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Parameters for Vortex Formation - Charge Sheath and Ball Lightning

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Parameters for Vortex Formation - Charge Sheath and Ball Lightning

Vortex formation is controlled by a number of factors - which makes the process difficult to simulate!
The process is determined by the velocity and path of  individual electrons. Any calculation based on bulk charge or current  flow will not provide useful results.

The particle species involved in the process are:

Discharge modes:


The important factors are:
The important forces are:

The balance of forces:
  1. A group of electrons moving through a gas cloud or plasma will produce electromagnetic fields that mutually attract each other. They also have the same electrostatic charge that repel each other.
  2. If the velocity of the free electrons is low, or only a small proportion of the non-neutral electrons is a free electron at any one time, then the electromagnetic attraction will be small compared to the electrostatic repulsion, and the electrons will follow paths that are held apart by these forces.
  3. As the velocity of the free electrons increases, and the time spent as a free electron also increases, then the balance of electromagnetic attraction and electrostatic repulsion will ensure that the electrons follow closer pathsthrough the gas or plasma.
  4.  If the velocity of the free electrons between collisions issufficiently high, and the proportion of electrons in the non-neutral populationof electrons that is moving as a free electron at any one time, is also sufficientlyhigh, then the electromagnetic forces of attraction will be greater thanthe electrostatic repulsion, and the electrons will follow paths that aremuch closer together - they will pinch. Such pinching can also acceleratethe electrons and intensify the electromagnetic fields that cause attraction,so once initiated it is self stable until the source of electrons is removed.
  5. Along the direction of electron flow, there is no electromagneticattraction, but the electrostatic repulsion remains at full strength. Electronscannot accumulate - they must keep moving. However, adjacent strands of flowwill attract.
Kinking - first steps to votex formation

This can only be determined by the forces acting on a single moving electron.
If a kink starts to form in a stream of electrons moving from a high voltage on the left to a low voltage on the right:
Application of external magnetic fields
Behaviour of other charge particle species in a lightning stroke
  1. In a charge cloud, each non-neutral electron ( electrons not matched by a proton) experiences a force that repels it from the region of the same charge and attracts it to a region of lower charge, or of the opposite charge.
  2. When the field strength is sufficient to start some electrons moving as free electrons down this electric charge gradient, collisions with other charged molecules can knock further non-neutral electrons free and produce a cascade of free electrons travelling in roughly parallel directions down the charge gradient.
  3. As these free electrons accelerate in the charge field, they produce electromagnetic fields that attract them together. Provided that the voltage gradient is sufficiently high, these free electrons experience stronger attractions as they move closer together and pinch into a narrow lightning discharge. Collisions in this discharge path heat up neutral molecules which glow brightly.
  4. This discharge path is highly negatively charged and attracts twospecies of charged particle from the surrounding air. Positive ions are drawntowards the discharge path and neutral molecules form dipoles that are alsoattracted strongly towards the discharge path. The result is a violent pressurewave moving inwards and compressing the discharge path. This also increasesthe heating effect on the discharge path and the cylinder of air immediately surrounding it.
  5. As soon as the initial electron discharge has passed, the highly positive charge of the pressure wave now also very hot, expands back outwards and propagatesas the loud sound waves that we hear.
Measurement of magnetic fields in a highly charged environment.
Note that Hall effect probes work by balancing magnetic effects against chargeeffects. They should not be used for measurement in a charged environment.

Design parameters for a vortex in the laboratory
The discussion of the factors that control vortex formation suggest the followingpoints:
  1. Maximise the number of free electrons
  2. Maximise the velocity and free paths of electrons
  3. Constrain free electrons to follow the desired vortex path
  4. Minimize the electric charge gradient accross the vortex
These considerations lead on to the following design points: