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対流

9 件の記事

Simulation of thermal convection in the Earth's mantle. Hot areas are shown in red, cold areas are shown in blue. A hot, less-dense material at the bottom moves upwards, and likewise, cold material from the top moves downwards.

対流のメカニズムと自然界への影響熱輸送の科学

対流熱伝達流体力学自然対流
The 2004 Willow Fire burning near Payson, Arizona, producing a flammagenitus cloud.

フラマゲニタス(火災雲)のメカニズムと影響

フラマゲニタス火災雲パイロキュムルス積乱雲
Example of a thermal column between the ground and a cumulus

サーマル(熱上昇気流)の仕組みと気象への影響

サーマル熱上昇気流対流積雲
Satellite animation of the initial eruption column and shockwave from Hunga Tonga–Hunga Haʻapai on 15 January 2022

噴火柱のメカニズムと地球環境への影響

噴火柱火山噴火テフラ成層圏
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物質移動のメカニズムと産業・宇宙への応用

物質移動化学工学拡散対流
Simulation of thermal convection in the Earth's mantle. Colors span from red and green to blue with decreasing temperatures. A hot, less-dense lower boundary layer sends plumes of hot material upwards, and cold material from the top moves downwards.

熱伝達のメカニズムと工学的応用エネルギー移動の科学

熱伝達熱伝導対流熱放射
Illustration of the dynamo mechanism that generates the Earth's magnetic field: convection currents of fluid metal in the Earth's outer core, driven by heat flow from the inner core, organized into rolls by the Coriolis force, generate circulating electric currents, which supports the magnetic field.[1]

ダイナモ理論地球や恒星の磁場を生成するメカニズム

ダイナモ理論地球磁場外核磁気流体力学
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太陽光球のダイナミズム粒状斑から星斑まで

太陽光球粒状斑超粒状斑
The amount of water vapor in Earth's atmosphere has risen over recent decades,[1] making heavy rainfall events more severe.[2]

水蒸気の科学地球の気候変動と宇宙における役割

水蒸気温室効果ガス湿度気候変動