塵旋風の発生・発達機構と強風
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Published in | 日本風工学会誌 Vol. 42; no. 1; pp. 39 - 46 |
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Main Author | |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本風工学会
01.01.2017
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Online Access | Get full text |
ISSN | 0912-1935 1883-8413 |
DOI | 10.5359/jawe.42.39 |
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Author | 伊藤, 純至 |
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References | 17)Schmidt, H., and Schumann, U., “Coherent structure of the convective boundary layer derived from large-eddy simulations”, J. Fluid Mech., Vol. 200, pp. 511-562, (1989 18)Nishizawa, S., Odaka, M., Takahashi, Y. O., Sugiyama, K. I., Nakajima, K., Ishiwatari, M., et al., “Martian dust devil statistics from high‐resolution large‐eddy simulations”, Geophys. Res. Lett., Vol. 43, pp. 4180-4188, (2016 4)中西幹郎, 「大気境界層内の気象現象の数値解析」, 日本風工学会誌, Vol. 34, pp. 403-409, (2009 1)気象庁,竜巻等突風データベース,http://www.data.jma.go.jp/obd/stats/data/bosai/tornado 14)Ohno, H., and Takemi, T., “Mechanisms for intensification and maintenance of numerically simulated dust devils”, Atmos. Sci. Lett., Vol. 11, pp. 27-32, (2010 5)Ito, J., Niino, H., and Nakanishi, M., “Formation mechanism of dust devil–like vortices in idealized convective mixed layers”. J. Atmos. Sci., Vol. 70, pp. 1173-1186, (2013 12)Ito, J., Niino, H., and Nakanishi, M., “Effects of ambient rotation on dust devils”, SOLA, Vol. 7, pp. 165-168, (2011 11)Mashiko, W., Niino, H., and Kato, T., “Numerical simulation of tornadogenesis in an outer-rainband minisupercell of Typhoon Shanshan on 17 September 2006”, Mon. Wea. Rev., Vol. 137, pp. 4238-4260, (2009 10)Raasch, S., and Franke, T., “Structure and formation of dust devil–like vortices in the atmospheric boundary layer: A high‐resolution numerical study”, J. Geophys. Res., Vol. 116, D16120, (2011 15)Sinclair, P. C., “General characteristics of dust devils”. J. Appl. Meteorol., Vol. 8, pp. 32-45, (1969 6)田中 亮, 新野 宏, 中西幹郎, 伊藤純至, 「塵旋風のラージ・エディ・シミュレーション」, 気象研究ノート , Vol. 219, pp. 117-139, (2008 8)Kanak, K. M., Lilly, D. K., and Snow, J. T., “The formation of vertical vortices in the convective boundary layer”, Q. J. R. Meteorol. Soc., Vol. 126, pp. 2789-2810, (2000 9)Kanak, K. M., “Numerical simulation of dust devil‐scale vortices”, Q. J. R. Meteorol. Soc., Vol. 131, pp. 1271-1292, (2005 19)Reiss, D., Lorenz, R. D., Balme, M., Neakrase, L. D., Rossi, A. P., Spiga, A., and Zarnecki, J., “Editorial: Topical Volume on Dust Devils”. Space Science Reviews, Vol. 203, pp. 1-4, (2016 3)稲垣厚至, 神田学, 久米村秀明, 「サーモカメラを用いた壁面近傍風速の計測手法の開発」,ながれ, Vol. 31, pp. 491-493, (2012 16)Deardorff, J. W., “Convective velocity and temperature scales for the unstable planetary boundary layer and for Rayleigh convection”, J. Atmos. Sci., Vol. 27, pp. 1211-1213, (1970 7)Ito, J., Tanaka, R., Niino, H., and Nakanishi, M., “Large eddy simulation of dust devils in a diurnally-evolving convective mixed layer”, J. Meteor. Soc. Japan, Vol. 88, pp. 64-77., (2010 2)Fujiwara, C., Yamashita, K., Nakanishi, M., and Fujiyoshi, Y., “Dust devil-like vortices in an urban area detected by a 3D scanning Doppler lidar”, J. Appl. Meteorol. Climat., Vol. 50, pp. 534-547, (2011 13)Fujiwara, C., Yamashita, K., and Fujiyoshi, Y., “Observed effect of mesoscale vertical vorticity on rotation sense of dust devil-like vortices in an urban area”, SOLA, Vol. 8, pp. 25-28, (2012 |
