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Featured researches published by Koji Fumoto.


Perfusion | 2018

Effect of inflow cannula side-hole number on drainage flow characteristics: flow dynamic analysis using numerical simulation

Takeshi Goto; Tsubasa Tanabe; Takao Inamura; Minori Shirota; Koji Fumoto; Yoshiaki Saito; Wakako Fukuda; Ikuo Fukuda; Kazuyuki Daitoku; Masahito Minakawa

Background: Venous drainage in cardiopulmonary bypass is a very important factor for safe cardiac surgery. However, the ideal shape of venous drainage cannula has not been determined. In the present study, we evaluated the effect of side-hole number under fixed total area and venous drainage flow to elucidate the effect of increasing the side-hole numbers. Method: Computed simulation of venous drainage was performed. Cannulas were divided into six models: an end-hole model (EH) and models containing four (4SH), six (6SH), eight (8SH), 10 (10SH) or 12 side-holes (12SH). Total orifice area of the side-holes was fixed to 120 mm2 on each side-hole cannula. The end-hole orifice area was 36.3 mm2. The total area of the side-holes was kept constant when the number of side-holes was increased. Result: The mean venous drainage flow rate of the EH, 4SH, 6SH, 8SH, 10SH and 12SH was 2.57, 2.52, 2.51, 2.50, 2.49, 2.41 L/min, respectively. The mean flow rate decreased in accordance with the increased number of side-holes. Conclusion: We speculate that flow separation at the most proximal site of the side-hole induces stagnation of flow and induces energy loss. This flow separation may hamper the main stream from the end-hole inlet, which is most effective with low shear stress. The EH cannula was associated with the best flow rate and flow profile. However, by increasing side-hole numbers, flow separation occurs on each side-hole, resulting in more energy loss than the EH cannula and flow rate reduction.


Transactions of the JSME (in Japanese) | 2016

Effect of working fluid in heat transport characteristics of pulsating heat pipe

Koji Fumoto; Takuya Ishida; Tsuyoshi Kawanami; Takao Inamura


The Proceedings of Conference of Kanto Branch | 2018

The two-dimensional measurement inside the Pulsating Heat Pipe

Keiko Ishii; Takeshi Okawara; Koji Fumoto


ACS Applied Nano Materials | 2018

Sn Nanoparticles Confined in Porous Silica Spheres for Enhanced Thermal Cyclic Stability

Shilei Zhu; Mai Thanh Nguyen; Koji Fumoto; Kiyoshi Kanie; Atsushi Muramatsu; Tetsu Yonezawa


The Proceedings of the Thermal Engineering Conference | 2015

G131 Effect of Convection Flow on Melting Behavior of a Water-insoluble Material Immersed in Water

Ryota Hirai; Tsuyoshi Kawanami; Go Sota; Koji Fumoto; Peng Zhang; Katsuaki Shirai; Shigeki Hirasawa


The Proceedings of the JSME Conference on Frontiers in Bioengineering | 2015

A107 Basic study on morphological change of muscle tissue by thermal stimulation

Mariko Tanabu; Koji Fumoto; Takao Inamura


The Proceedings of the JSME Conference on Frontiers in Bioengineering | 2015

B215 Numerical Simulation on Effect of Side Hole Pattern of Venous Cannula

Tsubasa Tanabe; Takao Inamura; Koji Fumoto; Takeshi Goto; Ikuo Fukuda


The Proceedings of the Thermal Engineering Conference | 2014

F143 Melting Behavior and Melting Heat Transfer Characteristics of a Water-Insoluble Material in Heated Water

Ryota Hirai; Tsuyoshi Kawanami; Go Sota; Koji Fumoto; Katsuaki Shirai; Shigeki Hirasawa


The Proceedings of the Thermal Engineering Conference | 2014

B142 Study on Heat Transfer Performance of Pulsating Heat Pipes using Butanol Aqueous Solution

Koki Yamagami; Koji Fumoto; Tsuyoshi Kawanami; Takao Inamura


The Proceedings of the Thermal Engineering Conference | 2013

D142 Study on supercooling control of nano-emulsion

Takuya Echego; Koji Fumoto; Masahiro Kawaji; Tsuyoshi Kawanami; Takao Inamura; Minori Shirota

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Katsuaki Shirai

Shibaura Institute of Technology

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