中文
相关论文

相关论文: Vortex phase matching of a self-propelled model of…

200 篇论文

The wavelength of undulatory kinematics of fish is an important parameter to determine their hydrodynamic performance. This study focuses on numerical examination of this feature by reconstructing the real physiological model and kinematics…

流体动力学 · 物理学 2021-07-14 Muhammad Saif Ullah Khalid , Junshi Wang , Imran Akhtar , Arman Hemmati , Haibo Dong , Moubin Liu

Fish swim by undulating their bodies. These propulsive motions require coordinated shape changes of a body that interacts with its fluid environment, but the specific shape coordination that leads to robust turning and swimming motions…

定量方法 · 定量生物学 2021-05-19 Yusheng Jiao , Feng Ling , Sina Heydari , Nicolas Heess , Josh Merel , Eva Kanso

Three-dimensional experiments are presented on a school of three pitching hydrofoils. Two side-by-side leader foils maintain the same relative positions while the location of a third follower foil is varied. Force and flow measurements…

流体动力学 · 物理学 2026-04-23 Pedro C. Ormonde , Yuanhang Zhu , Daniel Quinn , Keith W Moored

We combine extensive data analyses with a modeling approach to measure, disentangle, and reconstruct the actual functional form of interactions involved in the coordination of swimming in Rummy-nose tetra (Hemigrammus rhodostomus). This…

We present new unconstrained simulations and constrained experiments of a pair of pitching hydrofoils in a leader-follower in-line arrangement. Free-swimming simulations of foils with $matched$ pitching amplitudes show self-organization…

流体动力学 · 物理学 2024-10-04 Tianjun Han , Amin Mivehchi , Seyedali Seyedmirzaei Sarraf , Keith W. Moored

A key goal in developing molecular microrobots that mimic real-world animal dynamic behavior is to understand better the self-continuous progressive motion resulting from collective molecular transformation. This study reports, for the…

软凝聚态物质 · 物理学 2025-05-09 Kazuma Obara , Yoshiyuki Kageyama , Sadamu Takeda

Collective patterns of motion emerge across biological taxa: insects swarm, fish school, and birds flock. In particular, large migratory birds form strikingly ordered V-shaped formations, which experiments and direct numerical simulations…

流体动力学 · 物理学 2026-02-26 Olivia Pomerenk , Kenneth S. Breuer

The vertical, tip-to-tip arrangement of neighboring caudal fins, common in densely packed fish schools, has received much less attention than staggered or side-by-side pairings. We explore this configuration using a canonical system of two…

流体动力学 · 物理学 2025-07-01 Yu Pan , Yuanhang Zhu , Elizabeth Westfall , Daniel B. Quinn , Haibo Dong , George V. Lauder

A coastal eddy is modelled as a barotropic vortex propagating along a coastal shelf. If the vortex speed matches the phase speed of any coastal trapped shelf wave modes, a shelf wave wake is generated leading to a flux of energy from the…

流体动力学 · 物理学 2023-06-22 Matthew N. Crowe , Edward R. Johnson

Swimming fish and flying insects use the flapping of fins and wings to generate thrust. In contrast, microscopic organisms typically deform their appendages in a wavelike fashion. Since a flapping motion with two degrees of freedom is able,…

流体动力学 · 物理学 2014-06-18 Loic Was , Eric Lauga

Many marine invertebrates have larval stages covered in linear arrays of beating cilia, which propel the animal while simultaneously entraining planktonic prey. These bands are strongly conserved across taxa spanning four major superphyla,…

流体动力学 · 物理学 2017-02-14 William Gilpin , Vivek N. Prakash , Manu Prakash

Robotic fish have attracted growing attention in recent years owing to their biomimetic design and potential applications in environmental monitoring and biological surveys. Among robotic fish employing the Body-Caudal Fin (BCF) locomotion…

机器人学 · 计算机科学 2026-03-04 Yita Wang , Chen Chen , Yicheng Chen , Jinjie Li , Yuichi Motegi , Kenji Ohkuma , Toshihiro Maki , Moju Zhao

Synchronization of actively oscillating organelles such as cilia and flagella facilitates self-propulsion of cells and pumping fluid in low Reynolds number environments. To understand the key mechanism behind synchronization induced by…

软凝聚态物质 · 物理学 2015-05-20 Nariya Uchida , Ramin Golestanian

We present and analyze a theoretical model for the dynamics and interactions of "capillary surfers," which are millimetric objects that self-propel while floating at the interface of a vibrating fluid bath. In our companion paper [1], we…

流体动力学 · 物理学 2024-11-25 Anand U. Oza , Giuseppe Pucci , Ian Ho , Daniel M. Harris

Some types of bacteria use rotating helical flagella to swim. The motion of such organisms takes place in the regime of low Reynolds numbers where viscous effects dominate and where the dynamics is governed by hydrodynamic interactions.…

软凝聚态物质 · 物理学 2007-05-23 M. Reichert , H. Stark

This study employs high-fidelity fluid-structure interaction simulations to investigate design optimizations for wave-assisted propulsion (WAP) systems using flapping foils. Building on prior work that identified the leading-edge vortex…

流体动力学 · 物理学 2025-04-21 Harshal S. Raut , Jung-Hee Seo , Rajat Mittal

An elastic foil interacting with a uniform flow with its trailing edge clamped, also known as the inverted foil, exhibits a wide range of complex self-induced flapping regimes such as large amplitude flapping (LAF), deformed and flipped…

流体动力学 · 物理学 2019-07-03 P. S. Gurugubelli , R. K. Jaiman

Collective states of inanimate particles self-assemble through physical interactions and thermal motion. Despite some phenomenological resemblance, including signatures of criticality, the autonomous dynamics that binds motile agents into…

软凝聚态物质 · 物理学 2023-02-01 Xiangzun Wang , Pin-Chuan Chen , Klaus Kroy , Viktor Holubec , Frank Cichos

Microscale fluid flows generated by ensembles of beating eukaryotic flagella are crucial to fundamental processes such as development, motility and sensing. Despite significant experimental and theoretical progress, the underlying physical…

软凝聚态物质 · 物理学 2014-03-11 Douglas R. Brumley , Kirsty Y. Wan , Marco Polin , Raymond E. Goldstein

Hovering insects are limited by their physiology and need to rotate their wings at the end of each back and forth motion to keep the wing's leading edge ahead of its trailing edge. The wing rotation at the end of each half-stroke pushes the…

流体动力学 · 物理学 2022-10-28 Swathi Krishna , Alexander Gehrke , Karen Mulleners