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Keiya Nishida

Keiya Nishida

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
32
Citations
5717
World Ranking
3118
National Ranking
74

Overview

Keiya Nishida is affiliated with Hiroshima University in Japan and has an extensive publication record primarily in the fields of engineering and chemical engineering. Their research encompasses a diverse range of topics related to fluid dynamics, combustion, and advanced engine technologies.

The main fields of study for Nishida include:

  • Engineering
  • Chemical Engineering

Their work focuses on various subfields such as:

  • Computational Mechanics
  • Fluid Flow and Transfer Processes
  • Aerospace Engineering
  • Biomedical Engineering
  • Materials Chemistry

Key research topics covered by Nishida comprise:

  • Advanced Combustion Engine Technologies
  • Combustion and flame dynamics
  • Fluid Dynamics and Heat Transfer
  • Catalytic Processes in Materials Science
  • Vehicle emissions and performance
  • Biodiesel Production and Applications
  • Plant Surface Properties and Treatments

Nishida has published numerous peer-reviewed articles in high-impact journals and professional venues. Some recent publications include:

  • "Diesel spray and combustion of multi-hole injectors with micro-hole under ultra-high injection pressure - Non-evaporating spray characteristics," 2020, Fuel
  • "DIESEL SPRAY CHARACTERISTICS OF MULTI-HOLE INJECTORS UNDER GEOMETRICAL SIMILARITY CONDITION," 2025, Atomization and Sprays
  • "Experimental investigation of fuel adhesion from wall-impinging spray with various injection mass ratios," 2024, Experimental Thermal and Fluid Science
  • "Threshold sensitivity study on spray-spray impingement under flexible injection strategy for fuel/air mixture evaluation," 2025, Physics of Fluids
  • "Spray combustion simulation study of waste cooking oil biodiesel and diesel under direct injection diesel engine conditions," 2020, Fuel

Frequently, Nishida collaborates with several coauthors, including:

  • Yoichi Ogata
  • Hongliang Luo
  • Yu Jin
  • Chang Zhai
  • Youichi Ogata

Publishing predominantly in the following venues, Nishida has contributed significantly to these journals and conferences:

  • Fuel
  • Atomization and Sprays
  • SAE technical papers on CD-ROM/SAE technical paper series
  • SSRN Electronic Journal
  • Proceedings of the Institution of Mechanical Engineers Part D Journal of Automobile Engineering

Best Publications

  • Experimental and analytical study on biodiesel and diesel spray characteristics under ultra-high injection pressure

    Xiangang Wang;Zuohua Huang;Olawole Abiola Kuti;Wu Zhang

  • Effects of ultra-high injection pressure and micro-hole nozzle on flame structure and soot formation of impinging diesel spray

    Xiangang Wang;Zuohua Huang;Wu Zhang;Olawole Abiola Kuti

  • Simplified Three-Dimensional Modeling of Mixture Formation and Combustion in a D.I. Diesel Engine

    Keiya Nishida;Hiroyuki Hiroyasu

  • EFFECTS OF CAVITATION AND INTERNAL FLOW ON ATOMIZATION OF A LIQUID JET

    N. Tamaki;M. Shimizu;Keiya Nishida;Hiroyuki Hiroyasu

  • Characterization of spray and combustion processes of biodiesel fuel injected by diesel engine common rail system

    Olawole Abiola Kuti;Jingyu Zhu;Keiya Nishida;Xiangang Wang

  • Droplet size distribution and evaporation characteristics of fuel spray by a swirl type atomizer

    Tie Li;Keiya Nishida;Hiroyuki Hiroyasu

  • Imaging of droplets and vapor distributions in a Diesel fuel spray by means of a laser absorption–scattering technique

    Yu-yin Zhang;Takuo Yoshizaki;Keiya Nishida

  • An experimental investigation on spray, ignition and combustion characteristics of biodiesels

