Influence of Combustion Mode on Heat Loss Distribution in Gasoline Engines

Author:

Matsuda Hirotsugu1,Uchida Kenji1,Harada Yuji1,Yamashita Hiroyuki1

Affiliation:

1. Mazda Motor Corporation

Abstract

<div class="section abstract"><div class="htmlview paragraph">As a technology to reduce the heat loss of engines, heat insulation coating to the surface of combustion chamber has been received a lot of attention. In order to maximize the thermal efficiency improvements by the technology, it is important to clarify the location where heat insulation coating can reduce heat loss more effectively, considering the impact on abnormal combustion etc. In this study, transient behavior of wall heat flux distribution on the piston was analyzed using 3D Computational Fluid Dynamics (CFD) for three combustion modes (spark ignition combustion (SI), homogenous charge compression Ignition (HCCI) and spark controlled compression ignition (SPCCI)).</div></div>

Publisher

Society of Automotive Engineers of Japan

Reference9 articles.

1. H. Yamashita et al. Thermal Efficiency Improvement by Increasing Compression Ratio and Reducing Cooling Loss Proceedings of COMODIA2012 36 42 2012

2. H. Kosaka et al. Concept of “Temperature Swing Heat Insulation” in Combustion Chamber Walls, and Appropriate Thermo-Physical Properties for Heat Insulation Coat SAE Paper, No. 2013-01- 0274 2013

3. N. Nishikawa et al. Heat Insulation by “Temperature Swing” in Combustion Chamber Walls (Fourth Report) Film for Temperature Swing Heat Insulation -, Transactions of Society of Automotive Engineers of Japan 47 1 55 60 2016

4. T. Urushihara et al. Analysis of knocking in high compression ratio gasoline engine and realization of the full load SPCCI(spark controlled compression ignition) combustion The 30th Internal Combustion Engine Symposium, Presentation 45 20194759 2019

5. Y. Sakai and A. Miyoshi Development of Reduced Chemical Kinetics Mechanism of Gasoline Surrogate Fuel The 28th Internal Combustion Engine Symposium, Presentation 59 20178019 2017

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