Abstract:
With the continuous changes in climate, increased attention is required to address the adverse
impacts of climatic variables on automobile fuel consumption and emissions. In recent studies,
various prediction models have been employed to quantify the influence of weather-related
factors on vehicular fuel consumption. The paper introduces three interrelated vehicle-based
physical models designed to quantify the effects of rainfall and wind speed/direction on fuel
consumption of four commercial vehicles - Matiz, Astra, Pregio, and Urvan, utilizing monthly
weather data from Accra. The results indicated that the presence of headwind and rainfall substantially
increased fuel consumption, whereas tailwind contributed to a reduction. Fuel increments
under rainfall and headwind ranged from 2 % to 10 % and 4 % to 16 %, respectively
across the vehicles, depending on the monthly variation in weather intensity. Conversely, the
reduction in fuel consumption due to tailwind ranged between 1 % and 3 %, insufficient to
counteract the more significant increases induced by headwind. The combined impact of rainfall
and wind increased fuel consumption by 10 % to 37 % relative to the effect of rainfall alone and
by 5 % to 66 % compared to headwind effects, depending on monthly intensity levels. The
proposed models demonstrated robust performance in analyzing weather-induced fuel consumption
and can be effectively applied to estimate offline vehicular fuel usage prior to a journey.
Description:
A Publication submitted to the West African Science Service Centre on Climate Change and Adapted Land Use and the Université Abdou Moumouni, Niger in partial fulfillment of the requirements for the degree of Master of Science Degree in Climate Change and Energy