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Kamis, 07 Januari 2010

Plug-in Cars & Trucks Part I


Make, Model & Type
Features
Status
Views
A1 Sportback
PHEV


5 door, 4 passenger, AER 31-62 mi (normal vs efficiency mode), 0-60 mph 8 sec, top speed 120 mph, 20kW electric motor, 1.4L engine. Efficiency mode has slower acceleration and all-electric speed to 62 mph.






Target Intro: 2011
Progress: concept car at Paris Motor Show 2008

source: Audi


Audi
e-tron
EV


2 door sports car based on the R8, 2 passenger, range 248 km (154 mi), 0-62mph 4.8 sec, top speed 200 km/h (124mph), 42.4 kWh Li-ion battery pack, 4 hub motors with a combined output of 230kW, Audi announced in Nov 2009, plans to build road capable prototype in 2010 followed later by full production.
Target Intro: Not yet announced.
Progress: Concept car unveiled at 2009 Franfurt Motor Show

source: Audi &
Edmunds


BAIC
BE701
EV


4-door sedan, range 200km(120mi), 0–100km/h in 15 sec, top speed of 160km/h (100mph), fully self-developed EV by Beijing Automotive Industry Holding Corporation (BAIC) under subsidiary Beijing New Energy Automotive. BAIC also announced investment plans of $334M for a clean energy vehicle plant and target to build 20,000-40,000 vehicles / year in 2011
.
Target Intro: Not yet announced
Progress: Prototype shown in Shanghai Nov 2009

source:
China Car Times & Edmunds


BMW
MINI E
EV


Conversion of MINI 2-door hardtop to 2-seat EV with drivetrain & battery from AC Propulsion, range 150 mi, top speed 95 mph, 35 kWh Li-ion battery back uses 5000+ laptop style batteries, 150kW electric motor, 220Nm torque, 3-4.5 hr recharge on fast charge (240V 48A/32A), 26.5 hr on 120V 12A, wt 3230 lbs













Target Intro: no plan announced for mass production
Progress: Trial fleet of 500 cars in US on 1-year leases to general public, first car delivered on lease May 22, 2009

source: BMW


BMW
Vision
PHEV


Vision EfficientDynamics, all-new design 2-door 4 seater, 31 mi AER, total range 400 mi, 0-60 mph 4.8 sec, top speed 155 mph, recharge 2.5 hr on 240V, 2 electric motors (1 each axle), 356 hp, 560 lb-ft peak, 1.5L 3-cyclinder turbo diesel engine, 3000+ lbs, Cd 0.22








Target Intro: no plan announced for mass production
Progress: concept car shown at Frankfurt Auto Show

source: BMW



4 door crossover, 5 passenger, range 400 km (249 mi), 0-60mph 8 sec, top speed 100 mph, BYD Li-ion Fe battery, 10 min recharge to 50% SOC, 4 power combinations using front & rear motors on some models: 75kW, 75+40kW, 160kW, 160+40kW
Target Intro:China & US 2010, Europe 2010
Progress: demo units now

source: BYD


Plug In America - Plug-in Vehicle Tracker

Plug In America is providing the following for informational purposes only. They do not endorse or recommend any specific vehicle manufacturer or distributor.

http://www.pluginamerica.org/vehicles/

Vehicle Finder: Cars & Trucks
2 & 3 Wheeler Vehicles
Commercial Vehicles

Latest major changes:

Added Ginetta G50 EV, Rolls Royce Electric Phantom, Volvo C30 EV, Mavizen TTX02, Myers Motors Duo, SABA Carbon Zero

Revised Lumeneo SMERA, Tata Indica EV, Tesla Roadster, Arcimoto Pulse, Smith Newton

Key terms: EV: Electric Vehicle, PHEV: Plug-in Hybrid Electric Vehicle (includes Range Extended Electric Vehicles), AER: All-electric range, AVAILABLE: can be ordered by the general public and units are shipping now, Mule: development vehicle, normally in body of existing vehicle, can be driven to test key components, SOC: state-of-charge

What vehicles get listed? Many companies have announced a vehicle, or have produced artwork or vehicle renderings. To be included on this list, companies must have completed a concept, demonstration, or mule vehicle. They also support safety and have elected to include vehicles which have been safety certified or intend to be certified. They do not include aftermarket conversions which have not been safety certified.

Ford Enters Electric Car Field

Ford Motor Co. will start a two-year test program of testing electric cars and vans in Germany starting in January. The cars that Ford is using are the Focus and the Transit van. Ford Motor Company is preparing to introduce battery-powered models as early as next year.



