Aichi Rapid Transit
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Aichi Rapid Transit
, formally the is a magnetic levitation train line in Aichi Prefecture, Japan, near the city of Nagoya. While primarily built to serve the Expo 2005 fair site, the line now operates to serve the local community. Linimo is owned and operated by the and is the first commercial maglev in Japan to use the High Speed Surface Transport (HSST) type technology. It is also the world's first uncrewed commercial urban maglev. Linimo was the fourth overall commercial urban maglev operated in the world, predated by the Birmingham Maglev (1984–1995), the Berlin M-Bahn (1989–1991) and the Shanghai Maglev (opened in 2004). Specifications The linear motor magnetic-levitated train has a top speed of , floating above the track when in motion, and is intended as an alternative to conventional metro systems, not high-speed operation. The line has nine stations and is long, with a minimum operating radius of and a maximum gradient of 6%. The line uses automatic train control (ATC) and a ...
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Rapid Transit
Rapid transit or mass rapid transit (MRT), also known as heavy rail or metro, is a type of high-capacity public transport generally found in urban areas. A rapid transit system that primarily or traditionally runs below the surface may be called a subway, tube, or underground. Unlike buses or trams, rapid transit systems are railways (usually electric railway, electric) that operate on an exclusive right-of-way (transportation), right-of-way, which cannot be accessed by pedestrians or other vehicles, and which is often grade-separated in tunnels or on elevated railways. Modern services on rapid transit systems are provided on designated lines between rapid transit station, stations typically using electric multiple units on rail tracks, although some systems use guided rubber tires, magnetic levitation (''maglev''), or monorail. The stations typically have high platforms, without steps inside the trains, requiring custom-made trains in order to minimize gaps between train a ...
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Linear Motor
A linear motor is an electric motor that has had its stator and rotor "unrolled", thus, instead of producing a torque (rotation), it produces a linear force along its length. However, linear motors are not necessarily straight. Characteristically, a linear motor's active section has ends, whereas more conventional motors are arranged as a continuous loop. A typical mode of operation is as a Lorentz-type actuator, in which the applied force is linearly proportional to the current and the magnetic field (\vec F = I \vec L \times \vec B). Linear motors are by far most commonly found in high accuracy engineering applications. It is a thriving field of applied research with dedicated scientific conferences and engineering text books. Many designs have been put forward for linear motors, falling into two major categories, low-acceleration and high-acceleration linear motors. Low-acceleration linear motors are suitable for maglev trains and other ground-based transportation applicat ...
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Aichi Loop Line
The is a Japanese railway line connecting Okazaki Station in Okazaki and Kōzōji Station in Kasugai, operated by the . The company or the line is abbreviated as . This is the only line the company operates. Despite its name, the line is not a true loop, but a north-south line situated east of Nagoya, which can be considered as an unclosed loop (with the JR Tokaido line and Chuo Line serving as the portions of the circle). The Aichi Loop Railway is a third sector company, with shares held by public sector such as Aichi Prefecture, the city of Toyota, and also by private companies. Unlike typical third-sector lines in Japan, the Aichi Loop Line makes a profit, since the line functions as a commuter rail line for nearby Toyota Motor factories. Basic data *Operators, distances: **Aichi Loop Railway (Category 1) ***Okazaki - Kōzōji: 45.3 km (ca. 28.1 mi.) **Japan Freight Railway Company (Category 2) ***Okazaki — Kita-Okazaki: 5.3 km (ca. 3.3 mi.) ***Freight operation ...
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Toyota, Aichi
, formerly known as Koromo, is a city in Aichi Prefecture, Japan. , the city had an estimated population of 426,162 and a population density of 464 people per km2. The total area was . It is located about 35 minutes from Nagoya by way of the Meitetsu Toyota Line. Several of Toyota Motor Corporation's manufacturing plants, including the Tsutsumi plant, are located here. The longstanding ties between the Toyota Motor Corporation and the town of Toyota-shi, formerly known as , gave the town its current name. The city's flag (and seal), is a unicursal hexagram. Geography Toyota is located in north-central Aichi Prefecture, and is the largest city in the prefecture in terms of area. The city area is mountainous to the north, with peaks averaging around 1000 feet (328 m) in height along its northern border with Nagano and Gifu Prefectures. Much of the mountainous northern portion of the city is within the Aichi Kōgen Quasi-National Park. Toyota is within a two-hour drive of Nagoya.Jac ...
