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821.
《中国航空学报》2023,36(2):100-110
Within the linear framework, the Modal Electromechanical Coupling Factor (MEMCF) is an important indicator to quantify the dynamic conversion of mechanical energy and electrical energy of piezoelectric structures. It is also an important tool to guide the piezoelectric damping design of linear structures. Advanced aircraft often fly in maneuvers, and the variable working conditions induce drastic changes in the load level on structures. Geometric and contact nonlinearities of thin-walled structures and joint structures are often activated. To achieve a good vibration reduction effect covering all working conditions, one cannot directly use linear electromechanical coupling theory to instruct the piezoelectric damping design for nonlinear structures. Therefore, this paper defines the Nonlinear Modal Electromechanical Coupling Factor (NMEMCF) and proposes the corresponding numerical method for the first time to quantitatively evaluate the electromechanical coupling capability of nonlinear piezoelectric structures. Three candidate definitions of the NMEMCF are given, including two frequency definitions and one energy definition. The energy definition is the most promising one. It is not only applicable to both conservative and dissipative nonlinear structures but also compatible with the linear MEMCF. In addition, based on the energy formula, the NMEMCF can be obtained by only performing one nonlinear modal analysis in the open-circuit state. The analytical findings and the numerical tool are validated against two piezoelectric structures with different types of nonlinearities. A strong correlation among the NMEMCF, geometric parameters, and energy dissipation is observed. The results confirm that the proposed NMEMCF captures the physics of the electromechanical coupling phenomenon associated with nonlinear piezoelectric structures and can be used as an essential design indicator of piezoelectric damping, especially for variable working conditions. 相似文献
822.
随着霍尔推力器的大力发展,碘工质霍尔推力器越来越受到研究人员的重视。深入了解碘工质霍尔推力器放电室内部过程,为优化推力器性能和拓展空间应用提供依据。建立了二维PIC/DSMC/MCC混合方法模型,结合鞘层和二次电子发射模型,根据碘工质特性,加入解离-电离过程,在定壁温条件下,针对200 W碘工质霍尔推力器放电室内部过程开展了数值模拟,考察其放电室内等离子体的多场耦合特性以及与壁面的相互作用过程。研究其放电通道内部的等离子体行为,分析放电室内的等离子体参数,获取其离子数密度、离子轴向运动速度、电子温度等特征参数,将模拟结果和氙工质进行比较。结果表明:相较于氙工质,碘工质霍尔推力器存在解离区,宽度约为2 mm,位于近阳极区之后、电离区之前。 相似文献
823.
824.
825.
《中国航空学报》2023,36(2):201-212
Distributed Electric Propulsion (DEP) aircraft use multiple electric motors to drive the propulsors, which gives potential benefits to aerodynamic-propulsion interaction. To investigate and quantify the aerodynamic-propulsion interaction effect of the wing section, we built a DEP demonstrator with 24 “high-lift” Electric Ducted Fans (EDFs) distributed along the wing’s trailing edge. This paper explores and compares the aero-propulsion coupling characteristics under various upstream speed, throttle, and EDF mounting surface deflection angles using a series of wind tunnel tests. We compare various lift-augmentation power conditions to the clean configuration without propulsion unit under the experiment condition of 15–25 m/s freestream flow and angles of attack from ?4° to 16°. The comparison of computational results to the experimental results verifies the effectiveness of the computational fluid dynamic analysis method and the modeling method for the DEP configuration. The results show that the EDFs can produce significant lift increment and drag reduction simultaneously, which is accordant with the potential benefit of Boundary Layer Ingestion (BLI) at low airspeed. 相似文献
826.
《中国航空学报》2023,36(5):157-174
The Secondary Air System (SAS) plays an important role in the safe operation and performance of aeroengines. The traditional 1D-3D coupling method loses information when used for secondary air systems, which affects the calculation accuracy. In this paper, a Cross-dimensional Data Transmission method (CDT) from 3D to 1D is proposed by introducing flow field uniformity into the data transmission. First, a uniformity index was established to quantify the flow field parameter distribution characteristics, and a uniformity index prediction model based on the locally weighted regression method (Lowess) was established to quickly obtain the flow field information. Then, an information selection criterion in 3D to 1D data transmission was established based on the Spearman rank correlation coefficient between the uniformity index and the accuracy of coupling calculation, and the calculation method was automatically determined according to the established criterion. Finally, a modified function was obtained by fitting the ratio of the 3D mass-average parameters to the analytical solution, which are then used to modify the selected parameters at the 1D-3D interface. Taking a typical disk cavity air system as an example, the results show that the calculation accuracy of the CDT method is greatly improved by a relative 53.88% compared with the traditional 1D-3D coupling method. Furthermore, the CDT method achieves a speedup of 2 to 3 orders of magnitude compared to the 3D calculation. 相似文献
827.
在时变耦合复杂动态网络同步的基础上研究复杂网络节点间的保密通信,并以Lorenz方程为复杂网络节点的状态方程为例,验证了复杂网络的同步在保密通信中应用的有效性。 相似文献
828.
在石油开采与钻探领域,脉冲发生器作为旋转导向系统井下信号传输系统的重要组成部分,提高压力脉冲幅值有助于提升旋转导向系列产品的市场竞争力。为了揭示其工作原理及提高压力脉冲幅值,基于计算流体动力学,利用用户自定义函数(UDF)、动网格技术、非牛顿流体模型,借助Fluent平台对往复节流式正脉冲发生器进行了动态数值实验。利用离散形式的动量方程将主阀体与电磁阀的被动运动转变为主动运动,选择适用于k-ε湍流模型的赫-巴非牛顿流体本构方程描述泥浆,提高了计算的收敛性与运动的可控性。基于非牛顿流体的流固耦合方法,更真实地模拟了脉冲器在井下工作过程。结果表明限流环内径越小或入口排量越大,则压力脉冲幅值与信号发生频率越大。 相似文献
829.
830.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2023,71(1):129-143
We present the variation of unusual atmospheric phenomena, aerosols, to understand the preseismic irregularities for two major earthquakes in Japan. We consider aerosol optical depth and Angstrom exponent data retrieved from the Moderate Resolution Imaging Spectroradiometer (MODIS) instrument onboard the Terra satellite to establish possible connections between earthquakes and the generation of aerosols. Variation of the aerosol parameters shows significant changes before the April 15, 2016, Kumamoto earthquake ( km) and the November 21, 2016, Fukushima earthquake ( and km), where M indicates the Richter magnitude and h indicates the focal depth. To identify the source of the aerosol particles, we use the Hybrid Single-Particle Lagrangian Integrated Trajectory model (HYSPLIT-4). This model uses both Lagrangian and Eulerian approaches to compute trajectories and establish a source-receptor relationship. We compute backward trajectories to check whether the aerosol generated near the epicenter is due to the preseismic processes or is transported from other areas. From our results, we conclude the fine-mode aerosols are generated in the vicinity of the epicenter, 3–7 days before the earthquakes. 相似文献