Showing posts with label 116d Efficient Dynamics. Show all posts
Showing posts with label 116d Efficient Dynamics. Show all posts

Saturday, August 6, 2016

Long Rumored Mid-Engine Corvette Coming In 2019

Rumors of a mid-engine Corvette have been floating around for decades. In theory, putting the mass of the engine near the center of a car improves handling. Why? Because it allows the car to turn and change direction more quickly. Let’s try a little experiment to see if that’s true.
Mid-engine Corvette

Take a 4 feet long stick and attach a one pound weight to the front of it. Hold the stick in the center with one hand and turn it left and right. Your wrist will tell you it takes some effort to get the stick moving. When you try to turn it back the other way, it takes more effort to get it to stop turning one way and start turning the other. You have just discovered what scientists call the polar moment of inertia.
 Congratulations, you have simulated the handling characteristics of a 1954 Buick, the one that featured “Advanced Thrust” because engineers had moved the engine as far forward in the chassis as possible.
Now turn the stick around so the weight is in the back. One again, your wrist will tell you the weight makes it hard to start moving the stick in one direction and hard to get it to stop moving in that direction and turn back the other way. This time you have simulated the handling of early Porsches, which had the engine as far back as possible in the chassis.
Now put the weight in the center of the stick. Suddenly, you can twirl it one way and then the other with ease. The polar moment of inertia has been reduced almost to zero. A car built this way would be perfectly balanced, ready to eat up any curve that comes its way. It would be instantly responsive to the driver’s commands. That’s the theory, anyway.
In reality, things are much more complex. There are heavy items like the chassis, brakes, transmission, windows, doors, people, and luggage that keep any car from being perfectly balanced. But putting the engine — the heaviest component of all — in the middle of the car helps make the finished product as well balanced as possible.
Sources tell the Detroit News, “It’s happening. Mark Reuss wants it,” referring to the automaker’s global product development chief. “It’s the worst kept secret in town.” Bob Lutz, formerly the head honcho at GM, says the car was actually approved back in 2007 but the infamous corporate bankruptcy forced it onto the back burner. He thinks the mid-engine configuration could open up the possibility of adding electric motors to the front wheels of the car for limited all wheel drive capability and an overall fuel economy rating approaching 80 mpg city.
Such an electrified Corvette would be similar to the new Acura NSX and the Ferrari LaFerrari but cost much less. Corvette has always offered supercar performance at a relatively affordable price.
Corvette buyers are getting older. A plug-in hybrid electric car could appeal to younger customers or it could drive away the Corvette faithful. The car has remained basically the same since 1953 — a front engine, rear wheel drive, two seat sports car using a pushrod internal combustion engine. Jeep struck out when it dropped round headlights. Harley Davidson owners gave the cold shoulder to the technically brilliant V-Rod because it didn’t sound right. New Coke was the biggest disaster in marketing history.
Will Corvette buyers accept a mid-engine car? That remains to be seen. The design concept by Car and Driver — with its enormous flying buttresses — is quite unappealing, especially compared to the daringly swoopy seventh generation Corvette in showrooms today. It will be interesting to see what sort of package the designers come up with for the new mid-engine Corvette. Look for it to break cover in 2018, if the rumors are true.

Long Rumored Mid-Engine Corvette Coming In 2019

Rumors of a mid-engine Corvette have been floating around for decades. In theory, putting the mass of the engine near the center of a car improves handling. Why? Because it allows the car to turn and change direction more quickly. Let’s try a little experiment to see if that’s true.
Mid-engine Corvette
Mid-engine Corvette design concept by Car and Driver
Take a 4 feet long stick and attach a one pound weight to the front of it. Hold the stick in the center with one hand and turn it left and right. Your wrist will tell you it takes some effort to get the stick moving. When you try to turn it back the other way, it takes more effort to get it to stop turning one way and start turning the other. You have just discovered what scientists call the polar moment of inertia.
 Congratulations, you have simulated the handling characteristics of a 1954 Buick, the one that featured “Advanced Thrust” because engineers had moved the engine as far forward in the chassis as possible.
Now turn the stick around so the weight is in the back. One again, your wrist will tell you the weight makes it hard to start moving the stick in one direction and hard to get it to stop moving in that direction and turn back the other way. This time you have simulated the handling of early Porsches, which had the engine as far back as possible in the chassis.
Now put the weight in the center of the stick. Suddenly, you can twirl it one way and then the other with ease. The polar moment of inertia has been reduced almost to zero. A car built this way would be perfectly balanced, ready to eat up any curve that comes its way. It would be instantly responsive to the driver’s commands. That’s the theory, anyway.
In reality, things are much more complex. There are heavy items like the chassis, brakes, transmission, windows, doors, people, and luggage that keep any car from being perfectly balanced. But putting the engine — the heaviest component of all — in the middle of the car helps make the finished product as well balanced as possible.
Sources tell the Detroit News, “It’s happening. Mark Reuss wants it,” referring to the automaker’s global product development chief. “It’s the worst kept secret in town.” Bob Lutz, formerly the head honcho at GM, says the car was actually approved back in 2007 but the infamous corporate bankruptcy forced it onto the back burner. He thinks the mid-engine configuration could open up the possibility of adding electric motors to the front wheels of the car for limited all wheel drive capability and an overall fuel economy rating approaching 80 mpg city.
Such an electrified Corvette would be similar to the new Acura NSX and the Ferrari LaFerrari but cost much less. Corvette has always offered supercar performance at a relatively affordable price.
Corvette buyers are getting older. A plug-in hybrid electric car could appeal to younger customers or it could drive away the Corvette faithful. The car has remained basically the same since 1953 — a front engine, rear wheel drive, two seat sports car using a pushrod internal combustion engine. Jeep struck out when it dropped round headlights. Harley Davidson owners gave the cold shoulder to the technically brilliant V-Rod because it didn’t sound right. New Coke was the biggest disaster in marketing history.
Will Corvette buyers accept a mid-engine car? That remains to be seen. The design concept by Car and Driver — with its enormous flying buttresses — is quite unappealing, especially compared to the daringly swoopy seventh generation Corvette in showrooms today. It will be interesting to see what sort of package the designers come up with for the new mid-engine Corvette. Look for it to break cover in 2018, if the rumors are true.