    Xiangang Wang;Zuohua Huang;Olawole Abiola Kuti;Wu Zhang

  • Effects of micro-hole nozzle and ultra-high injection pressure on air entrainment, liquid penetration, flame lift-off and soot formation of diesel spray flame:

    Keiya Nishida;Jingyu Zhu;Xianyin Leng;Xianyin Leng;Zhixia He

  • Approach to Low NOx and Smoke Emission Engines by Using Phenomenological Simulation

    Takuo Yoshizaki;Keiya Nishida;Hiroyuki Hiroyasu

  • Fuel Spray Simulation of High-Pressure Swirl-Injector for DISI Engines and Comparison with Laser Diagnostic Measurements

    Christos A. Chryssakis;Dennis N. Assanis;Jee-Kuen Lee;Keiya Nishida

  • An experimental and numerical study on sprays injected from two-hole nozzles for DISI engines

    Keiya Nishida;Jiangping Tian;Yasuki Sumoto;Wuqiang Long

  • Multilayered polyamide membranes by spray-assisted 2-step interfacial polymerization for increased performance of trimesoyl chloride (TMC)/m-phenylenediamine (MPD)-derived polyamide membranes

    Toshinori Tsuru;Shoichi Sasaki;Takashi Kamada;Takuji Shintani

  • Microscopic behavior of spray droplets under flat-wall impinging condition

    Hongliang Luo;Keiya Nishida;Shintaro Uchitomi;Youichi Ogata

  • Effect of temperature on fuel adhesion under spray-wall impingement condition

    Hongliang Luo;Keiya Nishida;Shintaro Uchitomi;Youichi Ogata

  • Diesel spray and combustion of multi-hole injectors with micro-hole under ultra-high injection pressure – Non-evaporating spray characteristics

    Chang Zhai;Yu Jin;Keiya Nishida;Youichi Ogata

  • Effect of flat-wall impingement on diesel spray combustion

    Kuichun Li;Keiya Nishida;Youichi Ogata;Baolu Shi

  • Effect of Injection Pressure on Flame and Soot Characteristics of the Biodiesel Fuel Spray

    Xiangang Wang;Olawole Abiola Kuti;Wu Zhang;Keiya Nishida

  • EXPERIMENTAL INVESTIGATION ON FUEL FILM FORMATION BY SPRAY IMPINGEMENT ON FLAT WALLS WITH DIFFERENT SURFACE ROUGHNESS

    Hongliang Luo;Shintaro Uchitomi;Keiya Nishida;Youichi Ogata

  • Quantitative Measurement of Droplets and Vapor Concentration Distributions in Diesel Sprays by Processing UV and Visible Images

    Yuyin Zhang;Keiya Nishida;Takuo Yoshizaki

  • Experimental studies on spray and gas entrainment characteristics of biodiesel fuel: Implications of gas entrained and fuel oxygen content on soot formation

    Olawole Abiola Kuti;Keiya Nishida;Jingyu Zhu

  • Characterization of Mixture Formation in Split-Injection Diesel Sprays via Laser Absorption-Scattering (LAS) Technique

    Yuyin Zhang;Tomoaki Ito;Keiya Nishida

Frequent Co-Authors

Zuohua Huang
Zuohua Huang Xi'an Jiaotong University
Chenglong Tang
Chenglong Tang Xi'an Jiaotong University
Zhixia He
Zhixia He Jiangsu University
Dennis N. Assanis
Dennis N. Assanis University of Delaware
Takayuki Ichikawa
Takayuki Ichikawa Hiroshima University
Tomohisa Yoshioka
Tomohisa Yoshioka Kobe University
Toshinori Tsuru
Toshinori Tsuru Hiroshima University
Zoran Filipi
Zoran Filipi Clemson University
S. Mani Sarathy
S. Mani Sarathy King Abdullah University of Science and Technology
Masakoto Kanezashi
Masakoto Kanezashi Hiroshima University

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