LEADER 02457oam 2200517 450 001 9910787765703321 005 20190911100038.0 010 $a0-85709-728-8 035 $a(OCoLC)864361386 035 $a(MiFhGG)GVRL8ANK 035 $a(EXLCZ)992670000000485159 100 $a20130815d2013 uy 0 101 0 $aeng 135 $aurun|---uuuua 181 $ctxt 182 $cc 183 $acr 200 00$aAdvances in wind turbine blade design and materials /$fedited by Povl Brondsted and Rogier P.L. Nijssen 205 $a1st edition 210 1$aCambridge :$cWoodhead Publishing,$d2013. 215 $a1 online resource (xxii, 461 pages) $cillustrations 225 1 $aWoodhead Publishing series in energy ;$vnumber 47 300 $a"ISSN: 2044-9364." 311 $a0-85709-426-2 320 $aIncludes bibliographical references and index. 327 $apart I. Wind turbine blade design : challenges and developments -- part II. Fatigue behaviour of composite wind turbine blades -- part III. Advances in wind turbine blade materials, development and testing. 330 $aWind energy is gaining critical ground in the area of renewable energy, with wind energy being predicted to provide up to 8% of the world's consumption of electricity by 2021. Advances in wind turbine blade design and materials reviews the design and functionality of wind turbine rotor blades as well as the requirements and challenges for composite materials used in both current and future designs of wind turbine blades.Part one outlines the challenges and developments in wind turbine blade design, including aerodynamic and aeroelastic design features, fatigue loads on wind turbine bla 410 0$aWoodhead Publishing in energy ;$vnumber 47. 606 $aTurbines$xBlades$xDesign and construction 606 $aTurbines$xBlades$xMaterials 606 $aWind turbines$xMaterials 606 $aWind turbines$xAerodynamics 615 0$aTurbines$xBlades$xDesign and construction. 615 0$aTurbines$xBlades$xMaterials. 615 0$aWind turbines$xMaterials. 615 0$aWind turbines$xAerodynamics. 676 $a621.165 700 $aBrøndsted$b Povl$01481855 702 $aBrondsted$b Povl 702 $aNijssen$b Rogier P. L. 801 0$bMiFhGG 801 1$bMiFhGG 906 $aBOOK 912 $a9910787765703321 996 $aAdvances in wind turbine blade design and materials$93699110 997 $aUNINA