Modern metropolises are increasingly affected by air quality problems. Transportation is one of the largest sources of several pollutants emissions, such as nitrogen oxides (NOx) and carbon monoxide (CO). Today in the EU, vehicles’ emissions are strictly limited by Euro 6 norm—Euro VI for heavy-duty vehicles—which is periodically upgraded. To match such limits, manufacturers are forced in developing new technologies to perform new sustainable vehicles design strategies, such as EVs and HEVs. Present work’s aim is to provide the design of series-hybrid urban transportation bus, equipped with a novel thermal power unit, namely a small gas turbine, to exploit its cleaner combustion process in comparison with an ICE. The control logic is described, while the main drivetrain components are chosen, and suitable models from suppliers are selected as well. Then, some simulations of the resulting vehicle are performed on opportune drive cycles, using Advisor, a free software based on Matlab-Simulink environment, published by US’ National Renewable Energy Laboratory (NREL). Two different final configurations are environmentally and economically analysed, with the thermal power unit being respectively fuelled by compressed natural gas (CNG) and liquefied petroleum gas (LPG). Both satisfy the Euro VI norms, showing a substantial emission reduction (-89% and -43% in CO and THC releases respectively) in comparison to pollutants’ threshold values.

Preliminary design, drive-cycle simulation and energy analysis of a hybrid transit bus / Capata, Roberto. - In: JOURNAL OF ENERGY AND POWER ENGINEERING. - ISSN 1934-8975. - 13:(2019), pp. 209-228. [10.17265/1934-8975/2019.06.001]

Preliminary design, drive-cycle simulation and energy analysis of a hybrid transit bus

Roberto Capata
2019

Abstract

Modern metropolises are increasingly affected by air quality problems. Transportation is one of the largest sources of several pollutants emissions, such as nitrogen oxides (NOx) and carbon monoxide (CO). Today in the EU, vehicles’ emissions are strictly limited by Euro 6 norm—Euro VI for heavy-duty vehicles—which is periodically upgraded. To match such limits, manufacturers are forced in developing new technologies to perform new sustainable vehicles design strategies, such as EVs and HEVs. Present work’s aim is to provide the design of series-hybrid urban transportation bus, equipped with a novel thermal power unit, namely a small gas turbine, to exploit its cleaner combustion process in comparison with an ICE. The control logic is described, while the main drivetrain components are chosen, and suitable models from suppliers are selected as well. Then, some simulations of the resulting vehicle are performed on opportune drive cycles, using Advisor, a free software based on Matlab-Simulink environment, published by US’ National Renewable Energy Laboratory (NREL). Two different final configurations are environmentally and economically analysed, with the thermal power unit being respectively fuelled by compressed natural gas (CNG) and liquefied petroleum gas (LPG). Both satisfy the Euro VI norms, showing a substantial emission reduction (-89% and -43% in CO and THC releases respectively) in comparison to pollutants’ threshold values.
2019
HEV; GTHV; heavy-duty; bus; advisor; microturbine (MT); gas turbine (GT); CNG; LPG; simulation; euro driving cycles
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Preliminary design, drive-cycle simulation and energy analysis of a hybrid transit bus / Capata, Roberto. - In: JOURNAL OF ENERGY AND POWER ENGINEERING. - ISSN 1934-8975. - 13:(2019), pp. 209-228. [10.17265/1934-8975/2019.06.001]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1308226
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