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Handbook of Numerical Simulation of In-Flight Icing / edited by Wagdi George Habashi

Material type: materialTypeLabelE-bookPublisher: Cham : Springer International Publishing, 2024Edition: 1st ed. 2024.Description: 1 recurso en línea.ISBN: 9783031338458.Subject: Meteorología aeronáuticaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Numerical Simulation of Droplets Impingement by a Lagrangian Method -- Numerical Simulation of Dispersed Phase Droplets Impingement by a Hybrid Eulerian-Lagrangian Method -- Numerical Simulation of Supercooled Droplets Deformation, Impingement and Freezing for In-Flight Icing -- Numerical Simulation of In-Flight Icing by a Multi-Step Level-Set Method -- Numerical Simulation of In-Flight Icing by Coupled Immersed Boundary and Level-Set Methods -- Numerical Simulation of In-Flight Icing Under Uncertain Conditions -- Numerical Simulation of In-Flight Icing via a Particle-Based Morphogenetic Method -- Numerical Simulation of Convective Heat Transfer for In-Flight Icing -- Numerical Simulation of In-Flight Iced Surface Roughness -- Numerical Simulation of Iced Swept Wing Aerodynamics with RANS, DES, and IDDES -- Numerical Simulation of Aerodynamic Features with Ice Shapes via High-Fidelity CFD Method.
Summary: This Handbook of Numerical Simulation of In-Flight Icing covers an array of methodologies and technologies on numerical simulation of in-flight icing and its applications. Comprised of contributions from internationally recognized experts from the Americas, Asia, and the EU, this authoritative, self-contained reference includes best practices and specification data spanning the gamut of simulation tools available internationally that can be used to speed up the certification of aircraft and make them safer to fly into known icing. The collection features nine sections concentrating on aircraft, rotorcraft, jet engines, UAVs; ice protection systems, including hot-air, electrothermal, and others; sensors and probes, CFD in the aid of testing, flight simulators, and certification process acceleration methods. Incorporating perspectives from academia, commercial, government R&D, the book is ideal for a range of engineers and scientists concerned with in-flight icing applications. .
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TL556 2024 EB (Browse shelf(Opens below)) Acceso electrónico ebook10042289
Total holds: 0

Numerical Simulation of Droplets Impingement by a Lagrangian Method -- Numerical Simulation of Dispersed Phase Droplets Impingement by a Hybrid Eulerian-Lagrangian Method -- Numerical Simulation of Supercooled Droplets Deformation, Impingement and Freezing for In-Flight Icing -- Numerical Simulation of In-Flight Icing by a Multi-Step Level-Set Method -- Numerical Simulation of In-Flight Icing by Coupled Immersed Boundary and Level-Set Methods -- Numerical Simulation of In-Flight Icing Under Uncertain Conditions -- Numerical Simulation of In-Flight Icing via a Particle-Based Morphogenetic Method -- Numerical Simulation of Convective Heat Transfer for In-Flight Icing -- Numerical Simulation of In-Flight Iced Surface Roughness -- Numerical Simulation of Iced Swept Wing Aerodynamics with RANS, DES, and IDDES -- Numerical Simulation of Aerodynamic Features with Ice Shapes via High-Fidelity CFD Method.

This Handbook of Numerical Simulation of In-Flight Icing covers an array of methodologies and technologies on numerical simulation of in-flight icing and its applications. Comprised of contributions from internationally recognized experts from the Americas, Asia, and the EU, this authoritative, self-contained reference includes best practices and specification data spanning the gamut of simulation tools available internationally that can be used to speed up the certification of aircraft and make them safer to fly into known icing. The collection features nine sections concentrating on aircraft, rotorcraft, jet engines, UAVs; ice protection systems, including hot-air, electrothermal, and others; sensors and probes, CFD in the aid of testing, flight simulators, and certification process acceleration methods. Incorporating perspectives from academia, commercial, government R&D, the book is ideal for a range of engineers and scientists concerned with in-flight icing applications. .

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