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Rate of Entropy Production in Evolving Interfaces and Membranes under Astigmatic Kinematics: Shape Evolution in Geometric-Dissipation Landscapes
- Source :
- Entropy, Vol 22, Iss 909, p 909 (2020), Entropy, Volume 22, Issue 9
- Publication Year :
- 2020
- Publisher :
- MDPI AG, 2020.
-
Abstract
- This paper presents theory and simulation of viscous dissipation in evolving interfaces and membranes under kinematic conditions, known as astigmatic flow, ubiquitous during growth processes in nature. The essential aim is to characterize and explain the underlying connections between curvedness and shape evolution and the rate of entropy production due to viscous bending and torsion rates. The membrane dissipation model used here is known as the Boussinesq-Scriven fluid model. Since the standard approaches in morphological evolution are based on the average, Gaussian and deviatoric curvatures, which comingle shape with curvedness, this paper introduces a novel decoupled approach whereby shape is independent of curvedness. In this curvedness-shape landscape, the entropy production surface under constant homogeneous normal velocity decays with growth but oscillates with shape changes. Saddles and spheres are minima while cylindrical patches are maxima. The astigmatic flow trajectories on the entropy production surface, show that only cylinders and spheres grow under the constant shape. Small deviations from cylindrical shapes evolve towards spheres or saddles depending on the initial condition, where dissipation rates decrease. Taken together the results and analysis provide novel and significant relations between shape evolution and viscous dissipation in deforming viscous membrane and surfaces.
- Subjects :
- Surface (mathematics)
entropy production rate
General Physics and Astronomy
lcsh:Astrophysics
02 engineering and technology
astigmatic flow
01 natural sciences
Shape parameter
Article
surface evolution
0103 physical sciences
lcsh:QB460-466
Initial value problem
lcsh:Science
Physics
shape parameter
010304 chemical physics
Entropy production
Casorati curvature
Mechanics
Dissipation
021001 nanoscience & nanotechnology
pure growth
lcsh:QC1-999
Maxima and minima
Flow (mathematics)
SPHERES
lcsh:Q
0210 nano-technology
Boussinesq-Scriven dissipation
lcsh:Physics
Subjects
Details
- Language :
- English
- ISSN :
- 10994300
- Volume :
- 22
- Issue :
- 909
- Database :
- OpenAIRE
- Journal :
- Entropy
- Accession number :
- edsair.doi.dedup.....e02fa9c93f9b3c6e1d40ebcfa062f69b