They have picked 25 vehicles to be driven under normal traffic conditions in Cologne, where Ford’s European division is based, said Ferdinand Dudenhoeffer, director of the Center for Automotive Research at Germany’s University of Duisburg-Essen, which is overseeing the 15 million-euro ($22 million) study.

Ford is going to pick drivers which will include researchers and customers selected by Ford. Data from the models will be monitored on computers so that they can simulate testing of more than 10,000 vehicles.

The 25 vehicles will be driven under normal traffic conditions in Cologne, where Ford’s European division is based, said Ferdinand Dudenhoeffer, director of the Center for Automotive Research at Germany’s University of Duisburg-Essen, which is overseeing the 15 million-euro ($22 million) study.

Bernd Meier, a spokesman for Ford in Cologne, said the study is Ford Motor Company's first in mainland Europe. The company is already trying out battery-powered vehicles in London, Meier said.

Ford, the first U.S. automaker to offer a hybrid model, said on Dec. 8 that it may spend $300 million to $500 million on factories in its home state of Michigan to build electric vehicles and batteries. The Dearborn-based company has a target of rolling out an electric-powered version of the Transit Connect commercial van next year, followed by an electric Focus in 2011.

Local utility RheinEnergie AG will supply vehicle-charging stations for the test, which is being financed by the German government’s economic-stimulus package.

Rabu, 06 Januari 2010

Algae Biodiesel

This is a really exciting story about the most incredible ENERGY coming on the market, OIL from ALGAE. What makes this so exciting is it is not about a fuel that is five years, or ten years, or even fifteen years down the road. Suneco Energy is presenting their technology and end product Right Now!!!

Algae Power Video!


CHINO, CA - July 29, 2009: J.B. Hunt Transport Services, Inc. and SunEco Energy today announced the signing of a cooperative agreement, which could lead to J.B. Hunt becoming a significant purchaser of biodiesel made from natural algae oil using SunEco Energy's proprietary technology.

http://www.youtube.com/watch?v=FLdD5ek22ns

Gary Whicker , Senior Vice President of engineering for J.B.Hunt states: " At this time Transportation fuel is virtually 100% oil-based," "Finding other energy sources to put in our fuel tanks is good business for our company and our nation. SunEco's innovative process to produce renewable fuel supplies from algae grown in American ponds is an intriguing new option. Our initial experience with their algae-based biodiesel is promising, and we are excited about the opportunity to work with SunEco Energy to move towards a lower cost, less carbon intensive, and more secure fuel supply for our business."

Dan Gautschi, Chairman and CEO of SunEco Energy states: “ We are very pleased that J.B. Hunt, a leading transportation company, took the steps to test our fuel in their trucks and are taking further steps to become a leader in the use of renewable fuels, The SunEco technology has been in development for over five years, with an operating pilot facility Over the past two years which has allowed us to continually produce barrels of oil rather than beakers, enabling us to provide oil for tests in a variety of applications."

SunEco's utilizes naturally occurring algae strains in a monitored setting to produce an oil product suitable for making renewable transportation fuels (biodiesel) and other oil-based products. One of the products is a high-quality animal feed supplement. SunEco is currently trying to raise additional funding to enable the large scale deployment of the technology in U.S. and international markets, including a large development in the Imperial Valley region of California.

SunEco's Algae Conversion Video


SunEco Energy is committed to leading the deployment of commercially viable bio-products made from natural algae strains. The Company's primary objective is to deliver reliable clean biodiesel products for transportation fuels and also livestock feeds, thus ending the trade-off between food and or fuel. Soon the company intends to expand its product range to include a full scope of products currently obtained from petroleum, such as, plastics and dyes, and inks as well as nutri-ceuticals.


SunEco’s in-depth understanding of the microalgae organism, and particularly how it behaves under certain conditions, allows the company to utilize naturally occurring algal species, without genetic modification, to produce and retain lipids which are basic building blocks needed to harvested oil. Rather than modify the algae, SunEco is able to modify the algal environment to cause the organism to behave in the desired manner – namely the production and retention of lipids, or fats, used to make oil.


At this time SunEco has a large Advantage, in time and in Scale. SunEco has gone through 18 pilot test harvests. This gave the company time to enhance and improve its process, also unlike other companies who have beakers of biodiesel. SunEco has barrels of the biodiesel, to test in numerous applications including some very successful on-road tests with a large interstate trucking company (J.B.Hunt).


