Research of Fuel Components to Expand lean-limit in Super lean burn condition (part III)

Author:

Naiki Taketora1,Yasutake Yuki1,Watanabe Manabu1,Obata Ken1

Affiliation:

1. ENEOS Corporation

Abstract

<div class="section abstract"><div class="htmlview paragraph">In this research, we investigated the improvement of combustion and anti-knocking properties as factors that affect the lean limit in order to reflect in fuel design. First, as a basic study, characteristics such as the Laminar burning velocity and Ignition energy of hydrocarbons, which are highly effective in improving combustion speed, were examined. In addition, using the knowledge obtained in the basic study, several concept fuels were created by blending the blend- stocks of the refinery aiming to meet or exceed the current standards in Japan. Their lean limits, thermal efficiencies, and effects on CO2 emission were investigated.</div></div>

Publisher

Society of Automotive Engineers of Japan

Reference21 articles.

1. T. Yokomori , N. Iida , et al. Research on Super Lean Burn Concept for Gasoline Engine with High Thermal Efficiency JSAE20165267 2016

2. M. Watanabe et al. Potential for Hydrocarbon Fuels to Extend the Lean Limit of Super Lean-Burn Engines (Part II) Transactions of Society of Automotive Engineers of Japan 2022 JSAE20224056

3. K. Obata et al. Potential for Hydrocarbon Fuels to Extend the Lean Limit of Super Lean-Burn Engines Transactions of Society of Automotive Engineers of Japan 2020 JSAE20204562

4. Y. Yasutake et al. Potential for Hydrocarbon Fuels to Extend the Lean Limit of Super Lean-Burn Engines (Part III) Transactions of Society of Automotive Engineers of Japan 2022 JSAE20224593

5. T. Naiki , N. Iida , et al. Research of fuel components to expand lean-limit in super lean burn condition Powertrains, Fuels and Lubricants Meeting 2019 SAE 2019-01-2257

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