Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Shuzo Oda is active.

Publication


Featured researches published by Shuzo Oda.


16th Asia Pacific Automotive Engineering Conference | 2011

A Liquid-Piston Steam Engine

Shinichi Yatsuzuka; Shuzo Oda; Yasunori Niiyama; Kentaro Fukuda; Kazutoshi Nishizawa; Naoki Shikazono

A liquid-piston steam engine is suitable for waste heat recovery from automobile exhaust gas since it has high efficiency at low temperature region and high reliability at high temperature. In this work, heat loss from heating section inlet is investigated and new structure is proposed to reduce this heat loss. In addition, the effect of coolant temperature on thermal efficiency is investigated and an opposite trend of conventional thermal engines is found. Thermal efficiency of 8.8% at heating temperature of 270 ̊C, cooling temperature of 90 ̊C and operation frequency of 3Hz is achieved with the improved liquid-piston steam engine.


The Proceedings of Conference of Tokai Branch | 2016

214 Experimental study on the Separated/Reattaching Flow Structure and Noise between the Blades

Yuusuke Goto; Shuuta Mawatari; Koji Iwano; Yasuhiko Sakai; Yasumasa Ito; Masaharu Sakai; Shuzo Oda; Yoshinori Ochiai; Koji Nagata

2.2 各種計測装置 翼負圧面の圧力を半導体式圧力センサ(エンデブコ社製 8510B-1)を用いて計測した.半導体式圧力センサは DC ア ンプ(エンデブコ社製 Model136)に接続して使用した.計 測は翼の負圧面に図 2 に示す形状の静圧孔を設け,翼内部に 圧力センサを設置する形で行った.圧力センサは,計 5 点設 置し同時計測を行った.その他の条件については参考文献 を参照されたい. 流速の測定は,スプリットフィルムプローブ(DANTEC 製 Probetype 55R57) を 熱 線 流 速 計 (DANTEC 社 製 STREAMLINE)に接続して使用した.なお,計測位置や流速 の算出方法については参考文献と同様の条件で行った. 近接場音は,マイクロフォン(Bruel&Kjaer 社製 Type4958) を用いて 36 点同時計測を行った.マイクロフォンは PULSE フロントエンドドライバ(Bruel&Kjae 社製 A/D ボード Type3040D 及び Type7540)に接続して使用した.マイクロフ ォンの較正にはBruel&Kjaer社製Type4231音響較正機を用い た. 翼負圧面の圧力変動と近接場音の計測,翼負圧面の圧力変 動と流速の計測は,それぞれ同時に行った.データのサンプ リング周波数は全て 20kHz とした.また,データサンプリン グ点数は 524,288 点とした. Figure 1. Schematic view of the experimental apparatus


Archive | 2005

Liquid pump and Rankine cycle apparatus

Shinichi Yatsuzuka; Shuzo Oda; Katsuya Komaki; Yasumasa Hagiwara


Archive | 2004

Thermoacoustic power generator

Shuzo Oda; Akito Torii; Shinichi Yatsuka; 真一 八束; 修三 小田; 明人 鳥居


Archive | 2014

STRUCTURE OF POWER TRANSMISSION APPARATUS

Hitoshi Noguchi; Hiroshi Okada; Shuzo Oda; Tomoaki Nakano; Yoshihiro Yamashita; Yousuke Yamamoto; Kazuhisa Hara


Archive | 2006

Fluid pump and Rankine cycle system

Shinichi Yatsuzuka; Shuzo Oda; Katsuya Komaki; Yasumasa Hagiwara


Archive | 2011

Continuously variable transmission apparatus and air conditioning system having the same

Shuzo Oda; Takashi Kaneko; Kazuki Iwaya


The Proceedings of Conference of Tokai Branch | 2018

Study on the Separated/Reattaching Flow Structure and Generated Sound between the Blades of Multi-blade Fan

Yuya Fukao; Koji Iwano; Yasuhiko Sakai; Yasumasa Ito; Masaharu Sakai; Shuzo Oda; Syo Kosaka; Masayuki Yoshioka


Transactions of the JSME (in Japanese) | 2017

Experimental study on the flow structure and sound generation between the blades of multi-blade fan

Koji Iwano; Yusuke Goto; Yuya Fukao; Yasuhiko Sakai; Yasumasa Ito; Koji Nagata; Masaharu Sakai; Toshinori Ochiai; Shuzo Oda


The Proceedings of Conference of Tokai Branch | 2016

215 Numerical simulation of separated-reattaching flow between fan blades and the factor of Aeroacoustic noise generation

Shuta Mawatari; Yusuke Goto; Koji Iwano; Yasuhiko Sakai; Yasumasa Ito; Masaharu Sakai; Shuzo Oda; Yoshinori Ochiai; Koji Nagata

Collaboration


Dive into the Shuzo Oda's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Akihiro Sasoh

Mitsubishi Heavy Industries

View shared research outputs
Researchain Logo
Decentralizing Knowledge