Oil production sets SunEco apart today, and will continue to let SunEco outdistance the competition in the years ahead as they scale up production facilities to produce large quantities of high quality renewable biodiesel. The SunEco process was designed with scale in mind. Using naturally occurring algal strains, SunEco can utilize large open ponds for the growth medium. The SunEco process equipment has been designed to economically handle large volumes of alginated water. The large scale and high productivity of the process allows SunEco to produce at a very competitive unit rate.


SunEco Energy is now fully engaged in a large scale deployment of the technology in the Imperial Valley region of Southern California. The Company has acquired a large fish farm in the region which is being converted to a large algae harvesting and processing facility once all necessary approvals have been obtained. SunEco will undergo a dramatic growth phase as we move to become the leading supplier of renewable and sustainable algae based bioproducts.

Selasa, 05 Januari 2010

Resources

Top Electric Cars - Part II

• Fisker Karma



The Fisker Karma is a sporty looking, car that has the power to back up its looks. The Fisker comes with a Q-drive Technology. It has an innovative gas/ electric motor combination. In a way it is a hybrid, the electric motors (2) are the only mechanical drive to the wheels. The gas motor is mated with a generator that feed the batteries only if the batteries need to be recharged. The batteries have a range of 50 or so miles then the gas motor/generator comes on giving the Fisker a range of 300 miles, At a 100 miles per gallon U.S. The Fisker has a top end speed of 125 miles per hour, zero to 60 in 5.8 sec.. The twin electric motors produce 200+ Horse Power at 960 ft-lbf torque. The model shown at the car show was a convertible, with a folding hard top.

• Nissan Leaf




The Nissan Leaf

The EV-11 (Leaf) uses an all electric drive train, the motor is 110 Horse Power, has a lithium-ion Battery pack. The Leaf has a range of 100 miles in City driving. The Leaf also has Navigation system, remote control from your cell phone and remote monitoring from your cell phone through Nissan secure data center. The expected price of the Leaf, depending on options, will be between $25,000 to $33,000.

Nissan Leaf will employ an advanced IT system. Connected to a global data center, the system provides support, information, and entertainment for drivers 24 hours a day.

The dash-mounted monitor displays the Leaf's remaining power, in addition to showing a selection of nearby charging stations.

User’s mobile phones can be used to turn on air-conditioning, the heater and re-set charging functions even when the vehicle is powered down. An on-board remote-controlled timer can also be pre-programmed to recharge batteries.

• PHOENIX SUT SUV



Production Vehicle Preliminary Specifications

Dimensions & Weights

Overall Length 195.5 inches / 4,965 mm
Overall Width 74.8 inches / 1,900 mm
Overall Height 69 inches / 1,755 mm
Wheelbase 120.5 inches / 3,060 mm

Gross Vehicle Weight 5,820 lbs. / 2,639.9 kg
Curb Vehicle Weight 4,820 lbs. / 2,186.2 kg
Payload 1,000 lbs. / 453.6 kg

Chassis: Front Suspension: Independent torsion bar and double wishbone
Front Brakes: Ventilated disc

Rear Suspension: Rigid axle and 5-link coil springs
Rear Brakes: Disc
Steering: Rack & pinion

Battery Pack: Battery Type (Power Rating): Lithium Titanate Battery (35 kWh)

Performance:

0-60 m.p.h.: Less than 10 seconds
Factory Set Top Speed: 95 m.p.h.
Braking: 60 to 0 m.p.h. in an estimated 150 feet

Range:

Urban (UDDS): 100+ miles per charge
Highway (HFEDS): 100+ miles per charge

Charging Time: On-Board Vehicle 6.6KW Charger: 5 to 6 hours
                        Off-Board High-Power 250KW Charger: Under 10 min. to 95% SOC


• Chevy Volt


The Chevy Volt is an electric hybrid car. It has an electric drive only,  has the range of 40 miles on a full battery charge. When the batteries are discharged, the gas motor drives a generator to supply the electric motor the power needed to keep going, this gives the volt a range of many hundreds of miles. The first year’s volume, by GM’s own calculations, is 10 000 units.

 The idea behind the Volt is wonderful. The car doesn’t have to trade off power between motor and engine from second to second according to some exquisitely complicated mechanism or scheme. Instead, the Volt makes electricity the main course. Today’s hybrids put the motor and engine in parallel so that they juggle their power contributions to the wheels according to many different parameters, including speed, battery charge, and the load on the engine. But the Volt links the power plants in series. That way the motor powers the wheels, and the engine merely engages, when needed, to recharge the vehicle’s enormous lithium-ion battery. How enormous? If you drive no more than 65 kilometers (about 40 miles) and have an electric socket handy at both ends of your commute, you won’t burn a drop of gasoline.

