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Ground and flight tests of an innovative fuel management system in a twin-engine helicopter

机译:双引擎直升机中创新燃料管理系统的地面和飞行测试

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The concept, functional aspects, and experiments based on lab prototypes of an innovative approach for aircraft fuel management have been developed in recent years. The main approach innovation is the replacement of the conventional central fuel computer with distributed and interconnected Smart Fuel Components (SFCs). This solution lowers the wiring weight, reduce the chance of a faulty connection, and simplify maintenance. This paper presents the experimental results obtained from ground and flight tests carried out on the implementation the above approach in a twin-engine helicopter. The SFC software is deployed in the helicopter in ground to be tested. Once the results obtained from the ground test are accepted, the same SFC software is tested in flight. The ground-tested and flight-tested functions for the fuel control system are: fuel supply, display of fuel levels, fuel transfer, refueling/defueling, measurement of height, density and flow of fuel, and monitoring/surveillance. The objectives of the ground and flight tests are to prove secure engine fuel supply for engine “two” during flight, reliable fuel gauging during flight, and the above selected functions as basis for system operability. This paper also describes the testing cases and criteria, and the main project achievements for ground and flight tests in a twin-engine helicopter.
机译:近年来,已经开发出了基于航空燃料管理创新方法的实验室原型的概念,功能方面和实验。创新的主要方法是用分布式和互连的智能燃料组件(SFC)代替传统的中央燃料计算机。该解决方案减轻了接线重量,减少了连接错误的机会,并简化了维护。本文介绍了通过在双引擎直升机上实施上述方法而进行的地面和飞行测试获得的实验结果。 SFC软件已部署在直升机中进行测试。一旦从地面测试获得的结果被接受,就将在飞行中测试相同的SFC软件。燃油控制系统的经地面测试和飞行测试的功能包括:燃料供应,燃料水平显示,燃料传输,加油/加油,高度,燃料密度和流量的测量以及监视/监视。地面测试和飞行测试的目的是证明飞行期间发动机“二”的发动机燃料供应安全,飞行期间可靠的燃料计量以及以上选定的功能,作为系统可操作性的基础。本文还描述了测试案例和标准,以及在双引擎直升机上进行地面和飞行测试的主要项目成果。

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