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Nagakute, Aichi
is a city located in Aichi Prefecture, Japan. , the city had an estimated population of 61,503 in 24,352 households, and a population density of 2,854 persons per km2. The total area of the city is . Nagakute is a member of the World Health Organization’s Alliance for Healthy Cities (AFHC). Geography Nagakute is located in the Owari Hills of central Aichi Prefecture, at an elevation of 43 to 184 meters, and is bordered by the metropolis of Nagoya to the west. Thirteen rivers flow through the city. Climate The city has a climate characterized by hot and humid summers, and relatively mild winters (Köppen climate classification ''Cfa''). The average annual temperature in Nagakute is 15.5 °C. The average annual rainfall is 1641 mm with September as the wettest month. The temperatures are highest on average in August, at around 27.9 °C, and lowest in January, at around 4.0 °C. Demographics Per Japanese census data, the population of Nagakute has increased dr ...
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Higashiyama Line
The is a rapid transit, subway line, which forms part of the Nagoya Municipal Subway system in Nagoya, Aichi, Nagoya, Japan. Officially, the line is referred to as . It runs from Takabata Station, Takabata in Nakagawa-ku, Nagoya, Nakagawa Ward to Fujigaoka Station (Aichi), Fujigaoka in Meito-ku, Nagoya, Meitō Ward, all within Nagoya. The Higashiyama Line's color on maps is Windsor yellow; its stations carry the letter "H" followed by a number. All the stations accept manaca, a rechargeable contactless smart card. The first section of the line opened in 1957. The line links Nagoya Station and Sakae Station (Aichi), Sakae, the Central business district, CBD of Nagoya. As such, the line has the highest ridership among Nagoya Municipal Subway Lines. On arriving at Nagoya Station (from Fujigaoka), departing Nagoya Station (to Fujigaoka), or at Fujigaoka Station, the announcements are made in five languages, namely Japanese, English, Korean, Chinese, and Portuguese, in that order. ...
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Nagoya Municipal Subway
The is a rapid transit system serving Nagoya, the capital of Aichi Prefecture in Japan. It consists of six lines that cover of route and serve 87 stations. Approximately 90% of the subway's total track length is underground. The subway system is owned and operated by Transportation Bureau City of Nagoya and, like other large Japanese cities including Tokyo and Osaka, is heavily complemented by suburban rail, together forming an extensive network of 47 lines in and around Greater Nagoya. Of them, the subway lines represent 38% of Greater Nagoya's total rail ridership of 3 million passengers a day. In 2002, the system introduced Hatchii as its official mascot. __TOC__ Lines and infrastructure The six lines that comprise the Nagoya subway network are, for the most part, independent. However, Meikō Line services partially interline with the Meijō Line, and the operations of both lines are combined. Therefore, there are in fact five distinct services on the subway. They are mos ...
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Pphpd
Passengers per hour per direction (p/h/d), passengers per hour in peak direction (pphpd) or corridor capacity is a measure of the route capacity of a rapid transit or public transport system. Definition The corridor capacity in the passenger transport field refers to the maximum number of people which can be safely and comfortably transported per unit of time over a certain way with a defined width. The corridor capacity does not measure the number of vehicles which can be transported over such way, since the nuclear objective of passenger mobility is to transport passengers, not vehicles. In terms of quantities defined within the International System of Units, the corridor capacity may be measured in units of \mathrm^\cdot \mathrm^, ''i.e.'', the maximum number of passengers per second per meter of the corridor's width. An approximately equivalent concept in physics is volumetric flux. Directional flow Many public transport systems handle a high directional flow of passe ...
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Semi-monocoque
The term semi-monocoque or semimonocoque refers to a stressed shell structure that is similar to a true monocoque, but which derives at least some of its strength from conventional reinforcement. Semi-monocoque construction is used for, among other things, aircraft fuselages, car bodies and motorcycle frames. Examples of semi-monocoque vehicles Semi-monocoque aircraft fuselages differ from true monocoque construction through being reinforced with longitudinal stringers. The Mooney range of four seat aircraft, for instance, use a steel tube truss frame around the passenger compartment with monocoque behind. The British ARV Super2 light aircraft has a fuselage constructed mainly of aluminium alloy, but with some fibreglass elements. The cockpit is a stiff monocoque of "Supral" alloy, but aft of the cockpit bulkhead, the ARV is conventionally built, with frames, longerons and stressed skin forming a semi-monocoque."Pilot" magazine, June 1985 pages 5-6 Peter Williams' 1973 Fo ...
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Chubu HSST Development Corporation
High Speed Surface Transport (HSST) is a Japanese maglev train system which uses electromagnetic levitation technology. The Linimo line in Aichi Prefecture, Japan, uses a descendant of HSST technology. File:HSST-Double-Beam.png File:HSST-Struct.png See also * SCMaglev * Transrapid * Krauss-Maffei Transurban - Electromagnetic suspension technology had been transferred from Krauss-Maffei. * ROMAG ROMAG was a personal rapid transit (PRT) system produced by the American company Rohr, Inc. It featured a linear induction motor that was arranged to provide both traction and suspension in a magnetic levitation system. ROMAG was developed from a ... References Bibliography * Driverless Maglev {{Japan-rail-transport-stub ...
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