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Regenerative braking has a similar energy equation to the equation for the mechanical flywheel. Regenerative braking is a two-step process involving the motor/generator and the battery. The initial kinetic energy is transformed into electrical energy by the generator and is then converted into chemical energy by the battery.
In 2003, the Prius was completely redesigned as a compact liftback, with redistributed mechanical and interior space significantly increasing rear-seat legroom and luggage room. The 2004 Prius is even more environmentally-friendly than the 1997–2003 model (according to the EPA), and is 6 inches (150 mm) longer than the previous version. [5]
The Toyota Prius v (for versatile [7]), also named Prius α (pronounced as Alpha) in Japan, and Prius+ in Europe and Singapore, is a hybrid gasoline-electric automobile produced by Toyota introduced in Japan in May 2011, in the U.S. in October 2011, and released in Europe in June 2012.
The regenerative braking control was designed "to provide the same brake pedal "feel" as a conventional car. [13] This was the first use of regenerative braking technology in the U.S. automobile industry. [14] [15] Altogether, the system provided the car with a range of 150-mile (241 km) when traveling at 50 mph (80 km/h). [16]
The Toyota Prius has modest acceleration but has extremely high efficiency for a midsized four-door sedan: usually significantly better than 40 mpg (US) (5.9 L/100 km) is typical of brief city jaunts; 55 mpg (4.3 L/100 km) is not uncommon, especially for extended drives at modest speeds (a longer drive allows the engine to warm up fully). This ...
The Prius Plug-in Hybrid shares many of the same exterior and interior design elements as the standard 2012 Prius, keeping the coefficient of drag at Cd=0.25. Among the design features exclusive to the plug-in are: unique chrome grille and bumper trim, chrome door handles, unique 15-inch alloy wheels, blue-accented headlamps, a distinct tail ...
Exhaust Heat Recovery Unit in Toyota Prius PHV. An exhaust heat recovery system turns waste heat energy in exhaust gases into electric energy for batteries or mechanical energy reintroduced on the crankshaft. The technology is of increasing interest as car and heavy-duty vehicle manufacturers continue to increase efficiency, saving fuel and ...
The car offers one-pedal braking where easing off the accelerator pedal causes significant regenerative braking, to the point where the vehicle can be brought to a complete stop without the driver touching the brake pedal, at which point hydraulic brakes are automatically applied, to hold the vehicle in position. [24]
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