English Harbour in Antigua and Barbuda is heavily reliant on cars for transportation, with 100% of commuters using this mode. The city's traffic dynamics are characterized by significant CO2 emissions and a moderate level of traffic inefficiency.
Traffic tends to increase during the tourist season, particularly in the winter months. Off-peak seasons see a slight reduction in traffic congestion, offering smoother commutes.
High reliance on cars leads to significant CO2 emissions and environmental concerns. Traffic inefficiencies result in longer commute times and increased frustration among drivers.
Early mornings and late evenings are generally the best times to travel to avoid peak traffic. Midday traffic is typically lighter, offering a more pleasant driving experience.
Public events and festivals can lead to temporary spikes in traffic congestion. Planning travel around these events can help avoid delays.
The city is exploring initiatives to promote electric vehicles and reduce carbon footprints. Efforts to enhance pedestrian pathways and cycling infrastructure are underway to encourage alternative modes of transport.
Ride-sharing services are gradually gaining popularity, offering a convenient alternative to car ownership. These services have the potential to reduce the number of vehicles on the road, easing traffic congestion.
With 100% reliance on cars, diversifying transportation options could reduce emissions and improve traffic flow.
Implementing public transportation or encouraging carpooling might alleviate some of the traffic inefficiencies.
The CO2 emission index is notably high at 9310, indicating significant environmental impact.
Efforts to reduce emissions could greatly benefit the city's air quality.
TimeThe time index is 35, reflecting the average time spent commuting by car.
This suggests a moderate level of traffic congestion.
InefficiencyThe inefficiency index stands at 137.18, highlighting areas for potential improvement in traffic flow.
Addressing inefficiencies could lead to reduced commute times and emissions.