Turbocharging System Selection for a Hydrogen-Fuelled Spark-Ignition Internal Combustion Engine for Heavy-Duty Applications

Author:

Pucillo Francesco1,Millo Federico1,Piano Andrea1,Giordana Sergio2,Rapetto Nicola2,Paulicelli Fabio2

Affiliation:

1. Politecnico di Torino

2. FPT Industrial SpA

Abstract

<div class="section abstract"><div class="htmlview paragraph">Nowadays, green hydrogen can play a crucial role in a successful clean energy transition, thus reaching net zero emissions in the transport sector. Moreover, hydrogen exploitation in internal combustion engines is favored by its suitable combustion properties and quasi-zero pollutant emissions. High flame speeds enable a lean combustion approach, which provides high efficiency and reduces NOx emissions. However, high airflow rates are required to achieve the load levels typical of heavy-duty applications. In this framework, the present study aims at investigating the required boosting system of a 6-cylinder, 13-litre heavy-duty spark ignition engine through 1D numerical simulation. A comparison among various architectures of the turbocharging system and the size of each component is presented, thus highlighting the limitations and potentialities of each architecture and providing important insights for the selection of the best turbocharging system.</div></div>

Publisher

SAE International

Reference16 articles.

1. https://www.meti.go.jp/shingikai/enecho/shoene_shinene/suiso_seisaku/pdf/20230606_5.pdf 2024

2. European Commission https://energy.ec.europa.eu/topics/energy-systems-integration/hydrogen_en Jan. 2024

3. U.S. Department of Energy https://www.hydrogen.energy.gov/library/roadmaps-vision/clean-hydrogen-strategy-roadmap 2024

4. European Council https://www.consilium.europa.eu/en/policies/green-deal/fit-for-55-the-eu-plan-for-a-green-transition/ Jan. 2024

5. Thomas Koch , D. , Sousa , A. , and Bertram , D. H2-Engine Operation with EGR Achieving High Power and High Efficiency Emission-Free Combustion SAE Technical Paper 2019-01-2178 2019 https://doi.org/10.4271/2019-01-2178

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