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991.
Zhu?He Zhaohui?LiuEmail author Sheng?Chen Lei?Weng Chuguang?Zheng 《Acta Mechanica Sinica》2005,21(2):112-120
Direct numerical simulations were conducted to investigate the behavior of heavy particles in homogeneous isotropic turbulence. The present study focused on the effect of particle inertia and drift on the autocorrelations of the particle velocity and the fluid seen by particles and the dispersion characteristics of particles. The Lagrangian integral time scale of particles monotonically increased as the magnitude of the particle response time increased, while that of the fluid seen by particles remained relatively constant; it reached a maximum when the particle response time was close to the Kolmolgorov time scale of the flow. Particle dispersion increased as the particle inertia increased for small particles, while for larger particles, it decreased as particle inertia increased; particle eddy diffusion coefficient was maximal, and greater than that of the fluid by about 30%, at the preferential concentration. The concentration field of the particles with τp/τk≈1.0 showed that particles tend to collect in regions of low vorticity (high strain) due to preferential concentration. As the drift velocity of a particle is increased it crosses the paths of fluid elements more rapidly and will tend to lose correlation with its previous velocity faster than a fluid element will. And the correlation of particle velocities along the drift direction is more persistent than that perpendicular to the direction of drift. Simulations also showed that the continuity effect and the crossing-trajectory effect are weakened for particles with infinite inertia. 相似文献
992.
A few additional data from our previous experiments were plotted to emphasize the shear-thickening behavior of deoxy sickle erythrocyte (SS) suspension. A constitutive equation (named as FX equation) was developed and applied to a cylindrical pipe flow of a shear-thickening fluid. A blunt velocity profile and its volume flow rate were calculated. The flow was non-viscous (potential) in the central part of the pipe (i.e. the central core or the central plug-flow), and became more and more viscous towards the wall of the pipe after a specific radial distance, which was determined by a critical shear rate of (named as Fungs shear rate). Furthermore, combining the FX equation with the original Cassons equation, the author obtained a modified Cassons equation by introducing .The English text was polished by Yunming Chen. 相似文献
993.
The shear compression specimen (SCS), which is used for large strain testing, is thoroughly investigated numerically using
three-dimensional elastoplastic finite element simulations. In this first part of the study we address quasi-static loading.
A bi-linear material model is assumed. We investigate the effect of geometrical parameters, such as gage height and root radius,
on the stress and strain distribution and concentration. The analyses show that the stresses and strains are reasonably uniform
on a typical gage mid-section, and their average values reflect accurately the prescribed material model. We derive accurate
correlations between the averaged von Mises stress and strain and the applied experimental load and displacement. These relations
depend on the specimen geometry and the material properties. Numerical results are compared to experimental data, and an excellent
agreement is observed. This study confirms the potential of the SCS for large strain testing of material. 相似文献
994.
Operational modal analysis techniques allow us to extract the modal properties of structures based on their response to non-measured
stationary white noise, i.e., by considering only the system response to operational excitations. In this paper we outline
a procedure to deduce modal parameters from operational response measurements. In particular, we discuss a novel approach
to analyze operational responses due to unknown harmonic excitation in addition to noise. Structural eigenfrequencies and
modal damping are computed using a modified least-squares complex exponential method. Once the poles of the system are identified,
mode shapes are obtained by post-processing. The robustness and accuracy of the approach are illustrated by performing tests
on a plate structure. 相似文献
995.
The shear-induced isotropic-to-nematic phase transition of side chain liquid-crystalline polymers is studied theoretically. A modification of the previous models of main-chain liquid crystals to the case of side chain liquid-crystalline polymers is proposed. Orientational and rheological properties of the model are studied in plane-shear flow. Predictions of the present model agree qualitatively with experimental results (Pujolle-Robic, Noirez in Nature 409:167, 2001). 相似文献
996.
In this paper, the theoretical background for the failure analysis of fibre-reinforced composites under variable repeated loads in the framework of direct methods is presented. It is based on a local shakedown analysis in a representative volume element of the composite and the use of averaging techniques to study the influence of each component (matrix, fibre and interface) on the macroscopic response of such composite. 相似文献
997.
Longitudinal wave velocity is used to characterize the point defects in crystalline solids. High purity Al single crystal was selected for both the finite element analysis and experimental work. Since the jog motions of dislocations caused by intersected slides such as cross slips induce point defects, the total amount of cross slips was calculated instead of calculating directly from the point defects. The effect of crystal orientations on total amount of cross slips under pure shear was also investigated via the finite element method. The result suggest that if the initial shear stress direction is located at the inner side of stereographic triangle, only single slip activities occurred at the beginning of plastic deformation and no effects due to point defects were present. However, as the shear stress direction rotates along the slip direction, point defects are induced by cross slips between primary and secondary slip systems due to work-hardening. This phenomenon was then examined by measuring longitudinal wave velocity changes propagating in Al single crystal subjected to the combination loads of equi-biaxial tension and compression (a pure shear state). Good qualitative agreement between the finite element result and measured data suggest that the longitudinal wave velocity can be used as an index to characterize point defects in crystalline materials. 相似文献
998.
999.
To allow for a reliable examination of the interaction between velocity fluctuations, acoustics and combustion, a novel numerical procedure is discussed in which a spectral solution of the Navier–Stokes equations is directly associated to a high-order finite difference fully compressible DNS solver (sixth order PADE). Using this combination of high-order solvers with accurate boundary conditions, simulations have been performed where a turbulent premixed V-shape flame develops in grid turbulence. In the light of the DNS results, a sub-model for premixed turbulent combustion is analyzed. To cite this article: R. Hauguel et al., C. R. Mecanique 333 (2005). 相似文献
1000.
电化学氧化法制备的氧化铝多孔膜有六角规则密排的纳米孔,其优良的结构特点使其具有良好的用途,可应用于微粒物质分离,氧化剂的载体,微电子机械系统的组件和纳米器件等。在前期研究了这种氧化铝膜的力学性能如拉伸性能和弯曲性能的基础上,本文实验研究了这种氧化铝多孔膜的振动特性即共振频率特性和振动模态,估算了该氧化铝多孔膜的相当弹性模量,与其他方法测得的相当弹性模量基本一致。 相似文献