate of the Permeability Tensor; 2.3 Training Set: Upper and Lower Bounds of the Permeability of a 2-D Microstructure; 2.3.1 Lower Bound; 2.3.2 Upper Bound; 2.3.3 Comparison 327 $a2.4 Generalization: Periodic Homogenization Based on Double-Scale Expansion2.4.1 Double-Scale Expansion Technique; 2.4.2 Extension of Darcy's Law to the Case of Deformable Porous Media; 2.5 Interaction Between Fluid and Solid Phase; 2.5.1 Macroscopic Representation of the Solid-Fluid Interaction; 2.5.2 Microscopic Representation of the Solid-Fluid Interaction; 2.6 Beyond Darcy's (Linear) Law; 2.6.1 Bingham Fluid; 2.6.2 Power-Law Fluids; 2.7 Appendix: Convexity of (d); 3 Micro-to-Macro Diffusive Transport of a Fluid Component; 3.1 Fick's Law 327 $a3.2 Diffusion without Advection in Steady State Conditions3.2.1 Periodic Homogenization of Diffusive Properties; 3.2.2 The Tortuosity Tensor; 3.2.3 Variational Approach to Periodic Homogenization; 3.2.4 The Geometrical Meaning of Tortuosity; 3.3 Double-Scale Expansion Technique; 3.3.1 Steady State Diffusion without Advection; 3.3.2 Steady State Diffusion Coupled with Advection; 3.3.3 Transient Conditions; 3.4 Training Set: Multilayer Porous Medium; 3.5 Concluding Remarks; Part II Microporoelasticity; 4 Drained Microelasticity; 4.1 The 1-D Thought Model: The Hollow Sphere 327 $a4.1.1 Macroscopic Bulk Modulus and Compressibility4.1.2 Model Extension to the Cavity; 4.1.3 Energy Point of View; 4.1.4 Displacement Boundary Conditions; 4.2 Generalization; 4.2.1 Macroscopic and Microscopic Scales; 4.2.2 Formulation of the Local Problem on the rev; 4.2.3 Uniform Stress Boundary Condition; 4.2.4 An Instructive Exercise: Capillary Pressure Effect; 4.2.5 Uniform Strain Boundary Condition; 4.2.6 The Hill Lemma; 4.2.7 The Homogenized Compliance Tensor and Stress Concentration 327 $a4.2.8 An Instructive Exercise: Example of an rev for an Isotropic Porous Medium. Hashin's Composite Sphere Assemblage 330 $aIntended as a first introduction to the micromechanics of porous media, this book entitled "Microporomechanics" deals with the mechanics and physics of multiphase porous materials at nano and micro scales. It is composed of a logical and didactic build up from fundamental concepts to state-of-the-art theories. It features four parts: following a brief introduction to the mathematical rules for upscaling operations, the first part deals with the homogenization of transport properties of porous media within the context of asymptotic expansion techniques. The second part deals with linear micropo 606 $aPorous materials$xMechanical properties 606 $aPorous materials$xMechanical properties$xMathematical models 606 $aMicromechanics 615 0$aPorous materials$xMechanical properties. 615 0$aPorous materials$xMechanical properties$xMathematical models. 615 0$aMicromechanics. 676 $a620.11692 700 $aDormieux$b Luc$0619863 701 $aKondo$b Djimedo$0619864 701 $aUlm$b F.-J$g(Franz-Josef)$0619865 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9911020346803321 996 $aMicroporomechanics$91079213 997 $aUNINA