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Titlebook: Sixth IUTAM Symposium on Laminar-Turbulent Transition; Proceedings of the S Rama Govindarajan Conference proceedings 2006 Springer Science+

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书目名称Sixth IUTAM Symposium on Laminar-Turbulent Transition
副标题Proceedings of the S
编辑Rama Govindarajan
视频video
概述Latest developments on laminar-turbulent transition.Useful for practising scientists and graduate students
丛书名称Fluid Mechanics and Its Applications
图书封面Titlebook: Sixth IUTAM Symposium on Laminar-Turbulent Transition; Proceedings of the S Rama Govindarajan Conference proceedings 2006 Springer Science+
描述The dynamics of transition from laminar to turbulent flow remains to this day a major challenge in theoretical and applied mechanics. A series of IUTAM symposia held over the last twenty five years at well-known Centres of research in the subject - Novosibirsk, Stuttgart, Toulouse, Sendai and Sedona (Arizona) - has proved to be a great catalyst which has given a boost to research and our understanding of the field. At this point of time, the field is changing significantly with several emerging directions.The sixth IUTAM meeting in the series, which was held at the Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore, India, focused on the progress after the fifth meeting held at Sedona in 1999. The s- posium, which adhered to the IUTAM format of a single session, included seven invited lectures, fifty oral presentations and eight posters.During the course of the symposium, the following became evident. The area of laminar-turbulent transition has progressed considerably since 1999. Better theoretical tools, for handling nonlinearities as well as transient behaviour are now available. This is accompanied by an en- mous increase in the level of sophistication of both
出版日期Conference proceedings 2006
关键词Turbine; applied mechanics; boundary layer; design; development; dynamics; instability; mechanics; mechanism
版次1
doihttps://doi.org/10.1007/1-4020-4159-4
isbn_softcover978-90-481-6871-2
isbn_ebook978-1-4020-4159-4Series ISSN 0926-5112 Series E-ISSN 2215-0056
issn_series 0926-5112
copyrightSpringer Science+Business Media B.V. 2006
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ON FUNDAMENTAL INSTABILITY MECHANISMS OF NOMINALLY 2-D SEPARATION BUBBLES,ons on the form of the underlying basic state. Finally, we employ appropriate instability analysis to study the effect of periodic forcing as means of active control of separation on a trailing-edge geometry.
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EFFECTS OF STRONG ADVERSE PRESSURE GRADIENTS AND INCIDENT WAKES ON TRANSITION AND CALMING,ws. The applicability of the intermittency-based approaches to the closure of laminar separation bubbles is demonstrated. The spacing between impinging wakes is systematically varied and it is found that the calmed region acts to suppress turbulence, even for closely spaced wakes.
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MODELING THE EFFECTS OF STEPS ON BOUNDARY-LAYER TRANSITION, the transition n-factor when compared to forward-facing steps. The results show that step effects can be accounted for by using a Δ. for step heights up to 1.5 times the local boundary-layer displacement thickness.
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SPECTRAL ELEMENT STABILITY ANALYSIS OF VORTICAL FLOWS, of an unstable Batchelor vortex. It was found that a spiral-type instability, if allowed to develop in an axially unconstrained manner, leads to an axial loss of energy and the formation of a stagnation point.
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TRANSIENT GROWTH WITH APPLICATION BYPASS TRANSITION TO,irect numerical simulations of such a transition scenario show that precursors to turbulent spots are optimal streaks which undergo secondary instability. Finally aspects of the receptivity of the streaks are discussed.
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