884 resultados para Ground vehicles


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Les actuacions de bombers en operatius d'extinció d'incendis, habitualment es fan per inèrcies històriques. Ara, si diem: “Per a l'extinció d'un incendi de un vehicle heu d'estacionar l’autobomba a una certa distància, pendent amunt i a contravent, refrigerar a distància el vehicle amb con d'atac, i evitar els extrems del vehicle”, segurament més d'un pensarà o expressarà en veu alta “Això deu ser una broma, oi? Si hem estat apagant cotxes cada dia a la nostra manera… quin és el problema?". Bé, doncs n’hi ha uns quants, de problemes. Podem considerar un incendi en un vehicle com una bomba de temps amb un ble que s'encén abans de l'arribada de la dotació de bombers. Les actuacions inicials en aquests incendis han de centrar-se en la desactivació d'aquesta metxa. Els incendis en vehicles presenten una múltiple varietat perills reals. Els canvis en el disseny i la construcció d'automòbils exigeixen un canvi en la manera com els serveis de bombers s’enfronten als incendis de vehicles. Els nous materials i components incorporats a la indústria automobilística s'han traduït en un millor rendiment, una major economia de combustible, una millor resistència al xoc i en una reducció de les emissions de gasos. Malauradament, alguns d'aquests mateixos materials i components fan que l’extinció d’un automòbil modern sigui més difícil i perillosa que en vehicles més vells. En l’actualitat, un incendi d’un vehicle comporta més fums, més toxicitat, més temperatura, elements sotmesos a pressió, risc de projecció d’elements i la possibilitat d’energies alternatives... en definitiva, molts més riscos. Per donar una resposta adequada a aquest augment del risc, organitzativament cal augmentar les mesures preventives de seguretat, i operativament cal una estratègia d’extinció més cautelosa, tàctiques menys agressives i un major nivell de protecció personal.

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Una de les solucions per a minimitzar els costos de producció o d'emmagatzematge és automatitzarne la logística interna. Per dissenyar les aplicacions corresponents és convenient poder validar-les amb un prototipatge. Això ha motivat la realització d'aquest projecte, on s'ha obtingut un prototip d'AGV (automated guided vehicle) que rep les ordres per Bluetooth i, mitjançant uns infrarojos per poder seguir unes línies al terra, és capaç d'anar des del punt inicial fins on se li ha encarregat i tornar al punt inicial. Aquest vehicle pot servir de base per a la implementació d'AGV orientats a aplicacions reals i, per tant, per a la construcció de sistemes més grans i que poden ser utilitzats en plantes de producció, laboratoris, magatzems, ports i d'altres aplicacions diverses.

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The purpose of this research project is to study current practices in enhancing visibility and protection of highway maintenance vehicles involved in moving operations such as snow removal and shoulder operations, crack sealing, and pothole patching. The results will enable the maintenance staff to adequately assess the applicability and impact of each strategy to their use and budget. The report’s literature review chapter examines the use of maintenance vehicle warning lights, retroreflective tapes, shadow vehicles and truck-mounted attenuators, and advanced vehicle control systems, as well as other practices to improve visibility for both snowplow operators and vehicles. The chapter concludes that the Manual on Uniform Traffic Control Devices does not specify what color or kind of warning lights to use. Thus, a wide variety of lights are being used on maintenance vehicles. The study of the relevant literatures also suggests that there are no clear guidelines for moving work zones at this time. Two types of surveys were conducted to determine current practices to improve visibility and safety in moving work zones across the country and in the state of Iowa. In the first survey of state departments of transportation, most indicated using amber warning lights on their maintenance vehicles. Almost all the responding states indicated using some form of reflective material on their vehicles to make them more visible. Most participating states indicated that the color of their vehicles is orange. Most states indicated using more warning lights on snow removal vehicles than their other maintenance vehicles. All responding state agencies indicated using shadow vehicles and/or truck-mounted attenuators during their moving operations. In the second survey of Iowa counties, most indicated using very similar traffic control and warning devices during their granular road maintenance and snow removal operations. Mounting warning signs and rotating or strobe lights on the rear of maintenance vehicles is common for Iowa counties. The most common warning devices used during the counties’ snow removal operations are reflective tapes, warning flags, strobe lights, and auxiliary headlamps.

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Understanding Iowa’s geology and hydrology provides the critical information needed to ensure that our natural resources are properly utilized and protected. Gaining this knowledge and helping Iowans apply it is the core function of your Iowa Geological Survey (IGS).

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Iowa Department of Natural Resources fact sheet on water.

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Iowa Department of Natural Resources fact sheet on IGS Rock library

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Iowa Department of Natural Resources fact sheet on IGS Rock library

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Iowa Department of Natural Resources fact sheet on exploring the mid-continent rift.

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Iowa Department of Natural Resources fact sheet on Geographic Information Systems.

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Using LiDAR to Scan Iowa from Aircraft

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House File 2754 requires the Iowa Department of Transportation to deliver a report to the Governor and legislative service agency regarding flexible fueled vehicles registered in Iowa. The report shall include: 1. The number of flexible fuel vehicles according to year of manufacture; 2. the number of passenger vehicles according to year of manufacture; and 3. the number of light pickup trucks according to year of manufacture.

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Plutonium and (90)Sr are considered to be among the most radiotoxic nuclides produced by the nuclear fission process. In spite of numerous studies on mammals and humans there is still no general agreement on the retention half time of both radionuclides in the skeleton in the general population. Here we determined plutonium and (90)Sr in human vertebrae in individuals deceased between 1960 and 2004 in Switzerland. Plutonium was measured by sensitive SF-ICP-MS techniques and (90)Sr by radiometric methods. We compared our results to the ones obtained for other environmental compartments to reveal the retention half time of NBT fallout (239)Pu and (90)Sr in trabecular bones of the Swiss population. Results show that plutonium has a retention half time of 40+/-14 years. In contrast (90)Sr has a shorter retention half time of 13.5+/-1.0 years. Moreover (90)Sr retention half time in vertebrae is shown to be linked to the retention half time in food and other environmental compartments. These findings demonstrate that the renewal of the vertebrae through calcium homeostatic control is faster for (90)Sr excretion than for plutonium excretion. The precise determination of the retention half time of plutonium in the skeleton will improve the biokinetic model of plutonium metabolism in humans.

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House File 2754 requires by Feb. 1 of each year the Iowa Department of Transportation shall deliver a report to the governor and legislative services agency regarding flexible fuel vehicles registered in Iowa. This report reflects the flexible fuel vehicles registered in Iowa as of Jan. 27, 2009.