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Trans Europ Express
The Trans Europ Express, or Trans-Europe Express (TEE), was an international first-class railway service in western and central Europe that was founded in 1957 and ceased in 1995. At the height of its operations, in 1974, the TEE network comprised 45 trains, connecting 130 different cities,Haydock, David (June–July 1996). "The Second Demise of the TEE". '' Today's Railways'', p. 22–24. Platform 5 Publishing (UK). . from Spain in the west to Austria in the east, and from Denmark to Southern Italy. Origin The first services commenced on 2 June 1957 following an idea of F.Q. den Hollander, then president-director of the Dutch national railway company ( NS).60 Years On: What's Left of the TEE ''Today's Railways Europe'' issue 264 December 2017 pages 28-33 TEE was a network jointly operated by the railways of West Germany ( DB), France (SNCF), Switzerland (SBB-CFF-FFS), Italy ( FS) and the Netherlands. Although some trains passed through Belgium from the beginning, the Belgian na ...
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EuroCity
EuroCity, abbreviated as EC, is a cross-border train category within the European inter-city rail network. In contrast to trains allocated to the lower-level "IC" (InterCity) category, EC trains are international services that meet 20 criteria covering comfort, speed, food service, and cleanliness. Each EC train is operated by more than one European Union or Swiss rail company, under a multilateral co-operative arrangement, and all EC trains link important European cities with each other. The EuroCity label replaced the older Trans Europ Express (TEE) name for border-crossing trains in Europe. Whereas TEE services were first-class only, EuroCity trains convey first and second class coaches. The EuroCity schedule was designed with train pairs running one train in both directions, thus resulting in a more frequent service than the TEE, which normally ran only once a day. Criteria The criteria EuroCity trains are required to meet include the following: * train through two or m ...
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Streamliner
A streamliner is a vehicle incorporating wikt:streamline, streamlining in a shape providing reduced air resistance. The term is applied to high-speed railway trainsets of the 1930s to 1950s, and to their successor "High-speed rail, bullet trains". Less commonly, the term is applied to fully Bicycle fairing, faired upright and recumbent bicycles. As part of the Streamline Moderne trend, the term was applied to passenger cars, trucks, and other types of light-, medium-, or heavy-duty vehicles, but now vehicle streamlining is so prevalent that it is not an outstanding characteristic. In Land speed record, land speed racing, it is a term applied to the long, slender, custom built, high-speed vehicles with enclosed wheels. Trains Before World War II Europe The first high-speed streamliner in Germany was the "Schienenzeppelin", an experimental propeller driven single car, built in 1930. On 21 June 1931, the car set a speed record of on a run between Berlin and Hamburg. In ...
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Overhead Lines
An overhead line or overhead wire is an electrical cable that is used to transmit electrical energy to electric locomotives, trolleybuses or trams. It is known variously as: * Overhead catenary * Overhead contact system (OCS) * Overhead equipment (OHE) * Overhead line equipment (OLE or OHLE) * Overhead lines (OHL) * Overhead wiring (OHW) * Traction wire * Trolley wire This article follows the International Union of Railways in using the generic term ''overhead line''. An overhead line consists of one or more wires (or rails, particularly in tunnels) situated over rail tracks, raised to a high electrical potential by connection to feeder stations at regular intervals. The feeder stations are usually fed from a high-voltage electrical grid. Overview Electric trains that collect their current from overhead lines use a device such as a pantograph, bow collector or trolley pole. It presses against the underside of the lowest overhead wire, the contact wire. Current collectors are ...
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Diesel Multiple Unit
A diesel multiple unit or DMU is a multiple-unit train powered by on-board diesel engines. A DMU requires no separate locomotive, as the engines are incorporated into one or more of the carriages. Diesel-powered single-unit railcars are also generally classed as DMUs. Diesel-powered units may be further classified by their transmission type: diesel–mechanical DMMU, diesel–hydraulic DHMU, or diesel–electric DEMU. Design The diesel engine may be located above the frame in an engine bay or under the floor. Driving controls can be at both ends, on one end, or in a separate car. Types by transmission DMUs are usually classified by the method of transmitting motive power to their wheels. Diesel–mechanical In a diesel–mechanical multiple unit (DMMU), the rotating energy of the engine is transmitted via a gearbox and driveshaft directly to the wheels of the train, like a car. The transmissions can be shifted manually by the driver, as in the great majority of first-gen ...
