本文へ移動

サイトナビゲーションへ移動

検索ボックスへ移動

サイドバーへ移動

ここは、本文エリアの先頭です。

Earth observation satellite data processing for GPM/DPR

[Added on] [Last modified on]

JAXA Supercomputer System Annual Report April 2019-March 2020 Report Number: R19ER0200 Subject Category: Space Technology PDF Responsible Representative: Takeshi Hirabayashi, Director, Satellite Applications and Operations Center (SAOC) Contact Information: GPM Mission Operation Officer(GPM-MOS@ml.jaxa.jp) Members: Yuichiro Kitayama, Toshiyuki Konishi, Takahiro Minami, Masaya Torii, Tadahiro Yamamoto, Koki Ishimaru, Sachiko Kawase, Hironari Ishihara, Hisashi Tanaka, Yoriko Arai, Tomohiko Higashiuwatoko, Kazuhiro Sakamoto, Takeshi Masaki, Kyoichi Sakamoto, Osamu Motohashi Abstract In recent years, worldwide interest has been increasing about the necessity of grasping the global・・・<<read more>>

System-level technical study for the future lunar polar exploration mission

[Added on] [Last modified on]

JAXA Supercomputer System Annual Report April 2019-March 2020 Report Number: R19EEE20300 Subject Category: Space Exploration PDF Responsible Representative: SATO, Naoki; JAXA Space Exploration Center Space Exploration System Technology Unit Contact Information: HOSHINO, Takeshi(hoshino.takeshi@jaxa.jp) Members: INOUE, Hiroka; HOSHINO, Takeshi; YAMAMOTO, Mitsuo Abstract Evaluation of optical navigation algorithms for the lander of future lunar polar mission Reference URL Please refer to 'JAXA INTERNATIONAL SPACE EXPLORATION'. Reasons and benefits of using JAXA Supercomputer System It can be used by contructors and has rich・・・<<read more>>

High-Resolution, Efficient CFD Methods by Second Slope Limiter for Transonic Speeds

[Added on] [Last modified on]

JAXA Supercomputer System Annual Report April 2019-March 2020 Report Number: R19EDA201N10 Subject Category: Aeronautical Technology PDF Responsible Representative: Keiichi Kitamura, Yokohama National University, Faculty of Engineering, Division of Systems Research Contact Information: Keiichi Kitamura(kitamura@ynu.ac.jp) Members: Atsushi Hashimoto, Keiichi Kitamura, Suguru Ogawa, Yuuya Takagi, Hiroyuki Takimoto, Hiroto Yaginuma, Masashi Kanamori, Naoya Hase, Hayato Kawashima, Yoshikatsu Furusawa, Takuma Yamaguchi, Fumiya Tsutsui, Yuya Yasumura, Tomohiro Mamashita, Hironari Toriumi Abstract A high-resolution, Delayed DES has been conducted around whole the aircraft under the low-speed・・・<<read more>>

An attempt to develop a method for modeling holistic phenomena without a prerequisite knowledge

[Added on] [Last modified on]

JAXA Supercomputer System Annual Report April 2019-March 2020 Report Number: R19EDA201N09 Subject Category: Aeronautical Technology PDF Responsible Representative: Takashi Aoyama, Aeronautical Technology Directorate, Numerical Simulation Research Unit Contact Information: Masashi Kanamori, Aeronautical Technology Directorate, Numerical Simulation Research Unit(kanamori.masashi@jaxa.jp) Members: Masashi Kanamori, Shogo Goto Abstract It is important to gain a fast and accurate feedback from computational results in a design process. A traditional way of Computational Fluid Dynamics (CFD) gives physically acceptable results at the costs of tremendous amount of・・・<<read more>>

Detection of origination for 3D unsteady aerodynamic phenomena

[Added on] [Last modified on]

JAXA Supercomputer System Annual Report April 2019-March 2020 Report Number: R19EDA201N07 Subject Category: Aeronautical Technology PDF Responsible Representative: Masashi Kanamori, Aeronautical Technology Directorate, Numerical Simulation Research Unit Contact Information: Kanako Yasue(yasue.kanako@jaxa.jp) Members: Shigeru Kuchiishi, Kohji Suzuki, Kanako Yasue, Mami Hayakawa Abstract Unsteady CFD analysis will be performed in order to detect the starting point of buffet phnomena utilizing data mining techniques. Reference URL N/A Reasons and benefits of using JAXA Supercomputer System A large-scale parallel computer such as JSS2 is・・・<<read more>>