Network


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

Hotspot


Dive into the research topics where Naoki Hayashi is active.

Publication


Featured researches published by Naoki Hayashi.


Journal of Heat Transfer-transactions of The Asme | 2016

3D Printing of Instantaneous Turbulent Flame Shapes, Experimentally Captured by 3D-Computer Tomography and Multi-Directional Schlieren Photography

Yojiro Ishino; Naoki Hayashi; Yuta Ishiko; Ili Fatimah Bt Abd Razak; Yu Saiki; Kimihiro Nagase; Kazuma Kakimoto

Non-scanning 3D-CT(Computer Tomography) technique employing a multi-directional quantitative schlieren photographic system(top-left picture) with flash light source, has been performed to obtain instantaneous density distributions of high-speed turbulent flames(for reference, the target flame of 8 m/s exit velocity is indicated in the right-top picture). For simultaneous schlieren photography, the custom-made 20-directional schlieren camera was constructed and used. The target turbulent flame is high-speed flames, anchored on the burner of a nozzle exit of 4.2 mm diameter. The image set of 20 directional schlieren images are processed by MLEM CT-algorithm to obtain the 3D reconstruction of instantaneous density distribution. The solid models(bottom picture) of threshold density level of 0.7 kg/m3 are 3D-printed as 4 times large size for detail observations. The average exit velocity of the propane-air mixture of equivalence ratio of 1.1 is set to be 10, 8, 6 and 4 m/s (models from left to right in the bottom picture). The solid models show the complicated shape of the high speed turbulent flames. The flame structure of higher speed flame has fine scale corrugations. This corresponds to the “corrugated flamelets regime” of the Borghi & Peters diagram well.


Flow Turbulence and Combustion | 2016

3D-CT(Computer Tomography) Measurement of an Instantaneous Density Distribution of Turbulent Flames with a Multi-Directional Quantitative Schlieren Camera (Reconstructions of High-Speed Premixed Burner Flames with Different Flow Velocities)

Yojiro Ishino; Naoki Hayashi; Ili Fatimah Bt Abd Razak; Takahiro Kato; Yudai Kurimoto; Yu Saiki


Journal of Heat Transfer-transactions of The Asme | 2017

3D Printing of Spark-Ignited Flame Kernels, Experimentally Captured by 3D-Computer Tomography and Multi-Directional Schlieren Photography

Yojiro Ishino; Naoki Hayashi; Yuta Ishiko; Kimihiro Nagase; Kazuma Kakimoto; Ahmad Zaid Nazari; Yu Saiki


Volume 1: Heat Transfer in Energy Systems; Thermophysical Properties; Theory and Fundamentals in Heat Transfer; Nanoscale Thermal Transport; Heat Transfer in Equipment; Heat Transfer in Fire and Combustion; Transport Processes in Fuel Cells and Heat Pipes; Boiling and Condensation in Macro, Micro and Nanosystems | 2016

Schlieren 3D-CT Reconstruction of Instantaneous Density Distributions of Spark-Ignited Flame Kernels of Fuel-Rich Propane-Air Premixture

Yojiro Ishino; Naoki Hayashi; Yuta Ishiko; Ahmad Zaid Nazari; Kimihiro Nagase; Kazuma Kakimoto; Yu Saiki


The Proceedings of Mechanical Engineering Congress, Japan | 2016

Schlieren 3D-CT Measuremsnt of Instantaneous Density Distributions of the Shock-cell Structure of Under-Expanded Supersonic Jets

Ahmad Zaid Nazari; Naoki Hayashi; Yuta Ishiko; Kimihiro Nagase; Kazuma Kakimoto; Yojiro Ishino; Yoshiaki Miyazato; Shinichiro Nakao


The Proceedings of Conference of Tokai Branch | 2016

517 Observations of Propagation Behavior of a Spark-Ignited Flame in a Turbulent Premixed Gas Flow by 20-Directional Schlieren 3D-CT Reconstruction

Kimihiro Nagase; Naoki Hayashi; Yuta Ishiko; Ahmad Zaid Nazari; Kazuma Kakimoto; Yu Saiki; Yojiro Ishino


First Thermal and Fluids Engineering Summer Conference | 2016

3D-CT MEASUREMENT OF INSTANTANEOUS DENSITY DISTRIBUTIONS OF HIGH-SPEED PREMIXED TURBULENT BURNER FLAMES WITH A MULTI-DIRECTIONAL SCHLIEREN CAMERA (EFFECTS OF FLOW VELOCITY ON 3D FLAME FRONT SHAPE)

Yojiro Ishino; Naoki Hayashi; Ili Fatimah Bt Abd Razak; Yu Saiki


The Proceedings of Conference of Tokai Branch | 2015

208 3D-CT Measurement of Instantaneous Density Distribution of High Speed Turbulent Burner with 20 Directional Schlieren Camera : Effects of Nozzle Exit Velocity on Flame Shape

Ili Fatimah Bt Abd Razak; Naoki Hayashi; Yu Saiki; Yojiro Ishino


The Proceedings of the Thermal Engineering Conference | 2014

I132 Novel Measuring Technique of Instantaneous 3D Density Distributions of Unsteady Premixed Flames : Multi-Schlieren 3D-CT Measurement of High Speed Turbulent Burner Flames

Ili Fatimah Bt Abd Razak; Naoki Hayashi; Yu Saiki; Yojiro Ishino


The Proceedings of Mechanical Engineering Congress, Japan | 2014

J0510102 Multi-Schlieren 3D-CT Measurement of Instantaneous 3D Density Distributions of Unsteady Premixed Flames (Measurement of High Speed Turbulent Burner Flames)

Yojiro Ishino; Takahiro Kato; Yudai Kurimoto; Yu Saiki; Yasuyuki Kondo; Naoki Hayashi

Collaboration


Dive into the Naoki Hayashi's collaboration.

Top Co-Authors

Avatar

Yojiro Ishino

Nagoya Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Yu Saiki

Nagoya Institute of Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Kazuma Kakimoto

Nagoya Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Kimihiro Nagase

Nagoya Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Yuta Ishiko

Nagoya Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Ahmad Zaid Nazari

Nagoya Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Takahiro Kato

Nagoya Institute of Technology

View shared research outputs
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge