1991
DOI: 10.1029/91jd01246
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A model evaluation of noninductive graupel‐ice charging in the early electrification of a mountain thunderstorm

Abstract: The role of noninductive graupel-ice charge separation in the early electrification of the July 31, 1984, New Mexico mountain thunderstorm is assessed with a three-dimensional kinematic cloud model along with multiple Doppler radar and in situ measurements. Observations of the early electrification rate and the electric field distribution are consistent with modeled values that result when the noninductive mechanism works under the influence of convective motions and precipitation growth. An increase in ice pa… Show more

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Cited by 134 publications
(115 citation statements)
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References 40 publications
(43 reference statements)
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“…The inductive charging that results from graupel-droplets collisions in a preexisting electric field is also taken into account following Ziegler et al (1991). …”
Section: Charge Separation Mechanismsmentioning
confidence: 99%
“…The inductive charging that results from graupel-droplets collisions in a preexisting electric field is also taken into account following Ziegler et al (1991). …”
Section: Charge Separation Mechanismsmentioning
confidence: 99%
“…Among them, 3-D cloud resolving models (CRM) including parameterizations of both electrification mechanisms and lightning discharges are of highest interest. For instance, Mansell et al (2002) included a very sophisticated lightning flash parameterization in the electrification model of Ziegler et al (1991). Poeppel (2005) also improved a lightning parameterization in the pioneering model of Helsdon et al (1987Helsdon et al ( , 2002.…”
Section: Introductionmentioning
confidence: 99%
“…Several explanations for the differences in the electrical behaviour of continental and maritime storms have been suggested (Rogers and Yau, 1989;Williams, 1989;Ziegler et al, 1991;Jayaratne, 1993;Zipser, 1994;Zipser and Lutz, 1994). The differences in the thermodynamics * Correspondence to: S. S. Kandalgaonkar, Indian Institute of Tropical Meteorology, Pune-411008, India.…”
Section: Introductionmentioning
confidence: 99%