One problem I see in the near future is that inexpensive algae fuel will be available and will require no change in car engine design. The algae product will be mixed in with the fuel we pump now, and will eventually replace most of the oil imported from the Middle East.

Top Electric Cars - the Good and Bad

• The Aptera 2e.


The Aptera 2 Series (formerly the Aptera typ-1) is a high-efficiency passenger three-wheeled automobile produced by Aptera Motors. The California based company is currently allowing residents of California to pre-order the car.

The first variant of the Series 2 slated for production is the Aptera 2e, a battery electric car. Aptera clams the 2e will accelerate from zero to sixty in under ten seconds, and is able to reach a top speed of 85+ miles per hour. The Aptra 2h, a plug-in-hybrid electric car will be priced from the mid-$20,000 to the $40,000 range, depending on options.



The first Aptera 2h used a small water cooled EFI gasoline engine, with a closed loop Oxygen feedback and a catalytic converter coupled with a 12kw generator/starter. With a five gallon tank the Aptera would have had a range of 600 to 700 miles, compared to the 120 mile range of the Aptera 2e. The Aptera 2h is a series hybrid. The engine would not connect to the drive train it is used to only recharge the batteries.

As with any hybrid, fuel economy is depends on the trip length and the battery charge at the start of the trip. For trips of less than 50 miles on a full battery charge the charging motor will not start at all. Resulting in the same energy use as a pure electric car will get. If on the other hand the car was not plugged in and batteries were not charged the Aptrea would get 130 miles per U.S. gallon. Aptrea Motors quotes 300 miles per U.S. gallon when starting with a fully charged battery on a 120 mile trip.


• Myers Motors Duo



Safety Features:

Spherical body design (like a motorcycle helmet)

Layered composite construction, low center of gravity

Three-point shoulder safety harness / Automotive safety glass

Emergency parking brake / Inertia switch / Emergency Power Off button

Hazard warning lights / Full dash board instrumentation/Seat with head restraint

Curb side driver door / Interior door lock

Benefits:

No more Gas station trips needed

Reduced or eliminated global warming impact

Gets more attention than a $100,000 sports car

Zero emissions for cleaner, healthier air

Access to HOV carpool lanes at 76 mph*

Motorcycle parking and fees

First on first off the ferry

Most energy efficient vehicle on the road

Charge in convenience of your own garage

General:

Onboard battery charger 110 Volt

DC Motor/Controller

Three-wheeled vehicle registers, insures and parks as a motorcycle

72-inch wheel base, 57 inches vehicle height

75 mph top speed, 50-60 mile range

Construction:

A-arm front suspension / Single sided swing arm rear suspension

Cog-belt drive, Three-wheel disc brakes, Spring over hydraulic shocks, 13-inch wheels


Comforts:

Power windows, AM/FM stereo & CD player standard

Two power ports for laptop & cell phone

Heater/defroster, fan operated / Vents (3)

6 cf Trunk storage /Adjustable seat back

Tilt steering wheel / Rack & pinion steering


Additional Features:

30+ hp

Lithium-Ion batteries


Battery life: Approx. 2500 charge/discharge cycles at 50 mile range

Charging:

$20 of electricity for 1000 miles of driving at $0.10 / kWh


About 4-5 miles of driving per hour of charging at 110/20 amp outlet (depending on driving habits)

About 15-20 miles of driving per hour of charging at 220/30 amp outlet (depending on driving habits)


• Mitsubishi i-MiEV



MIEV motors are constructed using an in-wheel motor rotor, an in-wheel motor, a rotor bracket, stator bracket and inverter directly behind the brakes. The batteries can be charged from a standard 15 A/200 V car charger in seven hours and with a three phase electric charger in 25 minutes. The batteries are located under the floor pan and in the Colt uses 22 li-lion modules to produce a cumulative 325 volt. The design allows for an entirely electric vehicle, or a hybrid using the batteries to supplement a traditional internal combustion motor.

According to Mitsubishi, locating the motor behind the wheel offers the company three distinct advantages.

1. It allows for a true four wheel drive system without need of transmission, drive shafts, differential gears or other complex mechanical components. Mitsubishi Motors has been one of the few companies to persist in offering 4WD on vehicles other than SUVs since the technology's heyday in the 1980s.