References_xml | – reference: 14)Ohno, H., and Takemi, T., “Mechanisms for intensification and maintenance of numerically simulated dust devils”, Atmos. Sci. Lett., Vol. 11, pp. 27-32, (2010) – reference: 7)Ito, J., Tanaka, R., Niino, H., and Nakanishi, M., “Large eddy simulation of dust devils in a diurnally-evolving convective mixed layer”, J. Meteor. Soc. Japan, Vol. 88, pp. 64-77., (2010) – reference: 17)Schmidt, H., and Schumann, U., “Coherent structure of the convective boundary layer derived from large-eddy simulations”, J. Fluid Mech., Vol. 200, pp. 511-562, (1989) – reference: 5)Ito, J., Niino, H., and Nakanishi, M., “Formation mechanism of dust devil–like vortices in idealized convective mixed layers”. J. Atmos. Sci., Vol. 70, pp. 1173-1186, (2013) – reference: 13)Fujiwara, C., Yamashita, K., and Fujiyoshi, Y., “Observed effect of mesoscale vertical vorticity on rotation sense of dust devil-like vortices in an urban area”, SOLA, Vol. 8, pp. 25-28, (2012) – reference: 18)Nishizawa, S., Odaka, M., Takahashi, Y. O., Sugiyama, K. I., Nakajima, K., Ishiwatari, M., et al., “Martian dust devil statistics from high‐resolution large‐eddy simulations”, Geophys. Res. Lett., Vol. 43, pp. 4180-4188, (2016) – reference: 15)Sinclair, P. C., “General characteristics of dust devils”. J. Appl. Meteorol., Vol. 8, pp. 32-45, (1969) – reference: 10)Raasch, S., and Franke, T., “Structure and formation of dust devil–like vortices in the atmospheric boundary layer: A high‐resolution numerical study”, J. Geophys. Res., Vol. 116, D16120, (2011) – reference: 1)気象庁,竜巻等突風データベース,http://www.data.jma.go.jp/obd/stats/data/bosai/tornado/ – reference: 3)稲垣厚至, 神田学, 久米村秀明, 「サーモカメラを用いた壁面近傍風速の計測手法の開発」,ながれ, Vol. 31, pp. 491-493, (2012) – reference: 12)Ito, J., Niino, H., and Nakanishi, M., “Effects of ambient rotation on dust devils”, SOLA, Vol. 7, pp. 165-168, (2011) – reference: 6)田中 亮, 新野 宏, 中西幹郎, 伊藤純至, 「塵旋風のラージ・エディ・シミュレーション」, 気象研究ノート , Vol. 219, pp. 117-139, (2008) – reference: 2)Fujiwara, C., Yamashita, K., Nakanishi, M., and Fujiyoshi, Y., “Dust devil-like vortices in an urban area detected by a 3D scanning Doppler lidar”, J. Appl. Meteorol. Climat., Vol. 50, pp. 534-547, (2011) – reference: 9)Kanak, K. M., “Numerical simulation of dust devil‐scale vortices”, Q. J. R. Meteorol. Soc., Vol. 131, pp. 1271-1292, (2005) – reference: 16)Deardorff, J. W., “Convective velocity and temperature scales for the unstable planetary boundary layer and for Rayleigh convection”, J. Atmos. Sci., Vol. 27, pp. 1211-1213, (1970) – reference: 19)Reiss, D., Lorenz, R. D., Balme, M., Neakrase, L. D., Rossi, A. P., Spiga, A., and Zarnecki, J., “Editorial: Topical Volume on Dust Devils”. Space Science Reviews, Vol. 203, pp. 1-4, (2016) – reference: 4)中西幹郎, 「大気境界層内の気象現象の数値解析」, 日本風工学会誌, Vol. 34, pp. 403-409, (2009) – reference: 8)Kanak, K. M., Lilly, D. K., and Snow, J. T., “The formation of vertical vortices in the convective boundary layer”, Q. J. R. Meteorol. Soc., Vol. 126, pp. 2789-2810, (2000) – reference: 11)Mashiko, W., Niino, H., and Kato, T., “Numerical simulation of tornadogenesis in an outer-rainband minisupercell of Typhoon Shanshan on 17 September 2006”, Mon. Wea. Rev., Vol. 137, pp. 4238-4260, (2009) |
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Title | 塵旋風の発生・発達機構と強風 |
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