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VALIDATION OF CHARM WAKE METHODOLOGY FOR COMPUTATION OF LOADS AND VIBRATIONS

机译:用于计算载荷和振动的振动觉醒方法学的验证

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Validation of the CDI-developed CHARM advanced rotor wake methodology for rotorcraft was performed using Bell's comprehensive rotorcraft analysis code, COPTER, interfaced with the CHARM wake module. The analysis results were compared against flight test data to validate the CHARM free wake model. Several different four-bladed Bell helicopters, including M407, M427, and M429, were selected for the correlation and validation study. The predicted trim conditions, hub loads, and blade loads were compared against flight test data for the helicopter validation cases. The 4/rev components of the hub loads computed with the CHARM free wake correlated better with flight test data than those computed with COPTER'S free wake model at high advance ratio flight regimes. The 4/rev hub moments significantly affect fuselage vibration and are important factors for helicopter design. The ability to predict more accurate vibratory hub loads is a major advantage of the CHARM free wake model over the existing COPTER free wake model.
机译:CDI开发的适用于旋翼机的CHARM高级旋翼机尾流方法论的验证是通过使用贝尔的全面旋翼机分析代码COPTER与CHARM尾流模块接口进行的。将分析结果与飞行测试数据进行比较,以验证CHARM自由唤醒模型。相关和验证研究选择了几种不同的四叶贝尔直升机,包括M407,M427和M429。针对直升机验证案例,将预测的修剪条件,轮毂负载和叶片负载与飞行测试数据进行了比较。在高空速比飞行状态下,使用CHARM无尾迹计算出的轮毂负载的4 / rev分量与飞行测试数据的相关性要比用COPTER's无尾迹模型计算出的更好。 4 / rev轮毂力矩会显着影响机身振动,并且是直升机设计的重要因素。与现有的COPTER无尾流模型相比,CHARM无尾流模型的主要优点是能够预测更准确的振动轮毂负载。

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