Rchr
J-GLOBAL ID:202401005596778094
Update date: Jun. 18, 2024
YAMADA Yoshinori
ヤマダ ヨシノリ | YAMADA Yoshinori
Affiliation and department:
Job title:
Professor
Research theme for competitive and other funds (4):
- 2022 - 2025 Numerical modeling and polarimetric-radar detection of various types of melting ice particles produced at temperatures around 0 degrees Celsius
- 2019 - 2022 Study on the generation mechanisms and nowcast of convective severe weather phenomena over diverse terrain by advanced methods
- 2014 - 2017 Study on features of snow clouds producing heavy snowfalls and gusts of wind by high-resolution observations and numerical models
- 2013 - 2016 Study on Improvement of Snowfall Process in Cloud Resolving Model by Comparison with Ground-based Snow Particle Observation
MISC (37):
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MURAKAMI Masataka, YAMADA Yoshinori, IWANAMI Koyuru. Precipitation Mechanisms in Stratiform Snow Clouds Associated with a Mid-Level Trough over the Sea of Japan. Journal of the Meteorological Society of Japan. Ser. II. 2024. 102. 3. 365-376
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YAMADA Yoshinori. An Efficient Practical Post-Processing Algorithm for the Quality Control of Dual-pulse Repetition Frequency Doppler Velocity Data. Journal of the Meteorological Society of Japan. Ser. II. 2021. 99. 3. 731-739
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Ohtake Hideaki, Uno Fumichika, Oozeki Takashi, Yamada Yoshinori. The Latest Update of JMA Numerical Weather Prediction Models and its Solar Power Forecasting Errors. IEEJ Transactions on Power and Energy. 2018. 138. 11. 881-892
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Hideaki Ohtake, Fumichika Uno, Takashi Oozeki, Yoshinori Yamada, Hideaki Takenaka, Takashi Nakajima. Outlier Events of Solar Forecasts for Regional Power Grid in Japan Using JMA Mesoscale Model. Energies. 2018. 11. 10. 2714
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Hideaki Ohtake, Joao Gari da Silva Fonseca, Takumi Takashima, Takashi Oozeki, Ken-ichi Shimose, Yoshinori Yamada. Regional and seasonal characteristics of global horizontal irradiance forecasts obtained from the Japan Meteorological Agency mesoscale model. Solar Energy. 2015. 116. 83-99
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