2 Sizing and Mission Analysis of Multirole Short-Haul All-Electric Seaplane for Sustainable Aviation
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Sizing and Mission Analysis of Multirole Short-Haul All-Electric Seaplane for Sustainable Aviation

机译:用于可持续航空的多拉短途全电水厂的规模和任务分析

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Seaplanes are the aircraft that can take-off and land from water. There are lots of emissions of CO2 and GHGs by aviation industry which can be lower down by the use of electric engines. This paper summarizes the sizing and mission analysis of multirole short-haul all-electric seaplane. There are plenty of opportunities for this type of aircraft as the infrastructural requirements for the operation are much lower compared to those for the conventional aircraft. In this study, an electric seaplane is sized to meet twin operational requirements of a multi-role mission, viz., short-haul air transportation (SHAT) and Air Sea Rescue (ASR). It is seen that though the battery energy density required for the critical mission, viz. ASR, is extremely high ($sim$ 2 kWhr/kg) but for SHAT, it is just 0.625 kWhr/kg, for comparable mass of fossil fuel. In comparison to a conventional aircraft using fossil fuels, the all-electric aircraft results in mitigation of 3600 kg CO2 emission in each ASR mission, thus establishing it as a potential solution for sustainable aviation.
机译:海坡是可以从水中起飞和降落的飞机。有很多有限公司的排放量 2 通过使用电动发动机可以降低航空工业的GHG。本文总结了多拉空短途全电力厂的规模和任务分析。随着传统飞机的那些,这种类型的飞机有很多机会,随着操作的基础设施要求远低得多。在这项研究中,一架电救生业的尺寸适用于符合多角色任务,QIZ的双重操作要求,短途空运(SHAT)和空中救援(ASR)。可以看出,尽管临界任务所需的电池能量密度,但是。 ASR非常高($ SIM 2 KWHR / kg),但对于SHAT,它仅为0.625 kWhr / kg,可用于化石燃料的可比质量。与使用化石燃料的传统飞机相比,全电机导致缓解3600公斤CO 2 每个ASR任务中的排放,从而将其作为可持续航空的潜在解决方案建立。

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