2. Placing the drive system entirely in the wheels allows for greater freedom of design for interior stylists.

3. The space created facilitates the storage of the batteries, allowing for extra modules to be fitted which would offer increased power and range compared to previous electric vehicles.


• Coda Sedan



• STYLING: The Coda has better street presence than photos show, but it's hardly cutting edge. Style could be a drawback for buyers, who Coda thinks will move up to a full electric car.

• PERFORMANCE: In cut-and-thrust New York City traffic, we had our foot in it and the car kept up just fine. We can't comment on highway performance; the most we saw was about 45 mph.

• SEATING & INTERIOR: The front seats were comfortable for our 20-minute trip, though surprisingly low to the floor. The beltline is low too, so visibility was fine. The rear had enough leg room a full-size adult male human. Styling and plastic quality was acceptable.

• INSTRUMENT PANEL: The new dash will include both digital instruments and advanced airbags, which had the longest lead time of any component. The company must still crash another 30 or so cars to validate them.

• REFINEMENT: The din of New York exterior noise was fairly well suppressed, though some electric motor whine was apparent. A remarkably noisy heater/air-conditioner pump would be replaced in production cars.

• BUILD QUALITY: This is the biggest question for Coda: Can Chinese-designed and built cars offer the high standards of design and build quality that Western buyers require? Panel gaps were wide but consistent, and we can only say nothing fell off during our tenure in the car..

• SUMMARY: This first Coda may never attract fashion-forward car buyers, but the greenest of Southern Californians likely look for different qualities in carbon-free cars.

• PRICE: A list price of $45,000 seems absurd for a not-very-stylish compact car, but the Coda is eligible for a $7,500 Federal tax credit. The state of California may add its own credit as well.



BYD e6


So far, all we know is that the E6 will be a 5 seater with an acceleration of 0 to 100 kph of around 10 seconds. Top speed should be top speed of 160 kph (100 mph), and the battery pack, which is located under the rear passenger seats, will be based on BYD's own lithium-ion iron phosphate technology. Range per charge is expected to be 300 km (186 miles).

But most impressive of all:

"BYD projected the battery had a life of 2,000 cycles, for a lifetime range of about 600,000 km (373,000 miles)"

Charging of the battery will take the night with 220V, but the E6 electric car can also take a fast charge that can bring the battery to 80% SOC in about 15 minutes.

::BYD Introduces Electric E6 Crossover at Beijing Auto Show, ::Beijing 2008: BYD e6 electric MPV, possible production EV in two years

Update December 2008: GM is Weeping: BYD F3DM Plug-in Hybrid Goes On Sale in China, 3 Years Before Volt


• Think City


Think City is short and boxy, with doe-eyed headlights and a nifty glass hatchback. The City has a top speed of around 65 miles per hour, a range of more than 120 miles in city driving, and a full complement of safety features such as ABS and airbags. The cabin is comfortable, well-built and handsome.

Think promises that up to 95 percent of the City is recyclable. Even the body panels are color-impregnated plastic. This makes them tough and dent resistant, and also eliminates the toxins that are released during the painting process. Seeking to counter General Motors' highly publicized EV1 electric car, Ford purchased Pivco in 1999.

Ford pumped tens of millions of dollars into what it curiously renamed the Think Car. California’s electric-vehicle mandate was first watered down to include hybrid vehicles, Then quashed completely in 2003 under continuous threat of legal action by major auto manufacturers such as DaimlerChrysler and General Motors.

Recharging the Think brand

Sale of Think was not due to the electric-car company lack of potential. There was always a very dedicated following amongst Ford for Think. Think still has a good relationship with the American car company and many parts on the Think City, such as the steering wheel, are still sourced from Ford. For all you fans of automotive trivia: Think taillights are identical to those once used in the Lamborghini Diablo supercar.

Think was bought for a paltry $15 million two years ago. Of the initial investment, Development has moved quickly because they had a 90 percent finished car and a good factory."

Early last year additional funds totaling approximately $93 million were raised for development. The company plans to sell its cars almost entirely via the Internet. Customers will buy the car, but lease the batteries in a system, the mobility-pack fee would be $100 to $200 per month (depending on the market) and would include the batteries, car insurance, carbon offsets and even Web service. An owner could text message his/her car and receive messages back with service updates and diagnostics. The batteries would be replaced and recycled when the vehicle detects lost their optimum efficiency levels.