James reuther (8 Ergebnisse)

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  • Sprache: Englisch

    Verlag: Creative Media Partners, LLC, 2025

    1025159810 / 9781025159812

    • Softcover

    Anbieter: PBShop.store US, Wood Dale, IL, USAPBShop.store US

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    Zustand: Neu

    EUR 27,65

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    PAP. Zustand: New. New Book. Shipped from UK. Established seller since 2000.

  • Sprache: Englisch

    Verlag: Creative Media Partners, LLC, 2025

    1025159810 / 9781025159812

    • Softcover

    Anbieter: PBShop.store UK, Fairford, GLOS, Vereinigtes KönigreichPBShop.store UK

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    Zustand: Neu

    EUR 24,96

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    PAP. Zustand: New. New Book. Shipped from UK. Established seller since 2000.

  • Verlag: University Books, 1956

    • Hardcover
    • Erstausgabe

    Anbieter: Rosario Beach Rare Books, Lake Stevens, WA, USARosario Beach Rare Books

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    Verbandsmitglied: ESACBAIOBA

    Zustand: Gebraucht - Gut

    EUR 22,47

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    In den Warenkorb

    Hardcover. Zustand: Very Good. Zustand des Schutzumschlags: Good. 1st Edition. *Veteran-Owned, Family-Run, Small Book Store in the Pacific Northwest* FAST SHIPPING!! Clean text, no markings, tight binding.

  • Sprache: Englisch

    Verlag: Creative Media Partners, LLC, 2025

    1025155122 / 9781025155128

    • Hardcover

    Anbieter: PBShop.store US, Wood Dale, IL, USAPBShop.store US

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    Zustand: Neu

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    HRD. Zustand: New. New Book. Shipped from UK. Established seller since 2000.

  • Sprache: Englisch

    Verlag: Creative Media Partners, LLC, 2025

    1025155122 / 9781025155128

    • Hardcover

    Anbieter: PBShop.store UK, Fairford, GLOS, Vereinigtes KönigreichPBShop.store UK

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    Zustand: Neu

    EUR 34,84

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    HRD. Zustand: New. New Book. Shipped from UK. Established seller since 2000.

  • Zustand: Gebraucht - Sehr gut

    EUR 53,98

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    Hardcover. Zustand: Fine. Zustand des Schutzumschlags: Very Good. 197 pages : illustrations ; 31 cm. ; ISBN: 0670603988; 9780670603985 LCCN: 78-164993 ; LC: TL616; Q629.1332 R; Dewey: 629.133/22/09 ; OCLC: 403165 ; orange cloth with gold designs, in color pictorial dustjacket ; name on front endpaper ; "The stories are taken from eyewitness accounts, newspaper stories, reports to scientific bodies, from log-books, memoirs and letters. Eighteenth-century engravers, watercolourists, painters, and nineteenth- and twentieth-century photographers all contribute a wealth of dramatic illustration, much of which has never been published before.The last chapter of this book contains practical information about balloons. Fred Dolder, veteran balloon pilot, explains the construction of a modern balloon and the technique of flying it." ; numerous tipped-in color plates ; small dig on back cover of dustjacket, else FINE/VG. Book.

