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Publicaitions and presentations

Peer-reviewed papers

  1. Fujita, M., T. Fukuda, I. Ueki, Q. Moteki, T. Ushiyama, K. Yoneyama, 2020: Experimental observations of precipitable water vapor over the open ocean collected by autonomous surface vehicles for real-time monitoring applications. doi:10.2151/sola.16A-004

  2. Fujita, M., R. Mizuta, M. Ishii, H. Endo, T. Sato, Y. Okada, S. Kawazoe, S. Sugimoto, K. Ishihara, S. Watanabe, 2019: Precipitation changes in a climate with 2 K surface warming from large ensemble simulations using 60 km global and 20 km regional atmospheric models. doi:10.1029/2018GL079885

  3. Fujita, M., T. J. Yamada, T. Sato, S. Kawazoe, M. Nakano, K. Ito, 2019: Analyses of extreme precipitation associated with the Kinugawa River flood in September 2015 using a large ensemble downscaling experiment. doi:10.2151/jmsj.2019-022

  4. Fujita, M., T. Sato, 2017: Observed behaviours of precipitable water vapour precipitation intensity in response to upper air profiles estimated from surface air temperature. doi:10.1038/s41598-017-04443-9

  5. Fujita, M., A. Wada, T. Iwabuchi, C. Rocken, 2014: Tropospheric monitoring over the ocean using shipborne GNSS receiver. Proceedings of the ION GNSS 2014, url, 👈Best presentation award 🏅

  6. Fujita, M., H. G. Takahashi, M. Hara, 2013: Diurnal cycle of precipitation over the eastern Indian Ocean off Sumatra Island during different phases of Indian Ocean Dipole. doi:10.1002/asl2.432

  7. Fujita, M, A. Wada, T. Iwabuchi, C. Rocken, 2012: GPS Precipitable Water Vapor Dataset for Climate Science. Proceedings of the ION GNSS 2012, url

  8. Fujita, M., K. Yoneyama, S. Mori, T. Nasuno, M. Satoh, 2011: Diurnal convection peaks over the eastern Indian Ocean off Sumatra during different MJO phases. doi;10.2151/jmsj.2011-A22

  9. Fujita, M., F. Kimura, M. Yoshizaki, 2010: Morning precipitation peak over the Strait of Malacca under a calm condition. doi:10.1175/2009MWR3068.1

  10. Fujita, M., F. Kimura, K. Yoneyama, M. Yoshizaki, 2008: Verification of precipitable water vapor estimated from shipborne GPS measurements. doi:10.1029/2008GL033764

  11. Fujita, M., T. Sasaki, F. Kimura, 2006: A Dramatic Daytime Decrease in Water Vapor over Coastal Thailand. doi:10.2151/sola.2006-013

Co-authored peer-reviewed papers

  1. Yoneyama, K., M. Fujita, A. Seiki, R. Shirooka, S. Yokoi, E. O. Cayanan, C. O. Iglesia, O. C. Cabrera, 2021: Evaluation of LMS6 and RS41 Radiosonde Humidity Data Obtained during YMC-Boreal Summer Monsoon Study in 2018 and 2020. doi:10.2151/jmsj.2021-054

  2. Kawazoe, S., M. Fujita, S. Sugimoto, Y. Okada, S. Watanabe, 2020: Projected Changes of Extremely Cool Summer Days over Northeastern Japan Simulated by 20 km-mesh Large Ensemble Experiment. doi:10.2151/jmsj.2020-067

  3. Kawase, H., T. Yamazaki, S. Sugimoto, T. Sasai, R. Ito, T. Hamada, M. Kuribayashi, M. Fujita, A. Murata, M. Nosaka, 2020: Changes in extremely heavy and light snow-cover winters due to global warming over high mountainous areas in central Japan. doi:10.1186/s40645-020-0322-x

  4. Nakagawa, Y, Y. Onoue, S. Kawahara, F. Araki, K. Koyamada, D. Matsuoka, Y. Ishikawa, M. Fujita, S. Sugimoto, Y. Okada, 2020: Development of a system for efficient content-based retrieval to analyze large volumes of climate data. doi:10.1186/s40645-019-0315-9

  5. Sasai, T, H. Kawase, Y. Kanno, J. Yamaguchi, S. Sugimoto, T. Yamazaki, H. Sasaki, M. Fujita, T. Iwasaki, 2019: Future Projection of Extreme Heavy Snowfall Events With a 5‐km Large Ensemble Regional Climate Simulation. doi:10.1029/2019JD030781

  6. Mori, N., T. Shimura, K. Yoshida, R. Mizuta, Y. Okada, M. Fujita, T. Khujanazarov, E. Nakakita, 2019: Future changes in extreme storm surges based on mega-ensemble projection using 60-km resolution atmospheric global circulation model. doi:10.1080/21664250.2019.1586290

