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authorClaudius "keldu" Holeksa <mail@keldu.de>2025-11-10 15:04:06 +0100
committerClaudius "keldu" Holeksa <mail@keldu.de>2025-11-10 15:04:06 +0100
commit839e7c112039c803bb3c6a174a293ae906720ce6 (patch)
tree3043531e6773edfc919fc080cc69f7b0f1c25ea8 /typst
parentdd98efb88fa95e7acd030de84fda4a7c64340d74 (diff)
downloadphd-fluid_mechanics_report-839e7c112039c803bb3c6a174a293ae906720ce6.tar.gz
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@@ -5,15 +5,31 @@ Author: "Claudius Holeksa"
Date: 2025-11-09
// Abstract
-== Abstract
-This is a brief summary of the report. It gives an overview of the objectives, methods, and conclusions.
+// == Abstract
+// This is a brief summary of the report. It gives an overview of the objectives, methods, and conclusions.
// Table of Contents
[toc]
+== Introduction
+
+For the understanding of near-well injections multiple elements such as multiphase behaviour, particle-solid interaction and
+the geometry of the porous structure is required.
+While at heart most numerical modelling approaches such as the Lattice-Boltzmann-Method are based on the Navier-Stokes Equations,
+here we will take a glance on a more special case.
+Since we are interested in very viscous cases with our Reynolds number (Re<<1) our base equation reduces itself to the Stokes Equations,
+which are well understand in terms of the description by Stokes [dummy].
+
+
+and the fluid behaviour surrounding it, requires an understanding of fluid dynamics in the area of microfluidics,
+particle-solid interactions and multiphase fluids.
+
+
+== Navier
+
// Introduction
== Stokes flow
-This section introduces the topic, explains the purpose of the report, and outlines the scope.
+
// #image("path/to/image.png", width: 10cm)