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Diesel Locomotive
A diesel locomotive is a type of railway locomotive in which the prime mover is a diesel engine. Several types of diesel locomotives have been developed, differing mainly in the means by which mechanical power is conveyed to the driving wheels. Early internal combustion locomotives and railcars used kerosene and gasoline as their fuel. Rudolf Diesel patented his first compression-ignition engine in 1898, and steady improvements to the design of diesel engines reduced their physical size and improved their power-to-weight ratios to a point where one could be mounted in a locomotive. Internal combustion engines only operate efficiently within a limited power band, and while low power gasoline engines could be coupled to mechanical transmissions, the more powerful diesel engines required the development of new forms of transmission. This is because clutches would need to be very large at these power levels and would not fit in a standard -wide locomotive frame, or wear too quic ...
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Direct Current
Direct current (DC) is one-directional flow of electric charge. An electrochemical cell is a prime example of DC power. Direct current may flow through a conductor such as a wire, but can also flow through semiconductors, insulators, or even through a vacuum as in electron or ion beams. The electric current flows in a constant direction, distinguishing it from alternating current (AC). A term formerly used for this type of current was galvanic current. The abbreviations ''AC'' and ''DC'' are often used to mean simply ''alternating'' and ''direct'', as when they modify ''current'' or ''voltage''. Direct current may be converted from an alternating current supply by use of a rectifier, which contains electronic elements (usually) or electromechanical elements (historically) that allow current to flow only in one direction. Direct current may be converted into alternating current via an inverter. Direct current has many uses, from the charging of batteries to large power sup ...
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Alternating Current
Alternating current (AC) is an electric current which periodically reverses direction and changes its magnitude continuously with time in contrast to direct current (DC) which flows only in one direction. Alternating current is the form in which electric power is delivered to businesses and residences, and it is the form of electrical energy that consumers typically use when they plug kitchen appliances, televisions, fans and electric lamps into a wall socket. A common source of DC power is a battery cell in a flashlight. The abbreviations ''AC'' and ''DC'' are often used to mean simply ''alternating'' and ''direct'', as when they modify ''current'' or ''voltage''. The usual waveform of alternating current in most electric power circuits is a sine wave, whose positive half-period corresponds with positive direction of the current and vice versa. In certain applications, like guitar amplifiers, different waveforms are used, such as triangular waves or square waves. Audio a ...
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Diesel Engine
The diesel engine, named after Rudolf Diesel, is an internal combustion engine in which ignition of the fuel is caused by the elevated temperature of the air in the cylinder due to mechanical compression; thus, the diesel engine is a so-called compression-ignition engine (CI engine). This contrasts with engines using spark plug-ignition of the air-fuel mixture, such as a petrol engine (gasoline engine) or a gas engine (using a gaseous fuel like natural gas or liquefied petroleum gas). Diesel engines work by compressing only air, or air plus residual combustion gases from the exhaust (known as exhaust gas recirculation (EGR)). Air is inducted into the chamber during the intake stroke, and compressed during the compression stroke. This increases the air temperature inside the cylinder to such a high degree that atomised diesel fuel injected into the combustion chamber ignites. With the fuel being injected into the air just before combustion, the dispersion of the fuel is une ...
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VT 11
VT11 may refer to: * Polikarpov VT-11, a Soviet fighter aircraft prototype * Torpedo Squadron Eleven, a unit of the United States Navy * Vermont Route 11 * VT11, a vector graphics terminal containing a PDP-11 The PDP-11 is a series of 16-bit minicomputers sold by Digital Equipment Corporation (DEC) from 1970 into the 1990s, one of a set of products in the Programmed Data Processor (PDP) series. In total, around 600,000 PDP-11s of all models were sold, ...
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Rheingold (train)
The ''Rheingold'' ('Rhinegold') was a named train that operated between Hook of Holland, near Rotterdam, and Geneva, Switzerland (or Basel before 1965), a distance of , until 1987. Another section of the train started in Amsterdam and was coupled to the ''Hoek'' cars in Utrecht. The ''Rheingold'' ran along the Rhine River via Arnhem, Netherlands, and Cologne, Germany, using special luxury coaches. It was named after Richard Wagner's ''Das Rheingold'' opera, which romanticized the Rhine. From 1965 until the train's discontinuation in 1987, the ''Rheingold'' was a first-class-only Trans Europ Express (TEE) train. Route Geneva ( Gare de Cornavin) – Basel SBB – Freiburg – Baden-Baden – Karlsruhe – Mannheim – Mainz – Cologne – Düsseldorf – Duisburg – Utrecht and then in separate trains continuing (still as the ''Rheingold'') to both Hook of Holland and Amsterdam. At Hook of Holland, the train had timed connections for ship service to and from Harwich, England. ...
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