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Problems in lightning physics - the role of polarity asymmetry Jose Martinez New Mexico Tech April 26,2016 Jose Martinez Polarity Asymmetry in Lightning
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Problems in lightning physics - the role of polarity asymmetry

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Page 1: Problems in lightning physics - the role of polarity asymmetry

Problems in lightning physics - the role of polarityasymmetry

Jose Martinez

New Mexico Tech

April 26,2016

Jose Martinez Polarity Asymmetry in Lightning

Page 2: Problems in lightning physics - the role of polarity asymmetry

“Many outstanding problems in lightning physics are linked with adifference in macroscopic behavior between positive and negativepolarity. Such differences are referred to broadly as polarityasymmetry. ”. (Williams,2006)

Jose Martinez Polarity Asymmetry in Lightning

Page 3: Problems in lightning physics - the role of polarity asymmetry

Positive and negative ends of lightning propagate at different:

speeds

degrees of steadiness

radiated electromagnetic energy

Jose Martinez Polarity Asymmetry in Lightning

Page 4: Problems in lightning physics - the role of polarity asymmetry

Differences of charge transfer to ground:

multiple return strokes in negative CGs

single return-strokes followed by continuing current in positiveCGs

Negative CGs are much shorter than positive CGs

Negative CGs are much more numerous in occurrence thanpositive CGs

Positive CGs cause sprites and negative CGs usually do not

Jose Martinez Polarity Asymmetry in Lightning

Page 5: Problems in lightning physics - the role of polarity asymmetry

Jose Martinez Polarity Asymmetry in Lightning

Page 6: Problems in lightning physics - the role of polarity asymmetry

Williams believes these asymetries are rooted in difference inmobility between electrons and heavier positive ions

Leader development is not unidirectional as Simpson believed.Rather it is bidirectional as Jensen (1933) believed and Mazur(1989) better documented.

Jose Martinez Polarity Asymmetry in Lightning

Page 7: Problems in lightning physics - the role of polarity asymmetry

The Simpson (1926) model

Jose Martinez Polarity Asymmetry in Lightning

Page 8: Problems in lightning physics - the role of polarity asymmetry

The Bi-directional leader

Jose Martinez Polarity Asymmetry in Lightning

Page 9: Problems in lightning physics - the role of polarity asymmetry

Jose Martinez Polarity Asymmetry in Lightning

Page 10: Problems in lightning physics - the role of polarity asymmetry

Jose Martinez Polarity Asymmetry in Lightning

Page 11: Problems in lightning physics - the role of polarity asymmetry

View of NLDN on PA

Observations from the US National Lightning Detection Network(NLDN) [...] show a pronounced asymmetry in the strokemultiplicity with season for negative and positive ground flashes(Orville et al 1987).

Positive ground flashes have a strong tendency to be single-strokein all months, whereas negative flashes are more likely to containmultiple strokes.

Jose Martinez Polarity Asymmetry in Lightning

Page 12: Problems in lightning physics - the role of polarity asymmetry

The threshold field for positive streamers (at P = 1000mb) is5 × 105Vm−1 (Griffiths and Phelps 1976) whereas the threshold fornegative streamers is 10 × 105Vm−1, twice as large (Bazelyan andRaizer 2000).

The positive streamer begins first until the field at the initiationpoint is sufficiently large to launch a negative streamer in theopposite direction.

Jose Martinez Polarity Asymmetry in Lightning

Page 13: Problems in lightning physics - the role of polarity asymmetry

Breakdown categories in lightning

expanding regions of ionization in unionized air (thermal andnon-thermal leaders and streamers)

recoil leaders (K-changes and dart leaders)

Jose Martinez Polarity Asymmetry in Lightning

Page 14: Problems in lightning physics - the role of polarity asymmetry

Perhaps the most important physical parameter in theinterpretation (below) of the general asymmetrical behaviourof CG lightning is the magnitude of the current in the leaderchannel.

Current flow in the case of negative polarity is intermittentand erratic, in contrast to smooth behaviour for current inpositive leaders.

Numerous studies find that the VHF radiation from positiveleaders is most often below the sensitivity of the receivers(Ron Thomas, 2005).

Jose Martinez Polarity Asymmetry in Lightning

Page 15: Problems in lightning physics - the role of polarity asymmetry

Instability criterion

The quantitative instability criterion is illustrated in two keylightning measurables, channel length L and channel current I:

Stability diagram for a lightning channel: unstable behaviour with current cutoff to the upper left of thestability line; stable behaviour with CC to the lower right of the stability line

The unstable condition can be understood as a nonlinear responseto a decline in current -the channel resistance rises and the currentin the arc declines still further until the channel cuts off entirely.

Jose Martinez Polarity Asymmetry in Lightning

Page 16: Problems in lightning physics - the role of polarity asymmetry

Current cutoff

Jose Martinez Polarity Asymmetry in Lightning

Page 17: Problems in lightning physics - the role of polarity asymmetry

Current cutoff

Heckman (1992) predicts a stronger tendency for stablecontinuing current flow without cutoff (and subsequent)strokes when interstroke currents are large.

In the case of positive CG lightning, the interstroke current ismaintained by negative leader development into positivelycharged regions of the cloud.

Heckman combines both thermodynamic constant tau andelectronic constant RC to define cutoff frequency as stabilitycriterion.

Jose Martinez Polarity Asymmetry in Lightning

Page 18: Problems in lightning physics - the role of polarity asymmetry

What does this mean?

Multiple strokes are favoured by both small interstrokecurrents and long channels.

Sustained continuing currents are favoured by large interstrokecurrent and short channels.

This has to do with the cloud-intruding end of the lightningtree which also evokes growth-rates of leaders in cloudsdiscussed by Mazur and Lapierre

Jose Martinez Polarity Asymmetry in Lightning

Page 19: Problems in lightning physics - the role of polarity asymmetry

Results?

Stability diagram in comparison with observations on thunderclouds from the literature. Open squares representscenarios with discrete strokes and without continuing current. Filled squares represent continuing current

scenarios.

Jose Martinez Polarity Asymmetry in Lightning

Page 20: Problems in lightning physics - the role of polarity asymmetry

Revisiting the sprite

Jose Martinez Polarity Asymmetry in Lightning

Page 21: Problems in lightning physics - the role of polarity asymmetry

Long and stable CC

Credits:Johnny Del Pastro. Queensland,Australia

Jose Martinez Polarity Asymmetry in Lightning

Page 22: Problems in lightning physics - the role of polarity asymmetry

What about bolts from the blue?

Credits:Jac Hagler. Mt Saleve,Switzerland

Jose Martinez Polarity Asymmetry in Lightning

Page 23: Problems in lightning physics - the role of polarity asymmetry

Jose Martinez Polarity Asymmetry in Lightning