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Space-time computational flow analys...
~
Tezduyar, Tayfun E.
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Space-time computational flow analysis = a chronological catalog of unconventional methods and first-of-its-kind solutions /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Space-time computational flow analysis/ by Tayfun E. Tezduyar, Kenji Takizawa.
Reminder of title:
a chronological catalog of unconventional methods and first-of-its-kind solutions /
Author:
Tezduyar, Tayfun E.
other author:
Takizawa, Kenji.
Published:
Cham :Springer Nature Switzerland : : 2025.,
Description:
xiii, 302 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- Part I: Methods and Solutions in Finite Element Analysis -- Early Stabilized Methods -- Methods and Solutions in 1990-1994 -- Methods and Solutions in 1994-1999 -- Methods and Solutions in 2000-2004 -- Methods and Solutions in 2005-2009 -- Methods and Solutions in 2010-2015 -- Part II: Methods and Solutions in Isogeometric Analysis -- Methods and Solutions in 2010-2012 -- Methods and Solutions in 2013-2015 -- Methods and Solutions in 2016-2018 -- Methods and Solutions in 2019-2021 -- Methods and Solutions in 2022-2024 -- Concluding Remarks.
Contained By:
Springer Nature eBook
Subject:
Fluid dynamics. -
Online resource:
https://doi.org/10.1007/978-3-031-88727-7
ISBN:
9783031887277
Space-time computational flow analysis = a chronological catalog of unconventional methods and first-of-its-kind solutions /
Tezduyar, Tayfun E.
Space-time computational flow analysis
a chronological catalog of unconventional methods and first-of-its-kind solutions /[electronic resource] :by Tayfun E. Tezduyar, Kenji Takizawa. - Cham :Springer Nature Switzerland :2025. - xiii, 302 p. :ill. (some col.), digital ;24 cm. - Modeling and simulation in science, engineering and technology,2164-3725. - Modeling and simulation in science, engineering and technology..
Introduction -- Part I: Methods and Solutions in Finite Element Analysis -- Early Stabilized Methods -- Methods and Solutions in 1990-1994 -- Methods and Solutions in 1994-1999 -- Methods and Solutions in 2000-2004 -- Methods and Solutions in 2005-2009 -- Methods and Solutions in 2010-2015 -- Part II: Methods and Solutions in Isogeometric Analysis -- Methods and Solutions in 2010-2012 -- Methods and Solutions in 2013-2015 -- Methods and Solutions in 2016-2018 -- Methods and Solutions in 2019-2021 -- Methods and Solutions in 2022-2024 -- Concluding Remarks.
Space-Time Computational Flow Analysis (STCFA) was developed in 1990 in the context of flows with moving boundaries and interfaces, which is a wide class of problems that includes fluid-particle interactions, fluid-structure interactions (FSI), and free-surface and multi-fluid flows. It is a computational framework made of unconventional methods, which have evolved over the years as more unconventional methods were introduced to increase its scope and accuracy. It brought first-of-its-kind solutions in many classes of problems, including fluid-particle interactions in particle-laden flows, FSI in parachute aerodynamics, flapping-wing aerodynamics of an actual locust, ventricle-valve-aorta flow analysis, and car and tire aerodynamics. With these successes in so many classes of problems, the STCFA has reached a level of remarkable sophistication, scope, and practical value. This monograph presents, for the first time, a chronological catalog of STCFA methods and solutions from their development to the present. Part I focuses on the STCFA in the context of finite element analysis, and Part II in the context of isogeometric analysis. The methods presented include complementary general-purpose methods that were introduced in the evolution of STCFA. All researchers working on or interested in space-time computations in fluid mechanics, FSI, and solid mechanics, including graduate students, will benefit from the wealth of powerful computational methods and impressive solutions they will find in the book.
ISBN: 9783031887277
Standard No.: 10.1007/978-3-031-88727-7doiSubjects--Topical Terms:
545210
Fluid dynamics.
LC Class. No.: QA911
Dewey Class. No.: 620.1064
Space-time computational flow analysis = a chronological catalog of unconventional methods and first-of-its-kind solutions /
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Introduction -- Part I: Methods and Solutions in Finite Element Analysis -- Early Stabilized Methods -- Methods and Solutions in 1990-1994 -- Methods and Solutions in 1994-1999 -- Methods and Solutions in 2000-2004 -- Methods and Solutions in 2005-2009 -- Methods and Solutions in 2010-2015 -- Part II: Methods and Solutions in Isogeometric Analysis -- Methods and Solutions in 2010-2012 -- Methods and Solutions in 2013-2015 -- Methods and Solutions in 2016-2018 -- Methods and Solutions in 2019-2021 -- Methods and Solutions in 2022-2024 -- Concluding Remarks.
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Space-Time Computational Flow Analysis (STCFA) was developed in 1990 in the context of flows with moving boundaries and interfaces, which is a wide class of problems that includes fluid-particle interactions, fluid-structure interactions (FSI), and free-surface and multi-fluid flows. It is a computational framework made of unconventional methods, which have evolved over the years as more unconventional methods were introduced to increase its scope and accuracy. It brought first-of-its-kind solutions in many classes of problems, including fluid-particle interactions in particle-laden flows, FSI in parachute aerodynamics, flapping-wing aerodynamics of an actual locust, ventricle-valve-aorta flow analysis, and car and tire aerodynamics. With these successes in so many classes of problems, the STCFA has reached a level of remarkable sophistication, scope, and practical value. This monograph presents, for the first time, a chronological catalog of STCFA methods and solutions from their development to the present. Part I focuses on the STCFA in the context of finite element analysis, and Part II in the context of isogeometric analysis. The methods presented include complementary general-purpose methods that were introduced in the evolution of STCFA. All researchers working on or interested in space-time computations in fluid mechanics, FSI, and solid mechanics, including graduate students, will benefit from the wealth of powerful computational methods and impressive solutions they will find in the book.
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