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Titlebook: Non-Ideal Compressible Fluid Dynamics for Propulsion and Power; Selected Contributio Francesca di Mare,Andrea Spinelli,Matteo Pini Conferen

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书目名称Non-Ideal Compressible Fluid Dynamics for Propulsion and Power
副标题Selected Contributio
编辑Francesca di Mare,Andrea Spinelli,Matteo Pini
视频video
概述Reports on innovative research concerning the dynamics of non-ideal compressible fluids.Covers numerical methods, experimental works and simulations.Presents innovative applications in power systems r
丛书名称Lecture Notes in Mechanical Engineering
图书封面Titlebook: Non-Ideal Compressible Fluid Dynamics for Propulsion and Power; Selected Contributio Francesca di Mare,Andrea Spinelli,Matteo Pini Conferen
描述.This book reports on advanced theories and methods aimed at characterizing the dynamics of non-ideal compressible fluids. A special emphasis is given to research fostering the use of non-ideal compressible fluids for propulsion and power engineering. Both numerical and experimental studies, as well as simulations, are described in the book, which is based on selected contributions and keynote lectures presented at the 2.nd. International Seminar on Non-Ideal Compressible-Fluid Dynamics for Propulsion & Power. Held on October 4-5 in Bochum, Germany, the seminar aimed at fostering collaborations between academics and professionals. The two perspectives have been gathered together in this book, which offers a timely guide to advanced fundamentals, innovative methods and current applications of non-ideal compressible fluids to developing turbomachines, and for propulsion and power generation..
出版日期Conference proceedings 2020
关键词Analysis of supercritical fuids; Simulation of cryogenic combustion; Liquid rocket engine; Cryogenic mi
版次1
doihttps://doi.org/10.1007/978-3-030-49626-5
isbn_softcover978-3-030-49625-8
isbn_ebook978-3-030-49626-5Series ISSN 2195-4356 Series E-ISSN 2195-4364
issn_series 2195-4356
copyrightSpringer International Publishing AG 2020
The information of publication is updating

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Numerical Investigation of Supersonic Dense-Gas Boundary Layersd for a strongly cooled wall. Numerical simulations of spatially developing boundary layers yield turbulent statistics for the dense gas flow that remain closer to the incompressible regime than perfect gas ones despite the presence of strongly compressible structures.
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Conference proceedings 2020s between academics and professionals. The two perspectives have been gathered together in this book, which offers a timely guide to advanced fundamentals, innovative methods and current applications of non-ideal compressible fluids to developing turbomachines, and for propulsion and power generation..
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Towards Direct Numerical Simulations of Shock-Turbulence Interaction in Real Gas Flows on GPUs: Initnd the compressible decay of homogeneous isotropic turbulence with eddy shocklets. In absence of appropriate and well documented experimental results, the test cases are adapted to real gas in regions where the gas behavior can be deemed near to the ideal limit and results are compared with the validated ideal gas configurations.
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