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Visits

1. Underlying principle of efficient propulsion in flexible plunging .. [2486]
2. Aerodynamic Performance of a Corrugated Dragonfly Airfoil Compared.. [2370]
3. 周期山状流的大涡模拟 [2111]
4. 大涡模拟中的条件滤波耗散和扩散的统计特性 [1796]
5. Numerical Simulation of a Three-Dimensional Fish-like Body Swimmin.. [1789]
6. 非线性力学:从混沌到复杂性 [1658]
7. A smoothing technique for discrete delta functions with applicatio.. [1606]
8. 浸入边界/大涡模拟混合方法模拟翼型绕流的转捩问题 [1586]
9. Flow-mediated interactions between two self-propelled flapping fil.. [1553]
10. An immersed boundary method based on the lattice Boltzmann approac.. [1541]
11. 湍流的时空关联和动态耦合 [1536]
12. Strain self-amplification is larger than vortex stretching due to .. [1513]
13. Subgrid scale fluid velocity timescales seen by inertial particles.. [1507]
14. Turbulent collision of inertial particles: point-particle based, h.. [1473]
15. Space-Time Correlations and Dynamic Coupling in Turbulent Flows [1453]
16. Space-time correlations of fluctuating velocities in turbulent she.. [1421]
17. Numerical study on hydrodynamic effect of flexibility in a self-pr.. [1392]
18. 圆柱绕流湍流结构及气动噪声大涡模拟 [1380]
19. 封面图片说明——受限同心圆环湍射流中反应物混合过程的大涡模拟 [1366]
20. An augmented method for free boundary problems with moving contact.. [1345]
21. A kinematic subgrid scale model for large-eddy simulation of turbu.. [1327]
22. AUTOROTATION OF TWO TANDEM TRIANGULAR CYLINDERS [1318]
23. How flexibility affects the wake symmetry properties of a self-pro.. [1303]
24. Large-eddy simulation of turbulent collision of heavy particles in.. [1300]
25. Self-propelled swimming of a flexible plunging foil near a solid w.. [1287]
26. Self-propulsion of flapping bodies in viscous fluids: Recent advan.. [1284]
27. Scale-similarity model for Lagrangian velocity correlations in iso.. [1278]
28. Using machine learning to detect the turbulent region in flow past.. [1277]
29. 携带颗粒二相湍流的大涡模拟及颗粒亚格子模拟 [1260]
30. Self-Assembled Supramolecular Nanotube Yarn [1253]
31. Parallel computing strategy for a flow solver based on immersed bo.. [1247]
32. Numerical simulation of drop oscillation in AC electrowetting [1237]
33. An Atomistic-Continuum Hybrid Simulation Of Fluid Flows Over Super.. [1209]
34. Prediction of Space-Time Correlations by Large Eddy Simulation [1184]
35. Effects of geometric shape on the hydrodynamics of a self-propelle.. [1175]
36. A nonlinear model for the subgrid timescale experienced by heavy p.. [1171]
37. 湍流大涡模拟的时空关联方法 [1157]
38. A Pressure-Correction Method And Its Applications On An Unstructur.. [1154]
39. A delay model for noise-induced bi-directional switching [1148]
40. 三股射流燃烧系统的大涡模拟 [1130]
41. Effects Of Subgrid-Scale Modeling On Lagrangian Statistics In Larg.. [1129]
42. Lattice Boltzmann simulations of a pitch-up and pitch-down maneuve.. [1126]
43. 分离流动大涡模拟壁模型的特征嵌入式学习 [1110]
44. 大涡模拟中亚格子模型对时空关联的影响 [1103]
45. Subgrid-scale contributions to Lagrangian time correlations in iso.. [1094]
46. 神经网络湍流建模的集合变分方法 [1094]
47. On the computation of space-time correlations by large-eddy simula.. [1092]
48. 多尺度耦合现象:挑战和机遇 [1088]
49. Flow Past Two Freely Rotatable Triangular Cylinders in Tandem Arra.. [1070]
50. A dynamic coupling model for hybrid atomistic-continuum computatio.. [1064]
51. Elliptic Model for Space-Time Correlations in Turbulent Shear Flow.. [1059]
52. Large-eddy simulation of flows past a flapping airfoil using immer.. [1054]
