Javascript must be enabled to continue!
Vortex Dynamics in Dusty Plasma Flow Past a Dust Void
View through CrossRef
The beauty in the formation of vortices during flow around obstacles in fluid mechanics has fascinated mankind since ages. To beat the curiosity behind such an interesting phenomenon, researchers have been constantly investigating the underlying physics and its application in various areas of science. Examining the behavior of the flow and pattern formations behind an obstacle renders a suitable platform to realize the transition from laminar to turbulence. A dusty plasma system comprising of micron-sized particles acts as a unique and versatile medium to investigate such flow behavior at the most kinetic level. In this perspective, this chapter provides a brief discussion on the fundamentals of dusty plasma and its characteristics. Adding to this, a discussion on the generation of a dusty plasma medium is provided. Then, a unique model of inducing a dusty plasma flow past an obstacle at different velocities, producing counter-rotating symmetric vortices, is discussed. The obstacle in the experiment is a dust void, which is a static structure in a dusty plasma medium. Its generation mechanism is also discussed in the chapter.
Title: Vortex Dynamics in Dusty Plasma Flow Past a Dust Void
Description:
The beauty in the formation of vortices during flow around obstacles in fluid mechanics has fascinated mankind since ages.
To beat the curiosity behind such an interesting phenomenon, researchers have been constantly investigating the underlying physics and its application in various areas of science.
Examining the behavior of the flow and pattern formations behind an obstacle renders a suitable platform to realize the transition from laminar to turbulence.
A dusty plasma system comprising of micron-sized particles acts as a unique and versatile medium to investigate such flow behavior at the most kinetic level.
In this perspective, this chapter provides a brief discussion on the fundamentals of dusty plasma and its characteristics.
Adding to this, a discussion on the generation of a dusty plasma medium is provided.
Then, a unique model of inducing a dusty plasma flow past an obstacle at different velocities, producing counter-rotating symmetric vortices, is discussed.
The obstacle in the experiment is a dust void, which is a static structure in a dusty plasma medium.
Its generation mechanism is also discussed in the chapter.
Related Results
Scattering characteristics of non-uniform dusty plasma targets based on Fokker-Planck-Landau collision model
Scattering characteristics of non-uniform dusty plasma targets based on Fokker-Planck-Landau collision model
Dusty plasma is a multi-particle system of dust particles suspended in plasma, which is generally composed of free electrons, ions, and dust particles. It is widely found in natura...
Stability and dynamics of geophysical neutral vortices
Stability and dynamics of geophysical neutral vortices
(English) Mesoscale and submesoscale vortical structures are ubiquitous in the ocean and atmosphere. Most of these vortices are long-lived with a lifetime of several months. They o...
Investigation of vortex in pump sump by V3V measurements
Investigation of vortex in pump sump by V3V measurements
Abstract
The aims, scope and conclusions of the paper must be in a self-contained abstract of a single paragraph with 60-120 words. The abstract must be informative ...
Linear polarization as a tool to characterize interplanetary, cometary, and extrasolar dust particles
Linear polarization as a tool to characterize interplanetary, cometary, and extrasolar dust particles
SummaryLinear polarization observations have suggested the presence of dust particles that scatter solar light within cometary comae and the interplanetary dust cloud. Recent progr...
Experimental investigation on the starting vortex induced by symmetrical dielectric barrier discharge plasma actuator
Experimental investigation on the starting vortex induced by symmetrical dielectric barrier discharge plasma actuator
Flow control using plasma actuator is a promising research field of aeronautical applications. Due to its low energy consumption, rapid response and simple construction, this actua...
Dust deposition and lifting at the Zhurong landing site
Dust deposition and lifting at the Zhurong landing site
IntroductionDust deposition poses the challenges to the survival of instruments and solar-powered missions on Mars [1, 2]. Zhurong in-situ observations provide an opportunity to st...
Magnetohydrodynamics enhanced radio blackout mitigation system for spacecraft during planetary entries
Magnetohydrodynamics enhanced radio blackout mitigation system for spacecraft during planetary entries
(English) Spacecraft entering planetary atmospheres are enveloped by a plasma layer with high levels of ionization, caused by the extreme temperatures in the shock layer. The charg...
Vortex formation in a strongly coupled dusty plasma flow past an obstacle
Vortex formation in a strongly coupled dusty plasma flow past an obstacle
A pair of counter-rotating symmetric vortices has been observed in the wake behind a stationary obstacle (dust void) in a flowing dusty plasma. A strongly coupled dusty plasma flow...

