According to the car's manufacturer's data, the Karl needs 4,9 l of LPG per 100 km of highway driving, 7,1 l/100 km in the city and 5,7 l/100 km on average. Just for comparion, when running on petrol it requires on average 4,6 l/100 km, but don't be fooled by the sheer figures since autogas is usually by approx. 50 percent cheaper than its conventional counterpart. Given the fuel economy figures and current fuel prices, the only kind of motor vehicle cheaper to run than a Karl LPGTEC would probably be... a moped. As for CO2 emissions, the autogas-powered pocket-sized Opel spews out 93 g/km, which is less than the special ECO version running on petrol, which emits 99 g/km.
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Strangely, the joint-venture was announced several years ago. Then, just as the Crossland X and C3 Aircross hit showrooms, PSA decided to buy GM Europe – the company that owns Vauxhall. So this pair are a preview of a future strategy in which all Vauxhalls, Peugeots, Citroens and DSs will draw from shared engineering, like the VW Group’s brands have done for years.
The Karl's overall shape reminds of the Chevy Spark, but Opel made sure people will distinguish it via it's typical "frowned smile" front end, oblique taillamps that flow into the quarter panels as well as three sharp creases on the sides to suggest the automaker's precision and sharp design orientation. The interior looks light and minimalistic but it can be packed with a lot of tech and will accommodate up to five passengers.
The parent company PSA is also preparing the transition to the electric age: By 2025, the carmaker intends to offer offshoots with electric or hybrid drive for all 40 models of its brands. It will start in 2019 with all-electric versions of the Peugeot 208 (reservations opened in the UK last month) and the DS3 Crossback. An electric version of the Peugeot 2008 will follow in 2020. PSA’s plug-in hybrid offensive starts in 2019 with a corresponding offshoot of the DS7 Crossback, the PHEV versions of the Peugeot models 3008 and 5008, the Citroën C5 Aircross and the Grandland X mentioned above.
During the 1930s, the Rüsselsheim plant was never given a major role in Germany's war preparations. Neither was Ford's plant in Cologne considered trustworthy enough for a big assignment, such as tank manufacture, in view of their earlier foreign associations. Initially, of course, the war was thought to be a short one settled in Germany's favour. Auto plants were shut down, to conserve resources, but not converted to other jobs. As was common with much of the production in Nazi Germany during the war, slave labor of deported civilians and Soviet POWs was utilized in the Opel factories.
The new four-cylinder, oversquare one-litre water-cooled Opel OHV engine weighed only 96 kg and was the first all-new engine developed by Opel since before the war. The side-mounted camshaft was driven not through gear-cogs but using a single chain with a hydraulic tensioner, the valve train employing rocker-arms and light-weight hollow rods. The arrangement was low on weight and on friction, permitting engine speeds above 6,000 rpm. The pistons were formed from an aluminium-alloy and incorporated a bimetal expansion strip to ensure uniform thermal expansion. The three-bearing forged crankshaft was of more traditional construction. The carefully designed aluminium inlet manifold provided for efficient feed of the fuel-mixture to the cylinders and helped provide the engine with good fuel economy characteristics.
The extra-light, all-aluminium engines, together with optimization of the front and rear axles, also contribute to the low total weight. The particularly compact three-cylinder petrol engines weigh around 15kg less than the previous generation of similarly powerful four-cylinder units. Highly unusual in the small-car-sector is the new Corsa’s aluminium engine bonnet, which although longer, saves 2.4kg in comparison to the previous model’s bonnet made of steel. The Insignia flagship was previously the only model in the Opel range with an aluminium bonnet. The seats also have been put on a diet. The new optimized seat structure saves a total of 10kg – 5.5kg at the front, 4.5kg at the rear. New lighter insulating material was used for fine tuning. Altogether the measures result in a weight reduction that, in combination with optimum aerodynamics and the efficient powertrains, will lead to a considerable reduction in fuel consumption and CO2 emissions.

Descrierile caracteristicilor și ilustrațiile pot viza sau indica echipamente opționale care nu sunt incluse în livrarea standard. Informațiile conținute au fost exacte la momentul publicării. Ne rezervăm dreptul de a face schimbări în design și echipamente. Culorile afișate sunt doar culori aproximative. Echipamentele opționale ilustrate sunt disponibile contra unui cost suplimentar. Disponibilitatea, caracteristicile tehnice și echipamentele furnizate pe vehiculele noastre pot varia sau pot fi disponibile numai în anumite țări sau pot fi disponibile numai la costuri suplimentare. Pentru informații exacte privind echipamentelesi dotarile de pe vehiculele noastre, vă rugăm să contactați Opel Southeast Europe LLC – Reprezentanţă România sau partenerul dvs. Opel.

*Fuel economy values are determined through CO2 measurement in accordance with the latest ECE R101/SANS 20101 standards, as prescribed by South African government, conducted in a controlled environment and were correct at the time this disclaimer was published, which is subject to change. The specifications are for comparison purposes between the different vehicle models available in the S.A market which are all tested in the same manner, specific driving cycles and controlled environment.

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Later, an 1800 cc version wis introduced for the Kadett/Astra GTE model. This range o ingines wis an aa uised for later models o the Corsa/Nova, an the mid-sized Cavalier/Ascona. The Kadett D wis an' a' equipped wi a 1600 cc diesel ingine that wis possible tae drive as cheap as 5.0 L/100 km, an a cairy-ower 1196cc OHV ingine. It wis an aa produced as IDA Kadett in Kikinda, Yugoslavie.
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