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Ground-based inerting of a Boeing 737 center wing fuel tank

机译:波音737中心翼燃料箱的地面惰性。

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A series of aircraft flight and ground tests were performed by the Federal Aviation Administration and the Boeing Company to evaluate the effectiveness of ground-based inerting (GBI) as a means of reducing the flammability of center wing fuel tanks (CWTs) in the commercial transport fleet. Boeing made available a Boeing 737-800 for modification and testing. The fuel tank was instrumented with gas sample tubing and thermocouples and tests were performed inerting the CWT to 8 percent oxygen to allow for a measurement of fuel tank inerting and heating. Results showed that under quiescent conditions the oxygen concentration in the fuel tank remained somewhat constant, keeping the CWT inert (below 10- to 12-percent oxygen by volume) for relatively long periods of time. Certain wind conditions and flight conditions created cross venting within the CWT that allowed for significant increases in the oxygen. A modification to the vent system created a significant increase in the benefit of the GBI even at low to moderate fuel loads.
机译:一系列的飞机飞行和地面试验是由美国联邦航空管理局和波音公司进行评估的有效性陆基惰性(GBI)作为商业运输减少了中央翼油箱(CWTS)的可燃性的手段舰队。波音提供一架波音737-800进行修改和测试。燃料箱用气体取样管和热电偶并测试仪表进行惰化CWT至8%的氧,以允许燃料箱惰化和加热的测量。结果表明,静态条件下在燃料箱中的氧浓度保持一定程度的恒定,(按体积计低于10到12%的氧),保持CWT惰性对于相对长的时间周期。某些风力条件和飞行条件的CWT内产生交叉通风,允许在氧显著增加。到通风系统的修改,即使在低创造了GBI的利益而显著上升到中度的载油量。

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