Network


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

Hotspot


Dive into the research topics where Kenichiro Kosaka is active.

Publication


Featured researches published by Kenichiro Kosaka.


Drying Technology | 2010

Novel Drying Process Based on Self-Heat Recuperation Technology

Chihiro Fushimi; Yasuki Kansha; Muhammad Aziz; Kazuhiro Mochidzuki; Shozo Kaneko; Atsushi Tsutsumi; Keigo Matsumoto; Katsuhiko Yokohama; Kenichiro Kosaka; Noboru Kawamoto; Koji Oura; Yoshiki Yamaguchi; Masaaki Kinoshita

Significant amounts of energy are used in the conventional methods for drying wet carbonaceous materials such as biomass, low-rank coals, sludge, and manure, because the latent heat for evaporating water is large. An innovative drying process, based on self-heat recuperation technology that recovers not only latent heat but also sensible heat, was developed to save drying energy. Water contained in a wet sample is heated to its boiling point, and the resulting steam is superheated. The superheated steam is compressed to provide a temperature difference for heat exchange. The condensation heat of the compressed steam is exchanged with the evaporation heat of the water from the wet sample. The sensible heat of the compressed steam is utilized to raise the temperature of both evaporated steam (superheating) and water contained in the wet sample (preheating). In addition, the sensible heat of the dried sample is recovered by gas to improve the overall energy efficiency. The amount of energy required for the proposed system was determined using a commercial process simulation tool, PRO/II (v. 8.1, Invensys plc, London, UK). The proposed drying process based on self-heat recuperation was found to drastically reduce the energy consumption to 13.7% of the energy consumption of the conventional drying process with heat recovery.


Archive | 1999

Base tube for fuel cell

Hiroshi Tsukuda; Akihiro Yamashita; Kenichiro Kosaka; Nagao Hisatome; Toru Houjyou


Archive | 1998

Integrated coal gasification fuel cell combined cycle power plant

Kenichiro Kosaka; Osao Kudome; Akihiro Yamashita; 長生 久留; 健一郎 小阪; 晃弘 山下


Archive | 2008

Solid oxide fuel cell and water electrolysis cell

Tatsuo Kahata; Yutaka Kawaguchi; Kenichiro Kosaka; Hiroshi Tsukuda; 達雄 加幡; 健一郎 小阪; 豊 川口


10th International Symposium on Solid Oxide Fuel Cells (SOFC-X) | 2007

Development of SOFC-Micro Gas Turbine Combined Cycle System

Masanori Nishiura; Shigenori Koga; Tatsuo Kabata; Nagao Hisatome; Kenichiro Kosaka; Yoshimasa Ando; Yoshinori Kobayashi


Archive | 2010

Biomass gasification system and biomass gasification method

Keigo Matsumoto; 啓吾 松本; Koutaro Fujimura; 皓太郎 藤村; Kenichiro Kosaka; 小阪 健一郎; Yoshiki Yamaguchi; 啓樹 山口; Noboru Kawamoto; 川元 昇; Masahiko Nagai; 永井 正彦


International Journal of Hydrogen Energy | 2014

A solid polymer water electrolysis system utilizing natural circulation

Yoshinori Kobayashi; Kenichiro Kosaka; Takashi Yamamoto; Yuya Tachikawa; Kohei Ito; Kazunari Sasaki


Archive | 2010

Drying unit and method for drying solid fuel containing water

Katsuhiko Yokohama; Kenichiro Kosaka; Keigo Matsumoto; Noboru Kawamoto; Yoshiki Yamaguchi; Masaaki Kinoshita; Koji Ohura; Atsushi Tsutsumi; Shozo Kaneko; Kazuhiro Mochizuki; Chihiro Fushimi; Yasuki Kansha


10th International Symposium on Solid Oxide Fuel Cells (SOFC-X) | 2007

Development of 25kW Class SOFC Module

Koji Ikeda; Nagao Hisatome; Katsumi Nagata; Daisuke Tsukamoto; Yutaka Kawaguchi; Kenichiro Kosaka; Norihisa Matake; Hiroshi Sasatsu; Yasuhiro Takahashi; Kinhei Konishi


Archive | 2000

Base tube for fuel cell and material for base tube

Hiroshi Tsukuda; Nagao Hisatome; Yoshiharu Watanabe; Akihiro Yamashita; Kenichiro Kosaka; Toru Houjyou

Collaboration


Dive into the Kenichiro Kosaka's collaboration.

Top Co-Authors

Avatar

Akihiro Yamashita

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar

Nagao Hisatome

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Toru Houjyou

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar

Katsuhiko Yokohama

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar

Keigo Matsumoto

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar

Noboru Kawamoto

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar

Yoshiki Yamaguchi

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar

Atsushi Tsutsumi

Mitsubishi Heavy Industries

View shared research outputs
Top Co-Authors

Avatar

Chihiro Fushimi

Mitsubishi Heavy Industries

View shared research outputs
Researchain Logo
Decentralizing Knowledge