Journal Article

·2019

Performance analysis of a hybrid lightweight vehicle with downsized engine

Yasin Karagöz YTU , Özgün Balcı YTU , Onur Gezer YTU , Sefa Kale YTU , Hasan Köten

Energy Sources Part A Recovery Utilization and Environmental Effects

Abstract

Today, due to increased environmental concerns on NOx and PM emissions caused by diesel vehicles, researchers have focused on the development of hybrid engine vehicles. Therefore, an SI engine was chosen in the present study. In addition, an extra downsized single-cylinder engine model for hybrid system and a four-cylinder engine model for conventional system were selected with lightweight vehicle in order to investigate advantageous provided in crowded city traffic conditions. The models have three-way catalyst (TWC) and cold-start operation conditions. The result of the experiment using the theoretical model developed by us and the experimental results of the SI engine are verified by using a series hybrid drive system in a gasoline light-duty vehicle used today as a passenger car. According to obtained results, CO, HC, and NOx emissions of the four-cylinder gasoline fueled vehicle and single-cylinder series hybrid system were compared instantaneously for ECE, NEDC, and WLTC cycles. According to results, fuel consumption, CO, and HC decreased while NOx emissions increased.

Keywords

Automotive engineering NOx Fuel efficiency Diesel engine Cylinder Hybrid system Diesel fuel Gasoline Hybrid vehicle Petrol engine Cold start (automotive) Environmental science Engineering Computer science Mechanical engineering Internal combustion engine Power (physics) Waste management Chemistry Combustion

Subject Areas

Vehicle emissions and performance ·Automotive Engineering ·Physical Sciences
Advanced Combustion Engine Technologies ·Fluid Flow and Transfer Processes ·Physical Sciences
Electric Vehicles and Infrastructure ·Electrical and Electronic Engineering ·Physical Sciences

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