野原 徹雄

Nohara Tetsuo

  • 教授
  • 学位:博士(工学)

基本情報

所属

  • Research Institute of Science and Technology

詳細情報

研究キーワード

  • Exhaust gas aftertreatment system, Atomization, Electrolysis/ionization, Visualization, Two phase flow, Renewable energy

研究分野

  • Energy Earth resource engineering, energy science CO2 Absorption/recovery, reduction of NOx emissions
  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering) Thermal engineering Aftertreatment systems

委員歴

  • Society of Automotive Engineers of Japan Committee member, Exhaust Catalyst System Committee
  • The Combustion Society of Japan Committee member, Biofuel Combustion Research Subcommittee

受賞

  • E&E Community by CIC and U3Innovations Outstanding performance award CO2 reduction from logistics vehicles through on-board absorption and recovery systems
  • URA/Research Institute of Science and Technology, Tokai University Best Presentation Award Retrofitting CO2 absorption and capture systems for mobile vehicles/ships/industrial off-road
  • Society of Automotive Engineers of Japan Certification of Fellow Engineer (Field: Thermal Engines and Research)
  • Kanagawa Senior Entrepreneur Business Grand Prix 2019 (Kanagawa Pref.) Outstanding performance award Improving air quality in emerging countries through visualization technology
  • Society of Automotive Engineers of Japan Certification of Professional Engineer (Field: Thermal Engines and Research)
  • Outstanding Thesis Award, 2010 Kogakuin University Graduate School
  • Society of Automotive Engineers of Japan Best paper award, JSAE2007 Kanto Branch conference Research on fuel cell vehicles equipped with ammonia decomposition devices

論文

Study on CO2 Absorption via Atomization Utilizing Surface Texturing and Surface Energy for Small Engine Applications

Visualization of Atomized Droplet Behavior and Distribution under Two-Layer Multiphase Flow in a Urea SCR Systems

Visualization of Gas-Liquid Two-Phase Flow in the Urea-SCR System Using High-Speed Camera (Construction of the Visualization Experimental Equipment and the Influence Comparison of the Gas Temperature by PIV Analysis)

CO2 Absorption Method in the Exhaust Gas by Droplet Impingement/Atomization Control of Absorbent using Surface Texturing

Visualization of Physical / Thermal Evaporation Phenomena with Experimental and PIV-DDM Analysis in Urea-SCR Dosing System of Multi-Phase Flow

Atomization Modelling of Carbon Dioxide Capture and Storage Technology for Installation in Internal Combustion Engines

Augmentation of Cross-Sectional Spray Measurements by Discrete Droplet Model and Ensemble Kalman Filter

Estimation of spray flow characteristics using ensemble Kalman filter

Atomization Effects of Collision Droplets by Dimples for Application to Urea SCR System

Augmentation of Cross-Sectional Spray Measurements with Discrete Droplet Model Using Ensemble Kalman Filter

Observation / PIV-DDM Analysis of Spray and Liquid Film Behaviors in Visualized Pipe for Urea-SCR dosing system: Confirmation of Physical Phenomena without Thermal Evaporation

Proposal of Depth Estimation Method Using Deep Learning for Droplet Visualization

Effect of Atomization of Impact Droplets by Surface Texturing using High-Speed Camera

Verification of Exhaust Gas / Droplets Behavior by Macro~Meso~Micro scale:- Experiment Study by Texturing Ideas for Atomization Mechanism -

Design exploration study of exhaust system mixer for emission performance

Possibilities of the Pre-Turbocharger Catalysts for Truck Applications with New-generation Aftertreatment System

Potential of PM Reduction with Diesel Particulate Filter-less System for Off-Road Engine Applications

Applications to the off-road engines by ultra-small DOC containing metal special structure design substrates - Compact & cost effective with small aftertreatment system

Application to the Off-Road Engine by LS Metal Substrate

講演・口頭発表等

  • Reducing CO2 emissions from logistics vehicles through on-board absorption and recovery systems - Beyond Carbon-neutral (CN) fuels -
  • On-board CO2 absorption and recovery system using atomization technology
  • Elucidating phenomena and their applications through flow visualization technology

共同研究・競争的資金等の研究課題

CO2 absorption and recovery system utilizing droplet atomization/charge/heat control by surface texture

Research on CO2 absorption and recovery systems using laser processing machines for surface microfabrication: A method for promoting the atomization of CO2 absorption liquid upon impact with a special impact plate having a surface microstructure.

CO2 absorption by ionization and atomization of CO2 absorption liquid using a special impact plate with a surface texture, and a method for recovering the CO2 absorption liquid using an adsorbent.

Support for reciprocal UK-Japan research visits by academics at the University of Sussex, University of Brighton, and Tokai University combining their respective expertise as they research the possibility of CO2 absorption

Design and methods of microtextures for droplet atomization control to improve air quality in emerging countries

Improvement of air quality on a global scale through "Flow visualization technology"

産業財産権

  • STRUCTURAL BODY AND DESIGN METHOD THEREFOR, AND LIQUID DROPLET ATOMIZATION SYSTEM INCLUDING STRUCTURAL BODY
  • Surface textures and their design method, and droplet atomization system with structure

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