53. A numerical study of a turbulent mixing layer and its generated no.. [1053]
54. Convective coupled map for simulating spatiotemporal chaos in flow.. [1049]
55. A lift formula applied to low-Reynolds-number unsteady flows [1038]
56. Computation of turbulence-generated noise by large-eddy simulation [1037]
57. An atomistic-continuum hybrid simulation of fluid flows over super.. [1034]
58. 跨音速轴流压气机转子绕流的神经网络湍流建模及其可解释性析 [1032]
59. Large-eddy simulation of flows past a flapping airfoil using immer.. [1029]
60. Lattice Boltzmann Simulations of a pitch-up and pitch-down maneuve.. [1026]
61. A Constrained Particle Dynamics for Continuum-Particle Hybrid Meth.. [1023]
62. 亚临界圆柱绕流辐射噪声的大涡模拟 [1007]
63. Large-eddy simulation of a jet-in-hot-coflow burner operating in t.. [996]
64. Temporal decorrelations in compressible isotropic turbulence [996]
65. Multiscale Coupling: Challenges and Opportunities [995]
66. Statistics of dissipation and enstrophy induced by localized vorti.. [993]
67. EFFICIENT COEFFICIENT OF RESTITUTION AND LATTICE-BOLTZMANN SIMULAT.. [993]
68. An Improved Direct-Forcing Immersed Boundary Method for Fluid-Stru.. [983]
69. LES prediction of space-time correlations in turbulent shear flows [968]
70. Effects of Subgrid-Scale Modeling on Time Correlations in Large Ed.. [964]
71. The Mapping Closure Approximation to the Conditional Dissipation R.. [959]
72. An immersed boundary method based on the lattice Boltzmann approac.. [957]
73. Synchronous chaos in the coupled system of two logistic maps [954]
74. Two-Point Closure Strategy in the Mapping Closure Approximation Ap.. [953]
75. Single Curved Fiber Sedimentation Under Gravity [944]
76. Lift enhancement by dynamically changing wingspan in forward flapp.. [933]
77. Transient electroosmotic flow of general Maxwell fluids through a .. [928]
78. About generalized scaling for passive scalars in fully developed t.. [923]
79. Electro-Osmotic Flow and Mixing in Heterogeneous Microchannels [921]
80. Multiscale Coupling in Complex Mechanical Systems [921]
81. Flows with Inertia in a Three-Dimensional Random Fiber Network [921]
82. Turbulent clustering of point particles and finite-size particles .. [921]
83. Pumping of water through carbon nanotubes by rotating electric fie.. [919]
84. Prediction of particle distribution in isotropic turbulence by lar.. [914]
85. Taylor's hypothesis in turbulent channel flow considered using a t.. [913]
86. 湍流噪声四极子声源的边界通量模型 [911]
87. Locomotion of a bioinspired flyer powered by one pair of pitching .. [904]
88. FLOW STRUCTURES IN THREE-DIMENSIONAL FISH-LIKE SWIMMING [894]
89. Molecular Dynamics Simulation of Thermal and Mechanical Properties.. [893]
90. Calculations of longitudinal and transverse velocity structure fun.. [892]
91. Small-scale turbulent fluctuations beyond Taylor's frozen-flow hyp.. [888]
92. Thermodynamical versus log-Poisson distribution in turbulence [886]
93. 二阶动态亚格子尺度应力模型 [880]
94. 基于关联速度的FW-H积分四极子声源修正模型 [874]
95. Anomalous scaling for Lagrangian velocity structure functions in f.. [869]
96. Time Correlations Of Pressure In Isotropic Turbulence [866]
97. Single curved fiber sedimentation under gravity [864]
98. Computation of flow over a rotating body on unstructured Chimera m.. [861]
99. Intermittent locomotion of a fish-like swimmer driven by passive e.. [857]
100. Fluid–structure interactions of single and dual wall-mounted 2D f.. [853]

Downloads

1. 湍流的时空关联和动态耦合 [891]
2. Aerodynamic Performance of a Corrugated Dragonfly Airfoil Compared.. [850]
3. Using machine learning to detect the turbulent region in flow past.. [729]
4. Underlying principle of efficient propulsion in flexible plunging .. [710]
5. Strain self-amplification is larger than vortex stretching due to .. [705]
6. An augmented method for free boundary problems with moving contact.. [586]
7. Self-propulsion of flapping bodies in viscous fluids: Recent advan.. [577]
8. 基于关联速度的FW-H积分四极子声源修正模型 [532]
9. Parallel computing strategy for a flow solver based on immersed bo.. [528]
10. Numerical Simulation of a Three-Dimensional Fish-like Body Swimmin.. [515]
11. Flow-mediated interactions between two self-propelled flapping fil.. [498]
12. Space-Time Correlations and Dynamic Coupling in Turbulent Flows [475]
13. Numerical simulation of drop oscillation in AC electrowetting [473]
14. A lift formula applied to low-Reynolds-number unsteady flows [473]
15. An immersed boundary method based on the lattice Boltzmann approac.. [472]
16. How flexibility affects the wake symmetry properties of a self-pro.. [466]
17. Self-Assembled Supramolecular Nanotube Yarn [439]
18. The significant contribution of stochastic forcing to nonlinear en.. [435]
19. A smoothing technique for discrete delta functions with applicatio.. [432]
20. Large-eddy simulation-based shape optimization for mitigating turb.. [425]
21. Elliptic Model for Space-Time Correlations in Turbulent Shear Flow.. [413]
22. Large-eddy simulation of a jet-in-hot-coflow burner operating in t.. [406]
23. Subgrid scale fluid velocity timescales seen by inertial particles.. [405]
24. Numerical study on hydrodynamic effect of flexibility in a self-pr.. [403]
25. Large-eddy simulation of turbulent collision of heavy particles in.. [400]
26. Prediction of Space-Time Correlations by Large Eddy Simulation [384]
27. A nonlinear model for the subgrid timescale experienced by heavy p.. [384]
28. Molecular Dynamics Simulation of Thermal and Mechanical Properties.. [378]
29. Turbulent collision of inertial particles: point-particle based, h.. [370]
30. Taylor's hypothesis in turbulent channel flow considered using a t.. [369]
31. 非线性力学:从混沌到复杂性 [358]
32. Subgrid-scale contributions to Lagrangian time correlations in iso.. [356]
33. Pumping of water through carbon nanotubes by rotating electric fie.. [346]
34. A kinematic subgrid scale model for large-eddy simulation of turbu.. [343]
35. Scale-similarity model for Lagrangian velocity correlations in iso.. [342]
36. Subgrid-scale model for large-eddy simulation of isotropic turbule.. [340]
37. A dynamic coupling model for hybrid atomistic-continuum computatio.. [339]
38. EFFICIENT COEFFICIENT OF RESTITUTION AND LATTICE-BOLTZMANN SIMULAT.. [339]
39. Computation of turbulence-generated noise by large-eddy simulation [338]
40. AUTOROTATION OF TWO TANDEM TRIANGULAR CYLINDERS [337]
41. Space-time correlations of fluctuating velocities in turbulent she.. [330]
42. Large-eddy simulation of flows past a flapping airfoil using immer.. [330]
43. On the computation of space-time correlations by large-eddy simula.. [327]
44. Effects of geometric shape on the hydrodynamics of a self-propelle.. [326]
45. Calculations of longitudinal and transverse velocity structure fun.. [325]
46. Effects of Subgrid-Scale Modeling on Time Correlations in Large Ed.. [322]
47. Effects Of Subgrid-Scale Modeling On Lagrangian Statistics In Larg.. [320]
