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J Theor Biol ; 349: 1-11, 2014 May 21.
Article in English | MEDLINE | ID: mdl-24486231

ABSTRACT

A generalized lattice-spring lattice-Boltzmann model (GLLM) is introduced by adding a three-body force in the traditional lattice-spring model. This method is able to deal with bending deformation of flexible biological bodies in fluids. The interactions between elastic solids and fluid are treated with the immersed boundary-lattice Boltzmann method. GLLM is validated by comparing the present results with the existing theoretical and simulation results. As an application of GLLM, swimming of flagellum in fluid is simulated and propulsive force as a function of driven frequency and fluid structures at various Reynolds numbers 0.15-5.1 are presented in this paper.


Subject(s)
Computer Simulation , Models, Theoretical , Movement , Pliability , Flagella/physiology , Reproducibility of Results , Rheology , Time Factors
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