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STRUCTURAL DYNAMIC DESIGN OF A ROTATING HYDROGEN CO-FIRED MULTI-FUEL EXTERNAL COMBUSTOR

机译:旋转氢共燃料多燃料外部燃烧器的结构动力设计

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摘要

In, the paper the authors will present the design and preliminary rotor-bearing dynamics test results for a hydrogen co-fired multi-fuel capable rotary burner. Hydrogen co-firing involves moving a stream of liquid or gaseous fuel through a zone of combusting hydrogen. The high-temperature of the hydrogen combustion zone initiates a vigorous combustion of the fuel stream moving through. Given the very high combustion temperatures of the rotating hydrogen flame fronts and close proximity of the rotating flame holder to the structural support, an integrated high temperature drive and bearing system was necessary to achieve reliable long term operation. Design space constraints for the rotary hydrogen burner head resulted in a drive and bearing system design that includes 150 mm diameter compliant foil journal bearing supports and an air driven reaction turbine closely integrated with the thrust foil bearings. Drive turbine design, rotor-bearing system dynamic tradeoffs and thermal management in the presence of high axial thermal gradients will be presented along with preliminary testing to design speeds of 7500 rpm (i.e, surface velocity of 100 m/s) under simulated thermal gradients with the rotating assembly face temperature reaching as high as 800°C.
机译:在此文中,作者将介绍设计和初步转子的动力学测试结果,该试验结果为氢共用多燃料的旋转燃烧器。氢共用涉及通过燃烧氢的区域移动液体或气体燃料流。氢气燃烧区的高温引发了燃料流的剧烈燃烧。考虑到旋转氢气火焰前沿的非常高的燃烧温度和旋转火焰保持器的靠近结构支撑,所需的高温驱动和轴承系统是实现可靠的长期操作。旋转氢气燃烧器头的设计空间约束导致驱动和轴承系统设计,包括150 mm直径柔顺的箔轴颈轴承支撑件和与推力箔轴承紧密地集成的空气驱动的反应涡轮机。在具有高轴向热梯度的情况下,在存在高轴向热梯度方面的转子涡轮机设计,转子系统动态权衡和热管理将在模拟热梯度下设计7500 rpm(即100米的表面速度)的设计速度进行初步测试旋转组件面温度高达800°C。

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