48. Temporal decorrelations in compressible isotropic turbulence [319]
49. About generalized scaling for passive scalars in fully developed t.. [318]
50. Transient electroosmotic flow of general Maxwell fluids through a .. [315]
51. A numerical study of a turbulent mixing layer and its generated no.. [314]
52. An improved direct-forcing immersed boundary method for fluid-stru.. [312]
53. Electro-Osmotic Flow and Mixing in Heterogeneous Microchannels [309]
54. LES prediction of space-time correlations in turbulent shear flows [308]
55. Flow Past Two Freely Rotatable Triangular Cylinders in Tandem Arra.. [305]
56. 多尺度耦合现象:挑战和机遇 [304]
57. A Constrained Particle Dynamics for Continuum-Particle Hybrid Meth.. [301]
58. Turbulent clustering of point particles and finite-size particles .. [301]
59. 均匀各向同性湍流中速度和速度梯度的时间尺度 [300]
60. Prediction of particle distribution in isotropic turbulence by lar.. [293]
61. A delay model for noise-induced bi-directional switching [293]
62. Two-Point Closure Strategy in the Mapping Closure Approximation Ap.. [292]
63. 周期山状流的大涡模拟 [291]
64. Statistics of dissipation and enstrophy induced by localized vorti.. [290]
65. FLOW STRUCTURES IN THREE-DIMENSIONAL FISH-LIKE SWIMMING [289]
66. Locomotion of a bioinspired flyer powered by one pair of pitching .. [288]
67. Hierarchy of structure functions for passive scalars advected by t.. [282]
68. Large-eddy simulation of flows past a flapping airfoil using immer.. [278]
69. An immersed boundary method based on the lattice Boltzmann approac.. [278]
70. Thermodynamical versus log-Poisson distribution in turbulence [277]
71. 亚临界圆柱绕流辐射噪声的大涡模拟 [277]
72. An Improved Direct-Forcing Immersed Boundary Method for Fluid-Stru.. [275]
73. Intermittent locomotion of a fish-like swimmer driven by passive e.. [275]
74. Analytical calculations of Eulerian and Lagrangian time correlatio.. [272]
75. An Explicit Algebraic Stress-Based Delayed Detached Eddy Simulatio.. [271]
76. Flows with Inertia in a Three-Dimensional Random Fiber Network [268]
77. 大涡模拟中的条件滤波耗散和扩散的统计特性 [264]
78. Lattice Boltzmann Simulations of a pitch-up and pitch-down maneuve.. [262]
79. Simulation of swimming of a flexible filament using the generalize.. [261]
80. Multiscale Coupling in Complex Mechanical Systems [260]
81. On applicability of the Kutta-Joukowski theorem to low-Reynolds-nu.. [260]
82. Fluid–structure interactions of single and dual wall-mounted 2D f.. [259]
83. 串列柔性平板自推进的流固耦合模拟 [257]
84. 携带颗粒湍流大涡模拟中随机微分方程与反卷积耦合方法 [257]
85. 大涡模拟中亚格子模型对时空关联的影响 [256]
86. Effects of the scalar dissipation rate on the steady laminar flame.. [256]
87. Lattice Boltzmann simulations of a pitch-up and pitch-down maneuve.. [253]
88. Scaling of energy spectra in weakly compressible turbulence [253]
89. Characteristics of space-time energy spectra in turbulent channel .. [252]
90. 聚合物槽道湍流的直接数值模拟 [251]
91. 粗糙单元对槽道湍流统计特性的影响 [250]
92. The Mapping Closure Approximation to the Conditional Dissipation R.. [248]
93. A Pressure-Correction Method And Its Applications On An Unstructur.. [246]
94. Mapping Closure Approximation for Reactive Scalars in Random Flows [241]
95. 携带颗粒二相湍流的大涡模拟及颗粒亚格子模拟 [240]
96. 湍流的时空关联模型和大涡模拟方法 [238]
97. 二阶动态亚格子尺度应力模型 [237]
98. Conditionally Statistical Description of Turbulent Scalar Mixing a.. [237]
99. Lift enhancement by dynamically changing wingspan in forward flapp.. [236]
100. Single Curved Fiber Sedimentation Under Gravity [234]