Effects of Pre-Turbocharger Turbine Water Injection on the Sustainable Performance of Spark Ignition Engine

Author:

Veza Ibham1ORCID,Huat Ling Chee2,Abas Mohd Azman2ORCID,Idris Muhammad3ORCID,Spraggon Martin4,Herawan Safarudin G.5ORCID

Affiliation:

1. Department of Mechanical Engineering, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia

2. Automotive Development Centre, Institute for Vehicle Systems and Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia

3. School of Environmental Science, University of Indonesia, Jakarta 10430, Indonesia

4. Research & Innovation Center Division, Rabdan Academy, Abu Dhabi P.O. Box 114646, United Arab Emirates

5. Industrial Engineering Department, Faculty of Engineering, Bina Nusantara University, Jakarta 11480, Indonesia

Abstract

Water injection strategy is considered a promising technique to improve the performance of boosted engine and reduce the NOx emission via the latent heat of water vaporization. Numerous research on water injection has been conducted on in-cylinder and intake port water injection. However, the water injection focusing on the spark ignition (SI) engine exhaust system is still lacking. This study proposed a pre-turbocharger turbine water injection (PTWI) concept to reduce the turbine inlet temperature. This was done so that the stoichiometric engine operation could be achieved at a medium–high load and engine speed without resorting to a fuel enrichment strategy to reduce the exhaust gas temperature. This study aims to investigate the effect of injecting water into the exhaust gas at the pre-turbine of a turbocharged spark ignition engine. This study experimented on a 1.3-L 4-cylinder turbocharged engine to collect engine data for computational fluid dynamics (CFD) baseline model validation. A one-dimensional engine model was then developed based on the 1.6-L 4-cylinder turbocharged engine experiment using AVL BOOST software. The CFD model was used to investigate the effects of water injection pressure, pipe diameter, and water injector location. The CFD results showed that a 50 mm connecting pipe with 4 bar of injection pressure gives the largest reduction in exhaust temperature. The CFD results were then applied to the one-dimensional engine model. The engine model simulation results showed that the fuel consumption could be reduced up to 13% at 4000 rpm during wide-open throttle and 75% engine load. The PTWI is a new approach, but this study has proved the potential of using water injection at the pre-turbine turbocharger to reduce the fuel consumption of a turbocharged SI engine.

Funder

Universiti Teknologi Malaysia

Cost Center

Rabdan Academy

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference43 articles.

1. Water Injection to Enhance Performance and Emissions of a Turbocharged Gasoline Engine under High Load Condition;Iacobacci;SAE Int. J. Engines V126 3EJ,2017

2. Investigating Effects of Water Injection on Availabilities of a Turbocharged Gasoline Direct Injection Engine;Chen;J. Energy Eng.,2019

3. Water Injection: A Technology to Improve Performance and Emissions of Downsized Turbocharged Spark Ignited Engines;Tornatore;SAE Int. J. Engines,2017

4. Rothrock, A.M., Krsek Jr, A., and Jones, A.W. (1943). The Induction of Water to the Inlet Air as a Means of Internal Cooling in Aircraft Engine Cylinder, National Advisory Committee for Aeronautics.

5. Water injection in directly injected turbocharged spark ignition engines;Boretti;Appl. Therm. Eng.,2013

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