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Ueber das Zeitgesetz des kapillaren Aufstiegs von Flüssigkeiten

Richard Lucas
- 01 Jul 1918 - 
- Vol. 23, Iss: 1, pp 15-15
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This article is published in Colloid and Polymer Science.The article was published on 1918-07-01 and is currently open access. It has received 1052 citations till now.

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Capillary filling in closed-end nanotubes

TL;DR: In this article, a dynamic model based on the diffusion-convection equation and Henry's law of gas dissolution was developed for capillary filling in closed-end tubes, and the authors systematically investigated the filling dynamics for various sets of parameters, and compared the results with a previous model which assumes a linear density profile of dissolved gas and neglect the convective term.
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Numerical Models of the Electrolyte Filling Process of Lithium-Ion Batteries to Accelerate and Improve the Process and Cell Design

TL;DR: In this article , the authors developed two models based on a commercial computational fluid dynamics (CFD) program to study the effect of process parameters, such as pressure and temperature, on the filling process.
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Mathematical model of dynamic imbibition in nanoporous reservoirs

TL;DR: In this paper , the dynamic contact angle effect has the most significant impact on nanopore imbibition, followed by nanoconfinement effect (multilayer sticking effect and slippage effect), and the inertia effect and inlet end effect have the least impact.
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Theoretical analysis of flat heat pipe with graded-porosity wick design

TL;DR: In this paper, the axial flow and heat transfer mathematical model of mini-groove flat heat pipe in steady state is built to study the distributions of pressure, velocity of working fluid, wall temperature, etc.
Journal ArticleDOI

Gas Capture in a Cavity with Porous Walls

TL;DR: In this paper, a configuration of an upside-down bell made of porous material is considered which is initially dry but then subjected to a rising pool of liquid, and the capillary transport is initiated.