LEADER 03733nam 2200601 450 001 9910132162503321 005 20230802072123.0 010 $a1-5231-2340-0 010 $a1-118-53473-5 010 $a1-118-53474-3 010 $a1-118-53471-9 035 $a(CKB)3710000000245363 035 $a(EBL)1794557 035 $a(DLC) 2014028278 035 $a(Au-PeEL)EBL1794557 035 $a(CaPaEBR)ebr10941710 035 $a(CaONFJC)MIL652549 035 $a(OCoLC)893686414 035 $a(MiAaPQ)EBC1794557 035 $a(EXLCZ)993710000000245363 100 $a20141001h20152015 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $2rdacontent 182 $2rdamedia 183 $2rdacarrier 200 10$aAircraft aerodynamic design $egeometry and optimization /$fAndra?s So?bester, Alexander Forrester 210 1$aChichester, England :$cWiley,$d2015. 210 4$dİ2015 215 $a1 online resource (246 p.) 225 1 $aAerospace Series 225 1 $aTHEi Wiley ebooks 311 $a1-322-21269-4 311 $a0-470-66257-3 320 $aIncludes bibliographical references and index. 330 $a"Optimal aircraft design is impossible without a parametric representation of the geometry of the airframe. We need a mathematical model equipped with a set of controls, or design variables, which generates different candidate airframe shapes in response to changes in the values of these variables. This model's objectives are to be flexible and concise, and capable of yielding a wide range of shapes with a minimum number of design variables. Moreover, the process of converting these variables into aircraft geometries must be robust. Alas, flexibility, conciseness and robustness can seldom be achieved simultaneously.Aircraft Aerodynamic Design: Geometry and Optimization addresses this problem by navigating the subtle trade-offs between the competing objectives of geometry parameterization. It beginswith the fundamentals of geometry-centred aircraft design, followed by a review of the building blocks of computational geometries, the curve and surface formulations at the heart of aircraft geometry. The authors then cover a range of legacy formulations in the build-up towards a discussion of the most flexible shape models used in aerodynamic design (with a focus on lift generating surfaces). The book takes a practical approach and includes MATLAB(r), Python and Rhinoceros(r) code, as well as 'real-life' example case studies.Key features: Covers effective geometry parameterization within the context of design optimization Demonstrates how geometry parameterization is an important element of modern aircraft design Includes code and case studies which enable the reader to apply each theoretical concept either as an aid to understanding or as a building block of their own geometry model Accompanied by a website hosting codes Aircraft Aerodynamic Design: Geometry and Optimization is a practical guide for researchers and practitioners in the aerospace industry, and a reference for graduate and undergraduate students in aircraft design and multidisciplinary design optimization"--$cProvided by publisher. 410 0$aAerospace series (Chichester, England). 410 0$aTHEi Wiley ebooks. 606 $aAirframes 606 $aAerodynamics 615 0$aAirframes. 615 0$aAerodynamics. 676 $a629.134/1 686 $aTEC002000$2bisacsh 700 $aSo?bester$b Andra?s$0973154 702 $aForrester$b Alexander I. J. 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910132162503321 996 $aAircraft aerodynamic design$92214089 997 $aUNINA