Transient compressible flow in a compliant viscoelastic tube

被引:18
作者
Anand, Vishal [1 ]
Christov, Ivan C. [1 ]
机构
[1] Purdue Univ, Sch Mech Engn, W Lafayette, IN 47907 USA
基金
美国国家科学基金会;
关键词
SOFT ROBOTIC FINGERTIPS; GAS-FLOW; DYNAMICS; STRAIGHT; CHANNEL; MEMS;
D O I
10.1063/5.0022406
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Motivated by problems arising in the pneumatic actuation of controllers for micro-electromechanical systems, labs-on-a-chip or biomimetic soft robots, and the study of microrheology of both gases and soft solids, we analyze the transient fluid-structure interactions (FSIs) between a viscoelastic tube conveying compressible flow at low Reynolds number. We express the density of the fluid as a linear function of the pressure, and we use the lubrication approximation to further simplify the fluid dynamics problem. On the other hand, the structural mechanics is governed by a modified Donnell shell theory accounting for Kelvin-Voigt-type linearly viscoelastic mechanical response. The fluid and structural mechanics problems are coupled through the tube's radial deformation and the hydrodynamic pressure. For small compressibility numbers and weak coupling, the equations are solved analytically via a perturbation expansion. Three illustrative problems are analyzed. First, we obtain exact (but implicit) solutions for the pressure for steady flow conditions. Second, we solve the transient problem of impulsive pressurization of the tube's inlet. Third, we analyze the transient response to an oscillatory inlet pressure. We show that an oscillatory inlet pressure leads to acoustic streaming in the tube, attributed to the nonlinear pressure gradient induced by the interplay of FSI and compressibility. Furthermore, we demonstrate an enhancement in the volumetric flow rate due to FSI coupling. The hydrodynamic pressure oscillations are shown to exhibit a low-pass frequency response (when averaging over the period of oscillations), while the frequency response of the tube deformation is similar to that of a bandpass filter.
引用
收藏
页数:18
相关论文
共 72 条
[1]  
Anand V., 2019, DYNAMICAL PROCESSES, P17
[2]   Revisiting steady viscous flow of a generalized Newtonian fluid through a slender elastic tube using shell theory [J].
Anand, Vishal ;
Christov, Ivan C. .
ZAMM-ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK, 2021, 101 (02)
[3]   Shock propagation through a bubbly liquid in a deformable tube [J].
Ando, Keita ;
Sanada, T. ;
Inaba, K. ;
Damazo, J. S. ;
Shepherd, J. E. ;
Colonius, T. ;
Brennen, C. E. .
JOURNAL OF FLUID MECHANICS, 2011, 671 :339-363
[4]  
[Anonymous], ADV CRYOGEN ENG, DOI DOI 10.1007/978-1-4757-9047-4_77
[5]  
[Anonymous], 1975, VISCOELASTICITY
[6]   Gaseous slip flow in long microchannels [J].
Arkilic, EB ;
Schmidt, MA ;
Breuer, KS .
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 1997, 6 (02) :167-178
[7]   Reduced-order model feedback control design: Numerical implementation in a thin shell model [J].
Banks, HT ;
del Rosario, RCH ;
Smith, RC .
IEEE TRANSACTIONS ON AUTOMATIC CONTROL, 2000, 45 (07) :1312-1324
[8]   THE MODELING OF PIEZOCERAMIC PATCH INTERACTIONS WITH SHELLS, PLATES, AND BEAMS [J].
BANKS, HT ;
SMITH, RC ;
WANG, Y .
QUARTERLY OF APPLIED MATHEMATICS, 1995, 53 (02) :353-381
[9]  
Boero M., 2015, Encyclopedia of Nanotechnology, P1, DOI [10.1007/978-94-007-6178-0_423-2, DOI 10.1007/978-94-007-6178-0_423-2]
[10]   Viscous-elastic dynamics of power-law fluids within an elastic cylinder [J].
Boyko, Evgeniy ;
Bercovici, Moran ;
Gat, Amir D. .
PHYSICAL REVIEW FLUIDS, 2017, 2 (07)