LEADER 05449nam 2201309z- 450 001 9910576874403321 005 20220621 035 $a(CKB)5720000000008431 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/84522 035 $a(oapen)doab84522 035 $a(EXLCZ)995720000000008431 100 $a20202206d2022 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aSustainable Structural Design for High-Performance Buildings and Infrastructures 210 $aBasel$cMDPI - Multidisciplinary Digital Publishing Institute$d2022 215 $a1 online resource (252 p.) 311 08$a3-0365-4328-7 311 08$a3-0365-4327-9 330 $aExceptional design loads on buildings and structures may have different causes, including high-strain natural hazards, man-made attacks and accidents, and extreme operational conditions. All of these aspects can be critical for specific structural typologies and/or materials that are particularly sensitive. Dedicated and refined methods are thus required for design, analysis, and maintenance under structures' expected lifetimes. Major challenges are related to the structural typology and material properties. Further issues are related to the need for the mitigation or retrofitting of existing structures, or from the optimal and safe design of innovative materials/systems. Finally, in some cases, no design recommendations are available, and thus experimental investigations can have a key role in the overall process. For this SI, we have invited scientists to focus on the recent advancements and trends in the sustainable design of high-performance buildings and structures. Special attention has been given to materials and systems, but also to buildings and infrastructures that can be subjected to extreme design loads. This can be the case of exceptional natural events or unfavorable ambient conditions. The assessment of hazard and risk associated with structures and civil infrastructure systems is important for the preservation and protection of built environments. New procedures, methods, and more precise rules for safety design and the protection of sustainable structures are, however, needed. 606 $aHistory of engineering and technology$2bicssc 606 $aMaterials science$2bicssc 606 $aTechnology: general issues$2bicssc 610 $aalkali-activated mix design 610 $aanalytical model 610 $aassessment 610 $abeam-column joint 610 $abeam-column joints 610 $abeams 610 $acapacity reduction 610 $acase study 610 $acement-based composites (CBCs) 610 $acloud analysis 610 $aCLT 610 $aCO2 emission 610 $acomposites 610 $acompressive strength 610 $aconcrete 610 $aconstruction demolition waste 610 $acorner joint 610 $acorrosion 610 $acrack 610 $acultural heritage 610 $acyclic loading 610 $adeep beam 610 $adeterioration 610 $adisplacement 610 $aductile walls 610 $aductility 610 $aearthquake 610 $aembodied energy 610 $aempirical formulations 610 $aengineering demand parameters (EDPs) 610 $aEurocode 8 610 $aFEM analysis 610 $aferrocement 610 $afinite element (FE) numerical modelling 610 $afinite element (FE) numerical models 610 $afire exposure 610 $afly ash 610 $afriction 610 $agranulated blast-furnace slag 610 $agreen building material 610 $agreen mortar 610 $ainterior joint 610 $ajoint's numerical modeling 610 $alinear regression 610 $aload-bearing glass 610 $ametaheuristic optimization 610 $amodified reinforcement technique (MRT) 610 $anon-linear incremental dynamic analyses (IDA) 610 $aordinary Portland cement 610 $apalm oil fly ash 610 $aq-factor 610 $arecycled ceramics 610 $arecycled waste material 610 $areinforced concrete 610 $areinforcement 610 $aseismic design 610 $ashear capacity 610 $ashear strength 610 $astainless steel 610 $astirrup 610 $astructural glass 610 $asupport vector regression 610 $atemperature 610 $athermal boundaries 610 $athermal expansion 610 $athermochromic 610 $atimber 610 $awaste management 610 $aZagreb 615 7$aHistory of engineering and technology 615 7$aMaterials science 615 7$aTechnology: general issues 700 $aBedon$b Chiara$4edt$01297540 702 $aStepinac$b Mislav$4edt 702 $aFasan$b Marco$4edt 702 $aVedrtnam$b Ajitanshu$4edt 702 $aYoussef$b Maged A$4edt 702 $aBedon$b Chiara$4oth 702 $aStepinac$b Mislav$4oth 702 $aFasan$b Marco$4oth 702 $aVedrtnam$b Ajitanshu$4oth 702 $aYoussef$b Maged A$4oth 906 $aBOOK 912 $a9910576874403321 996 $aSustainable Structural Design for High-Performance Buildings and Infrastructures$93028877 997 $aUNINA