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1.
公开(公告)号:US20240034463A1
公开(公告)日:2024-02-01
申请号:US18257610
申请日:2022-01-25
Inventor: Yongjie SHI , Taihang MA , Zhiyuan HU , Guohua XU , Yang LIU
IPC: B64C27/00 , G10K11/178
CPC classification number: B64C27/001 , G10K11/17883 , G10K11/17875 , B64C2027/004 , B64C2220/00
Abstract: A helicopter active noise suppression device integrating a sound array and on-propeller control, which relates to the technical field of helicopter noise reduction, includes an annular loudspeaker array, a plurality of force exciters, an error microphone, an Active Noise Cancellation (ANC) controller, a cockpit sensor, and an airborne computer. The annular loudspeaker array is arranged at a rotor hub and unsteady force exciters are arranged at each blade trailing edge to construct a sound field in an reversed phase to the sound wave of an original sound field with an ANC principle, thereby counteracting the noise and realizing the noise reduction of all-domain and all-type helicopter noise.
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公开(公告)号:US20240419874A1
公开(公告)日:2024-12-19
申请号:US18702840
申请日:2023-04-28
Inventor: Zhiyuan HU , Yongjie SHI , Guohua XU , Yang LIU , Jiahao ZHU
IPC: G06F30/28 , G06F111/10 , G06F113/08 , G06T1/20
Abstract: A graphics processing unit (GPU)-based numerical simulation system and method for a helicopter flow field (FF). The GPU-based system includes a central processing unit (CPU) and a GPU. The CPU is configured to initialize a moving overset grid according to a preset configuration file and the mesh files of a to-be-simulated helicopter; determine face batch information according to mesh blocks in the moving overset grid; determine an overset interpolation relationship between the mesh blocks and an interpolation mapping index according to the mesh files at a current simulation moment; and perform FF information exchanging between the mesh blocks according to the overset interpolation relationship, the interpolation mapping index, and FF information of the mesh blocks, to obtain to-be-simulated helicopter FF information. The GPU computes the FF information of the mesh blocks in the motion nested mesh according to surface batch information by using a computational fluid dynamics (CFD) method.
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