این سایت در حال حاضر پشتیبانی نمی شود و امکان دارد داده های نشریات بروز نباشند
صفحه اصلی
درباره پایگاه
فهرست سامانه ها
الزامات سامانه ها
فهرست سازمانی
تماس با ما
JCR 2016
جستجوی مقالات
شنبه 22 آذر 1404
Journal of Applied Fluid Mechanics
، جلد ۱۷، شماره ۱۱، صفحات ۲۲۸۲-۲۲۹۸
عنوان فارسی
چکیده فارسی مقاله
کلیدواژههای فارسی مقاله
عنوان انگلیسی
Transient Dynamics of a Porous Sphere in a Linear Fluid
چکیده انگلیسی مقاله
This article describes the unsteady translational motion of a porous sphere with slip-surface in a quiescent viscous fluid. Apart from its radius
a
and density
ρ
s
, the particle is characterized by its permeability parameter
γ
, slip-length
l
and effective viscosity-ratio ϵ for interior flow. The Reynolds number for the system is assumed to be small leading to negligible convective contribution, though the transient inertia for both the liquid and the solid is comparable to viscous forces. The resulting linearized but unsteady flow-equations for both inside and outside the porous domain are solved in time-invariant frequency domain by satisfying appropriate boundary conditions. The analysis ultimately renders frequency-dependent hydrodynamic friction for the suspended body. The frictional coefficient is computed under both low and high frequency limit for different values of γ,
l
and ϵ so that the findings can be compared to known results with impermeable surface. Moreover, the parametric exploration shows that the sphere acts like a no-slip body even with non-zero
l
if
a
γ ≫ 1/√ϵ . Scaling arguments from a novel boundary layer theory for flow inside porous media near interfaces explain this rather unexpected observation. Also, computed fluid resistance is incorporated in equation of motion for the particle to determine its time-dependent velocity response to a force impulse. This transient response shows wide variability with
ρ
s
, γ,
l
and ϵ insinuating the significance of the presented study. Consequently, the paper concludes that slip and permeability should be viewed as crucial features of submicron particles if unexpected variability is to be explained in nano-scale phenomena like nano-fluidic heat conduction or viral transmission. Thus, the theory and findings in this paper will be immensely useful in modeling of nano-particle dynamics.
کلیدواژههای انگلیسی مقاله
Hydrodynamic friction,Mobility response,Transient motion,Low Reynolds Number flow,Interfacial slip
نویسندگان مقاله
P. Cano Fossi |
Department of Mechanical Engineering, Texas Tech University, Lubbock, TX, 79409, USA
P. Nourian |
Department of Chemical Engineering, Texas Tech University, Lubbock, TX, 79409, USA
R. Khare |
Department of Chemical Engineering, Texas Tech University, Lubbock, TX, 79409, USA
S. Bhattacharya |
Department of Mechanical Engineering, Texas Tech University, Lubbock, TX, 79409, USA
نشانی اینترنتی
https://www.jafmonline.net/article_2497_c4e1ae629d3af987ed9d907001813dea.pdf
فایل مقاله
فایلی برای مقاله ذخیره نشده است
کد مقاله (doi)
زبان مقاله منتشر شده
en
موضوعات مقاله منتشر شده
نوع مقاله منتشر شده
برگشت به:
صفحه اول پایگاه
|
نسخه مرتبط
|
نشریه مرتبط
|
فهرست نشریات