Friday, March 7, 2014

Jet Powered Truck Drifting in the Desert - VIDEO

jet powered truck

Sometimes you know you like someone the moment you meet them. It’s a certain nod to the head or a shared awkwardness or the fact that they showed up to the party sideways in a 100 MPH, jet powered truck cab and chassis that has no business being sideways, going 100 MPH, or having a jet engine mounted between the frame rails. It’s in this third category that the guys from Wrightspeed fall, and I like them.
There’s more to know about the big go-fast truck, however. For one, it’s called the Route, and it’s a hybrid. The Route uses an ultra-efficient turbine engine from Capstone to power a big, heavy battery pack mounted between the Isuzu’s frame rails (also, it’s an Isuzu). The combination is enough for Wrightspeed to cater to the class 3 to class 6 commercial market consisting of 11,000 GVWR to 26,000 GVWR. That weight rating would make the truck a viable option to Ford F650 and Mitsubishi Fuso fleet customers- also known as “anyone and everyone operating commercial fleets, including companies like Cintas, UPS, Waste Management, Brinks, Frito Lay, etc.,” according to Wrightspeed.
The ultra-efficient Route’s power train looks like this …

Wrightspeed Route truck

… but you don’t care about that. You want to see this jet powered truck drifting across the desert at 100 MPH in screaming, low emission, hybrid-electric, helicopter chasing glory. So do I. Here’s the video.






Source | Images: Wrightspeed, via Hybrid Cars andOle Schell.

Friday, February 17, 2012

The 60 MPG BMW 1-Series to Debut at Geneva Auto Show

When it comes to diesel cars, the choice in the U.S. is a little thin next to the selection of diesels on sale in Europe.

After all, where else could you buy an example of the "Ultimate Driving Machine" that can average 60 miles per gallon?

Just such a car will be launched at the 2012 Geneva Motor Show, with the BMW 116d EfficientDynamics.

Based on the new 1-Series compact, the 116d EfficientDynamics uses a 116 horsepower, twin-turbocharged diesel engine and common rail injection to deliver almost 62 mpg on the European combined cycle. It can accelerate to 62 mph in 10.5 seconds.

With CO2 output proportional to fuel efficiency, that figure is also high enough to ensure the 116d sneaks below 100 grams per kilometer of the greenhouse gas. That ensures it dodges many of the CO2-based taxes and road charges imposed in European countries and cities. It's the first BMW (MINIs aside) to be granted this privilege.

BMW has previously sold another EfficientDynamics car in Europe, based on the previous generation 3-Series.

This used a stop-start system, aerodynamic 16-inch alloy wheels, Michelin energy-saver tires and longer gear ratios to achieve 57 mpg on the European cycle. The 116d EfficientDynamics will likely use similar techniques to hit its own target.

We should point out that, as ever, the European cycle is around 20-30 percent higher than you'd expect with EPA ratings. A realistic EPA figure for the 116d would be between 44 and 50 mpg combined, with an even higher highway figure.

Although the EfficientDynamics' power output seems low, it's torque that dominates the diesel driving experience, and it should make the 116d quite fun to drive.

Of course, since the 116d EfficientDynamics isn't coming to the U.S, it has to be declared a forbidden fruit. BMW may even pull its more powerful diesels in favor of hybrids soon, so for now at least, the prospect of a 60 mpg BMW is a little while off...

Still, if you want a green 1-Series, you can always lease a BMW Active-E. It's quieter, quicker, and looks better too!


Source: Green Car Reports