  • Sprache: Englisch

    Verlag: Creative Media Partners, LLC Mai 2025, 2025

    1025159810 / 9781025159812

    • Softcover

    Anbieter: AHA-BUCH GmbH, Einbeck, DeutschlandAHA-BUCH GmbH

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    Zustand: Neu

    EUR 49,17

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    Taschenbuch. Zustand: Neu. Neuware - Aerodynamic shape design has long persisted as a difficult scientific challenge due its highly nonlinear flow physics and daunting geometric complexity. However, with the emergence of Computational Fluid Dynamics (CFD) it has become possible to make accurate predictions of flows which are not dominated by viscous effects. It is thus worthwhile to explore the extension of CFD methods for flow analysis to the treatment of aerodynamic shape design. Two new aerodynamic shape design methods are developed which combine existing CFD technology, optimal control theory, and numerical optimization techniques. Flow analysis methods for the potential flow equation and the Euler equations form the basis of the two respective design methods. In each case, optimal control theory is used to derive the adjoint differential equations, the solution of which provides the necessary gradient information to a numerical optimization method much more efficiently then by conventional finite differencing. Each technique uses a quasi-Newton numerical optimization algorithm to drive an aerodynamic objective function toward a minimum. An analytic grid perturbation method is developed to modify body fitted meshes to accommodate shape changes during the design process. Both Hicks-Henne perturbation functions and B-spline control points are explored as suitable design variables. The new methods prove to be computationally efficient and robust, and can be used for practical airfoil design including geometric and aerodynamic constraints. Objective functions are chosen to allow both inverse design to a target pressure distribution and wave drag minimization. Several design cases are presented for each method illustrating its practicality and efficiency. These include non-lifting and lifting airfoils operating at both subsonic and transonic conditions.This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work was reproduced from the original artifact, and remains as true to the original work as possible. Therefore, you will see the original copyright references, library stamps (as most of these works have been housed in our most important libraries around the world), and other notations in the work.This work is in the public domain in the United States of America, and possibly other nations. Within the United States, you may freely copy and distribute this work, as no entity (individual or corporate) has a copyright on the body of the work.As a reproduction of a historical artifact, this work may contain missing or blurred pages, poor pictures, errant marks, etc. Scholars believe, and we concur, that this work is important enough to be preserved, reproduced, and made generally available to the public. We appreciate your support of the preservation process, and thank you for being an important part of keeping this knowledge alive and relevant.

  • Sprache: Englisch

    Verlag: Creative Media Partners, LLC Mai 2025, 2025

    1025155122 / 9781025155128

    • Hardcover

    Anbieter: AHA-BUCH GmbH, Einbeck, DeutschlandAHA-BUCH GmbH

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    Zustand: Neu

    EUR 69,90

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    Anzahl: 2 verfügbar

    Buch. Zustand: Neu. Neuware - Aerodynamic shape design has long persisted as a difficult scientific challenge due its highly nonlinear flow physics and daunting geometric complexity. However, with the emergence of Computational Fluid Dynamics (CFD) it has become possible to make accurate predictions of flows which are not dominated by viscous effects. It is thus worthwhile to explore the extension of CFD methods for flow analysis to the treatment of aerodynamic shape design. Two new aerodynamic shape design methods are developed which combine existing CFD technology, optimal control theory, and numerical optimization techniques. Flow analysis methods for the potential flow equation and the Euler equations form the basis of the two respective design methods. In each case, optimal control theory is used to derive the adjoint differential equations, the solution of which provides the necessary gradient information to a numerical optimization method much more efficiently then by conventional finite differencing. Each technique uses a quasi-Newton numerical optimization algorithm to drive an aerodynamic objective function toward a minimum. An analytic grid perturbation method is developed to modify body fitted meshes to accommodate shape changes during the design process. Both Hicks-Henne perturbation functions and B-spline control points are explored as suitable design variables. The new methods prove to be computationally efficient and robust, and can be used for practical airfoil design including geometric and aerodynamic constraints. Objective functions are chosen to allow both inverse design to a target pressure distribution and wave drag minimization. Several design cases are presented for each method illustrating its practicality and efficiency. These include non-lifting and lifting airfoils operating at both subsonic and transonic conditions.This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work was reproduced from the original artifact, and remains as true to the original work as possible. Therefore, you will see the original copyright references, library stamps (as most of these works have been housed in our most important libraries around the world), and other notations in the work.This work is in the public domain in the United States of America, and possibly other nations. Within the United States, you may freely copy and distribute this work, as no entity (individual or corporate) has a copyright on the body of the work.As a reproduction of a historical artifact, this work may contain missing or blurred pages, poor pictures, errant marks, etc. Scholars believe, and we concur, that this work is important enough to be preserved, reproduced, and made generally available to the public. We appreciate your support of the preservation process, and thank you for being an important part of keeping this knowledge alive and relevant.