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HYDROGEN POWERED FREIGHTER AIRCRAFT-THE FINAL RESULTS OF THE GREEN FREIGHTER PROJECT

机译:氢气动力货运飞机 - 绿色货轮项目的最终结果

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This paper presents the results of the joint aircraft design project "The Green Freighter" that dealt with the investigation of hydrogenfueled freighter aircraft. This included conventional as well as blended-wing-body (BWB) aircraft designs. Within the scope of the project the Preliminary Aircraft Design and Optimization program PrADO was extended and applied to analyses of conventional and unconventional freighter aircraft designs. The investigations show that hydrogen as aviation fuel is feasible. Rising energy prices will make air transport more expensive than today, but hydrogen is a potential alternative fuel that keeps air traffic possible even if low-priced kerosene is no longer available. In addition, air traffic could become more environmentally friendly. Hydrogen-fueled regional freighter aircraft have up to 5 % smaller maximum takeoff masses and consume about 10 % less energy than the kerosene reference version despite their up to 7 % higher operating empty masses. The installation of large hydrogen tanks using the full fuselage cross section is significantly superior to an installation of removable tanks with smaller diameter. An unmanned freighter can use the cockpit volume for hydrogen storage and further helps to optimize the design. The investigations of the hydrogen-fueled BWB designs show possible savings of about 6.5 % in take-off mass, which is predominantly due to a 66.5 % lower fuel mass. The combination of necessary minimum aircraft size and low fuel mass causes a low wing loading. In effect, the BWB designs cannot make use of their theoretically very high aerodynamic performance during cruise flight.
机译:本文提出了联合飞机设计项目“绿色货轮”的结果,涉及污染污染船舶的调查。这包括常规以及混合 - 翼体(BWB)飞机设计。在该项目范围内,初步飞机设计和优化计划PRADO延长并应用于传统和非传统的货运飞机设计的分析。该研究表明,作为航空燃料的氢是可行的。能源价格上涨将使空气运输比今天更昂贵,但氢是一种潜在的替代燃料,即使低价煤油不再可用,也能保持空气交通。此外,空中交通可能会变得更加环保。氢气燃料的区域货运飞机最大的最大起飞群体最高可达5%,并且尽管经营的空质量高达7%,但仍比煤油参考版本的能量减少约10%。使用全机身横截面的大型氢气箱的安装显着优于具有较小直径的可拆卸罐的安装。无人驾驶货船可以使用驾驶舱的储氢量,并进一步帮助优化设计。氢气推动的BWB设计的研究表明,取出质量可能节省约6.5%,这主要是由于燃料质量较低的66.5%。必要的最小飞机尺寸和低燃料质量的组合导致低翼载荷。实际上,BWB设计不能在巡航飞行期间利用其理论上非常高的空气动力学性能。

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