Showing posts with label nissan leaf. Show all posts
Showing posts with label nissan leaf. Show all posts

Big news: LEAF in the mid- 20s

The Nissan LEAF, the first all-electric car to be mass marketed by a major automaker, will come in around $25,000, with help from the federal tax credit of $7500. At 25% of the cost of a Tesla, we're no longer talking about a car for millionaires.

If you live in a state that recognizes the benefits of EVs with rebates and incentives of their own, the LEAF could come in as low as about $21,000. If you don't, get active with your state legislators.

Get ready to sign up, $99 refundable deposit, on April 20.

More info at NissanUSA

Fast charger comes to Voltageville: A Glimpse at the Future

In 2001 I began driving an electric car, obtaining the last of the ZEV mandate-required EVs. As I got turned on to the benefits and technological readiness of electric cars, the writing was on the wall and EVs began to disappear from California's roads. I got enthused just as the automakers, CARB, the feds, and major environmental organizations ended their various flirtations with EVs.

The notion of the plug-in hybrid revived the hope of plugging in. I made my peace with the notion of a transition vehicle, with a plug and an engine. GM announced the Volt.IMG_0561

Then a couple of years ago Carlos Ghosn had some sort of epiphany and announced Nissan's belief in the inevitable electrification of cars, and Nissan's intention to lead the transition. He defied conventional thinking by moving directly toward the commercialization of all-electric cars. Hundreds of thousands of Nissan all-electric cars would be manufactured in Asia, America and Europe within a very few years.

I was thrilled. Consumers would soon begin to have a choice of vehicle types that include real electric cars. The marketplace, rather than bureaucrats and academics, would decide whether EVs have a place.

Government and industry began to plan for the rollout of plug-in cars with a plan to roll out public charging infrastructure. Level II charging stations are great for opportunity charging while shopping or working and should be widely diffused. But there wasn't much discussion about faster charging options, as it entails additional obstacles of cost and lack of standards and a presumption that cars wouldn't be fast-charge enabled. Although I knew it was technically feasible, it seemed we would have to wait. Although fast charging stations could enable long distance EV driving and are one way to meet the needs of urban purchasers of EVs who don't have parking with access to electricity, it is logically not a matter of first priority.

But just as I was pleasantly surprised to find Nissan's LEAF in the offing, so too fast charging is going to appear more rapidly than expected. The DOE grant to the Etec EV Project will put 260 Level III chargers in the ground in the next two years. Nissan's LEAF will initially appear with a fast charge connector, something that will surely be a purchase option in the future. (And is some compensation for the slow 3.3kW Level II charger in the first cars.) The iMiev, should Mitsubishi do an American release, also has a fast charge connector. And Th!nk announced intentions to enable fast-charging in its cars in an agreement with Aerovironment.

Once again, I celebrate that consumers will have options as we work our way toward the best solutions for quick charging. Better Place has pushed its proposed solution to the range IMG_0559dilemna - battery swap stations. One car maker, Renault, is making cars to spec, and BP has demonstrated the battery swap device in Japan. Swapping out an empty pack for a full one is enticing. It's proven to be enticing to the tune of hundreds of millions of dollars. If swap stations can be commercialized and the batteries can be charged at Level II speeds and below, they too might offer benefits and be part of the clean transportation quilt. But essentially off the shelf Level III fast charge stations, capable of delivering near-to-full charges in under 30 minutes, can be put in service within months. A Level III fast charger can be installed for about $100,000, compared to millions for a hydrogen station and perhaps $1 million for a battery swap station.

Which finally brings me to the fast charger I saw the other day in Vacaville, CA. Installed by PG&E with funding from the State, it sits beneath a solar PV array amongst a handful of Level II chargers, including small paddles for RAV4 EVs, AVCONs for RangerEVs, and aTesla charge station. The fast charger uses a Japanese connector (an American standard remains under consideration) which was easy to handle. I wish I had gotten a photo of the complete line-up of chargers under the solar array, because it is evidence of real-world solutions, available now, to make plug-in cars and renewable electricity a reality quickly.

Wired blogger takes on Nissan LEAF

Darryl Siry blogs over at Wired's Autopia. He's pretty plugged in, having worked at Tesla and consulted for CODA. He's a bit surprised, as are all of us, that Nissan has emerged as the first big automaker to manufacture a mass-produced electric car.

In his recent post, "In Race to Market, Nissan’s Electric Car Takes Shortcuts," Siry makes the point that CEO Carlos Ghosn's enthusiasm and charisma alone couldn't be enough to get such a job done so quickly. He writes that the urgency of the project "appears to have driven the company to take some shortcuts."

Sounds ominous. Ultimately, I'm not sure what he's actually getting at. Because Siry makes only two points. Neither of certain significance.

First, he suggests Nissan overstates the range of the LEAF. The 100 mile range cited by Nissan uses "a number tied to the most optimistic benchmark, the LA4 cycle." I don't doubt that this is true. The LEAF pack has fewer kWh than my RAV4 EV, but could be almost as heavy. Until we get final specs on weight, and drive the car around a bit, we won't know to what extent people will need to handicap official range numbers as they do EPA gasoline mileage ratings. Big surprise, your actual mileage may vary. Buyer beware!

Second, and the point on which the article devotes most attention, is whether Nissan is "cutting corners" by forgoing an active thermal management (HVAC) system for the batteries. Instead Nissan is relying on air circulation with a fan.

Now I don't know whether something about lithium, regardless of chemistry or packaging, will prove to require an active system. But I do know, interestingly and perhaps relevantly, that the electric car that has probably driven more miles than any other model, the Toyota RAV4 EV, does not have batteries with an active system. A fan circulates air. The Honda EV+ used the same Panasonic EV-95 NiMH battery modules with an active system, and those packs didn't last as long. Many EV+ packs were exchanged during their brief time on the road. At least with NiMH, Toyota's passive system worked out better in the real world. Of course the cooling system may have had nothing to do with the the difference in performance of the same batteries in two Japanese EVs, but we'll never know.

Siry notes the different approach being taken by GM for the Volt. They reverted to the T-shaped tunnel configuration for the battery used in the EV1. (How did that work out?)

I may be approaching this too simply, but the tunnel has never made sense to me. It eliminates the possibility of a fifth passenger seat. And I find it makes me feel confined. The batteries, too, enshrouded on three sides, require, apparently, an active thermal management system.

The RAV, on the other hand, suspends the batteries below the vehicle. There is minimal loss in cabin space and a large surface below helping dissipate heat, which is an issue with NiMH, too. And we find that the LEAF's battery pack, too, will be located under the floorboard. Maybe that's the key. Keep the batteries low and spread them wide.

I don't know, of course, but I'm willing to give Nissan the benefit of the doubt.

I'm giving Tesla and CODA and GM the benefit of the doubt, too.

 
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