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General Electric will supply the propulsion engines and Eaton Corporation the hydraulics. BAE Systems Controls of the USA will develop the airship’s avionics and flight control systems. A small scale (1:8) experimental airship known as ‘Joey’ was already built and had its maiden flight in October 1999.Ĭontraves Space AG of Switzerland is to develop the fibre-composite nose cone. The development took place at the dock in Briesen-Brand near Berlin, where the production hangar (360m long, 210m wide and 107m high) is the world’s largest free-standing hangar. The CL 160 could also be used in transporting humanitarian and emergency aid – one CL 160 could transport food for 25,750 people for 14 days in a relief programme. Described as a ‘flying crane’, the CL 160 will be able to carry payloads weighing up to 160 metric tons, with a volume of up to 3,200 cubic metres, to a range of up to 10,000 km, without the need for airfields or extensive road systems. Heavy loads, for example, large turbine casings, can be carried directly from the factory to their intended operation location, without the airship touching the ground and almost independently of local infrastructure. In August 2002, work on Cargolifter’s other major programme, the CL 75 lifting balloon was also halted. In June 2002, the company made an application for insolvency. In May 2002, the CL 160 development was halted due to financial problems and the status of the programme is uncertain. The CargoLifter CL 160 is a semi-rigid airship under development by CargoLifter AG, a German company that plans to build airships capable of carrying enormous loads for the bulk air freight market. The vast scale of CargoLifter's hangar base is shown here relative to the Statue of Liberty. The CargoLifter CL 160 derives its name from its designed payload capacity of 160t.ĬargoLifter AG have constructed a headquarters hangar capable of housing their CL 160 fleet at a site located on the former military airfield of Brand, 60km south of Berlin. The CL 160 is able to lift very heavy awkward loads, and deliver them to difficult locations, such as mountainous or jungle terrain where traditional logistics would struggle. The cylindrical part was analyzed as one large model, containing the five arches, the internal wind bracing, and the external torsional bracing as structural elements.The CargoLifter AG CL 160 super-heavy lift cargo airship was designed to transport very heavy objects more economically, being able to deliver its payload directly to the desired 'drop off' point. For the analysis, the building has been divided into three parts: the membrane, the cylindrical part, and the doors. The permanent actions contain the weight of all the building elements.
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For the loading, a distinction has been made between permanent actions and normal and special variable actions. This chapter reports loading, analysis, and design. They form a semicircle in plan and a quarter-segment of a circle in elevation. At both ends of the building are the doors that consist of two fixed and six moving elements. The central part of the hangar is of a cylindrical shape and consists of five steel arches covered with a textile membrane. With a span of 210 m, a height of 107 m, and a length of 363 m, the hanger will be one of the largest halls in the world. Therefore, a new hangar for two airships is going to be built. Nowadays a new generation of airships, the CargoLifter CL 160, is developed.