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Development of a super-pressure balloon with a diamond-shaped net
Authors:Y Saito  I Iijima  Y Matsuzaka  K Matsushima  S Tanaka  K Kajiwara  S Shimadu
Institution:1. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency, 3-1-1 Yoshinodai, Chuo, Sagamihara, Kanagawa 252-5210, Japan;2. Fujikura Parachute Company Ltd., 115-25 Udagasaku, Funehiki, Tamura, Fukushima 963-4312, Japan;3. Nakada Industrial Co. Ltd., 880-3 Shitoro, Shimada, Shizuoka 428-0019, Japan
Abstract:The essential reason of the lobed-pumpkin shaped super-pressure balloon to withstand against the high pressure is that the local curvature of the balloon film is kept small. Recently, it has been found that the small local curvature can also be obtained if the balloon is covered by a diamond-shaped net with a vertically elongated shape. The development of the super-pressure balloon using this method was started from a 3-m balloon with a polyethylene film covered by a net using Kevlar ropes. The ground inflation test showed the expected high burst pressure. Then, a 6-m and a 12-m balloon using a polyethylene film and a net using the Vectran were developed and stable deployment was checked through the ground inflation tests. The flight test of a 3000 m3 balloon was performed in 2013 and shown to resist a pressure of at least 400 Pa. In the future, after testing a new design to relax a possible stress concentration around the polar area, test flights of scaled balloons will be performed gradually enlarging their size. The goal is to launch a 300,000 m3 super-pressure balloon.
Keywords:Scientific balloons  Super-pressure balloons  Membrane structures
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