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・ Hooker Glacier (New Zealand)
・ Hooker Glacier (Wyoming)
・ Hooker Island
・ Hooker Jim
・ Hooker Municipal Airport
・ Hooker Oak
・ Hooker reaction
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・ Hook Champ
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Hook echo
・ Hook effect
・ Hook End, Essex
・ Hook flash
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Hook echo : ウィキペディア英語版
Hook echo

A hook echo is a pendant or hook shaped weather radar signature as part of some supercell thunderstorms. It is found in the lower portions of a storm as air and precipitation flow into a mesocyclone resulting in a curved feature of reflectivity. The echo is produced by rain, hail, or even debris being wrapped around the supercell. It is one of the classic hallmarks of tornado-producing supercells. The National Weather Service may consider the presence of a hook echo as sufficient to justify issuing a tornado warning.
== History ==

The hook echo has been recognized as a sign of tornado development early in weather radar's history. In 1949, E. M Brooks had referred to circulations having radii of approximately 8–16 km with supercells thunderstorms and named them tornado cyclones. The first documented tracking of a hook echo associated with a tornado was on April 9, 1953 by the Illinois State Water Survey near Urbana-Champaign, during preparations for an early test of radar's ability to measure rainfall rates by Donald Staggs electrical engineer of Dr. Huff research team.〔Huff, F.A., H.W. Hiser, and S.G. Bigler, 1954: (Study of an Illinois tornado using radar, synoptic weather and field survey data ). Report of Investigation 22, Champaign, IL, pp. 73〕
Ted Fujita documented hook echoes associated with other supercells on the same day as Huff team made their observations. He inferred the concept of thunderstorm rotation from viewing the evolution of the hook echoes, which he studied in detail. In 1962, J. R. Fulks was the first to hypothesize on the formation of hook echoes. Wind velocity data obtained following the installation of weather radars having Doppler effect capabilities in central Oklahoma in the late 1960s confirmed an association between hook echoes and strong horizontal shear zones associated with storm rotation and tornadoes.〔

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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