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Sachdev-Ye-Kitaev model: from quantum chaos to quantum gravity
Conformal geometry from entanglement
Do anyons emerge from an entanglement area law?
清华大学材料科学与工程研究院《材料科学论坛》:Nano-size Crystalline & Amo...
报告题目:
The outer zone of turbulent boundary layers
 报告人:
Javier Jimenez
School of Aeronautics, U. Politecnica de Madrid
报告时间:
2016-10-11 10:00
报告地点:
蒙民伟科技大楼北楼N-414室
主办单位:
清华大学航院流体力学研究所
  简介:
Using data from new simulations of the turbulent boundary layer, we describe several features of the outer zone of wall-bounded flow at relatively high Reynolds numbers (Reth=6600). For example, using two-point velocity correlations, we show that the size and inclination of the different velocity components are different, and interpret this as representing different moments in their evolution. Other features are not so well understood. For example, the transverse components (v and w) are similar in boundary layers and channels, but the streamwise velocity is much longer in the latter, and the outer zone of boundary layers is characterized by a large-scale oblique organization of w, of unknown origin, but reminiscent of some of the transitional structures observed in extended Couette flow.
We next discuss the turbulent/nonturbulent interface, detailing with some care the effect of how the interface is defined, including the variable being thresholded, the thresholding details, and the thresholding level. We note that the definition of distance between a point and a surface has a profound effect on the definition of the interface and, particularly, on the conditional analysis of the flow in its neighbourhood. We introduce an appropriate distance and show that the interface undergoes a topological transition as the threshold is increased and the interface enters the turbulent core. This can be used to define a 'natural' threshold, and we show that this definition clarifies, at least for this flow, some of the hypotheses that have been advanced about the interface structure. A simple structure is proposed which roughly agrees with some of the older proposals by Townsend and others. 
Bio
•Aeronautical Engineer (1969), E.T.S.I. Aeron´auticos. Madrid. (Doctor, 1975)
• Master Sc., Aeronautics (1970), California Institute of Technology, Pasadena, Ca.
• Ph.D., Applied Mathematics (1973), California Institute of Technology.
•1991-present. Prof. Fluid Mechanics, School of Aeronautics (U. Polit´ecnica de Madrid, presently distinguished research professor).
•Member of the Spanish Academy of Sciences (since 2008, Corresponding member since 2006)
• Member of the Spanish Academy of Engineering (since 2005)
• Europ. Research Council Adv. Grantee (2011–2015, and 2016–2021)
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