Particulate Matter Emission Comparison of Spark Ignition Direct Injection (SIDI) and Port Fuel Injection (PFI) Operation of a Boosted Gasoline Engine

Author:

Su Jianye12,Lin Weiyang3,Sterniak Jeff4,Xu Min5,Bohac Stanislav V.2

Affiliation:

1. National Engineering Laboratory for Automotive Electronic Control Technology, Shanghai Jiao Tong University, Shanghai 200240, China;

2. Walter E. Lay Automotive Laboratory, University of Michigan, Ann Arbor, MI 48109

3. Walter E. Lay Automotive Laboratory, University of Michigan, Ann Arbor, MI 41809

4. Robert Bosch LLC, Farmington Hills, MI 48331

5. National Engineering Laboratory for Automotive Electronic Control Technology, Shanghai Jiao Tong University, Shanghai 200240, China

Abstract

Spark ignition direct injection (SIDI) gasoline engines, especially in downsized boosted engine platforms, are increasing their market share relative to port fuel injection (PFI) engines in U.S., European and Chinese vehicles due to better fuel economy by enabling higher compression ratios and higher specific power output. However, particulate matter (PM) emissions from engines are becoming a concern due to adverse human health and environment effects, and more stringent emission standards. To conduct a PM number and size comparison between SIDI and PFI systems, a 2.0 L boosted gasoline engine has been equipped and tested with both systems at different loads, air fuel ratios, spark timings, fuel pressures and injection timings for SIDI operation and loads, air fuel ratios and spark timings for PFI operation. Regardless of load, air fuel ratio, spark timing, fuel pressure, and injection timing, particle size distribution from SIDI and PFI is shown to be bimodal, exhibiting nucleation and accumulation mode particles. SIDI produces particle numbers that are an order of magnitude greater than PFI. Particle number can be reduced by retarding spark timing and operating the engine lean, both for SIDI and PFI operation. Increasing fuel injection pressure and optimizing injection timing with SIDI also reduces PM emissions. This study provides insight into the differences in PM emissions from boosted SIDI and PFI engines and an evaluation of PM reduction potential by varying engine operating parameters in boosted SIDI and PFI gasoline engines.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference23 articles.

1. Light-Duty Automotive Technology, Carbon Dioxide Emissions, and Fuel Economy Trends: 1975 Through 2010;U.S. EPA,2010

2. Basheer, A., 2013, “Market Forecast,” Engine Technology International, accessed November 2, http://www.enginetechnologyinternational.com/market_forecast.php

3. Preliminary Discussion Paper: Proposed Amendments to California's Low Emission Vehicle Regulations—Particulate Matter Mass, Ultrafine Solid Particle Number, and Black Carbon Emissions;State of California Air Resources Board,2010

4. Effect of the Mixture Preparation on the Nanoparticle Characteristics of Gasoline Direct-Injection Vehicles;Proc. Inst. Mech. Eng.,2012

5. Health Effects of Transport-Related Air Pollution,2005

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