  7. Watanabe, S. M. Fujita, S. Kawazoe, S. Sugimoto, Y. Okada, R. Mizuta, M. Ishii, 2019: Frequency change of clear-air turbulence over the North Pacific under 2 K Global Warming–Ensemble projections using a 60-km atmospheric general circulation model. doi:10.2151/jmsj.2019-038

  8. Ariyoshi et al., 2018: A Total Station Plan Combined with “D/V Chikyu” and DONET: Simultaneous Observation from Seafloor to Atmosphere. doi:10.1109/OCEANSKOBE.2018.8559382

  9. Wakazuki, Y., M. Hara, M. Fujita, X. Ma, T. Inoue, F. Kimura, T. Koike, 2016: Probabilistic Climate Change Projection in Kanto and Japan Alps Regions Using Incremental Dynamical Downscaling. doi:10.2208/jscejhe.72.I_55

  10. Rasmy, M., T. Koike, P. Lawford, H. Masayuki, M. Fujita, F. Kimura, 2015: Assessment of Future Water Resources in the Tone River Basin Using a Combined Dynamical-Statistical Downscaling Approach. doi:10.2208/jscejhe.71.I_73

  11. Wakazuki, Y., M. Hara, M. Fujita, C. Suzuki, X. Ma, F. Kimura, 2015: Effect of climate change on the snow disappearance date in mountainous areas of central Japan. doi:10.3178/hrl.9.20

  12. Rasmy, M., M. Shresth, T. Koike, M. Hara, M. Fujita, F. Kimura, 2014: A combined dynamical/statistical downscaling approach for assessing future of water resources in the Tone river basin, Japan. doi:10.2208/jscejhe.70.I_187

  13. Ma, X., H. Kawase, S. Adachi, M. Fujita, H. G. Takahashi, M. Hara, N. Ishizaki, T. Yoshikane, H. Hatsushika, Y. Wakazuki, F. Kimura, 2013: Simulating river discharge in a snowy region of Japan using output from a regional climate model. 10.5194/adgeo-35-55-2013

  14. Rasmy, M., T, Koike, P.A.Jaranilla-Sanchez, C. T. Nyunt, M. Hara, M. Fujita, H. Kawase, 2013: Identifying Gaps and Opportunities Between Statistical and Dynamical Downscaling Approaches Over Shikoku Island, Japan. doi:10.2208/jscejhe.69.I_133

  15. Kawase, H., T. Yoshikane, M. Hara, M. Fujita, N. N. Ishizaki, F. Kimura, H. Hatsushika, 2012: Downscaling of Snow Cover Changes in the Late 20th Century Using a Past Climate Simulation Method over Central Japan. doi:10.2151/sola.2012-016

  16. Yasunaga, K., K. Yoneyama, Q. Moteki, M. Fujita, Y. N. Takayabu, J. Suzuki, T. Ushiyama, B. Mapes, 2010: Characteristics of 3-4-day and 6-8-day period disturbances observed over the tropical Indian Ocean. doi:10.1175/2010MWR3469.1

  17. Yoneyama, K., M. Fujita, N. Sato, M. Fujiwara, Y. Inai, F. Hasebe, 2008: Correction for Radiation Dry Bias Found in RS92 Radiosonde Data during the MISMO Field Experiment. doi:10.2151/sola.2008-004

  18. Yoneyama et al., 2008: MISMO field experiment in the equatorial Indian Ocean. doi:10.1175/2008BAMS2519.1

  19. Yasunaga, K., M. Fujita, T. Ushiyama, K. Yoneyama, Y. N. Takayabu, M. Yoshizaki, 2008: Diurnal Variations in Precipitable Water Observed by Shipborne GPS over the Tropical Indian Ocean. doi:10.2151/sola.2008-025

  20. Moteki, Q., R. Shirooka, H. Kubota, T. Ushiyama, K. K. Reddy, K. Yoneyama, M. Katsumata, N. Sato., K. Yasunaga, H. Yamada, B. Geng, M. Fujita, M. Yoshizaki, H. Uyeda, T. Chuda, 2008: Mechanism of the northward propagation of mesoscale convective systems observed on 15 June 2005 during PALAU2005. doi:10.1029/2008JD009793

  21. Rocken, C., T. Iwabuchi, Z. Lukes, L. Mervart, M. Fujita, M. Kanzaki, 2008: Precise Positioning of Ships and Buoys in the Open Ocean - Results from a 3-Month Indian Ocean Cruise, and a tsunami Buoy off Japan's Coast. Proceedings of the ION GNSS 2008. url

  22. Moteki, Q., R. Shirooka, K. Yoneyama, B. Geng, M. Katsumata, T. Ushiyama, H. Yamada, K. Yasunaga, N. Sato, H. Kubota, K. K. Reddy, H. Tokinaga, A. Seiki, M. Fujita, Y. N. Takayabu, M. Yoshizaki, H. Uyeda, T. Chuda, 2007: The Impact of the Assimilation of Dropsonde Observations during PALAU2005 in ALERA. doi:10.2151/sola.2007-025

Presentations

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