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141.
《中国航空学报》2020,33(3):893-901
In this paper, the effect of different amount of protrusion on various parameters in rotor–stator system was experimentally studied by measuring CO2 concentration and pressure, in order to obtain the optimal protrusion amount. The parameters of different dimensionless sealing flow were measured under the condition that the annulus Reynolds number was 4.39 × 105 and the rotating Reynolds number was 1.05 × 106. The results show that the change of the amount of protrusions has little effect on the static pressure in the cavity, and the static pressure change near the sealing ring is almost negligible. But the total pressure and sealing efficiency increase first and then decrease with the increase of the amount of protrusion. The variation of power consumption is the same. A complex vortex structure will appear at the high radius region when the protrusion is installed. On the other hand, the protrusion can effectively reduce the minimum sealing flow of the rotor–stator cavity. Furthermore, considering the sealing efficiency and power consumption, the best range of the protrusion amount is about 36. The ratio near this range can optimally balance the alleviation of the gas ingestion and the reduction of the power consumption. 相似文献
142.
带有传动机构的翼段颤振半主动抑制 总被引:1,自引:0,他引:1
尝试了将磁流变阻尼器安装于机翼操纵面传动机构上的布局,并由此建立了非定常气动力下机翼-操纵面-传动机构的气动弹性动力学方程,利用on—off控制算法对系统进行颤振抑制,并且研究了控制延迟时间、控制电压以及阻尼器滞回宽度等参数对控制效果的影响。计算机仿真结果表明,控制延迟时间和控制电压对颤振临界速度有较明显的影响,而阻尼器的滞回宽度的影响不大,在本文的阻尼器安装布局和控制策略下,系统的颤振临界速度至少提高了17%。 相似文献
143.
144.
微型仿生扑翼飞行器是一种新概念的微型飞行器。但它不是对传统飞行器的简单几何缩小,当其特征尺度缩小到一定尺度时,系统内各种因素的相对影响将产生质的变化。针对微型仿生扑翼飞行器的机械扑翼系统,包括微驱动器、仿生翅、运动系统和动力源等,本文进行了尺度效应分析。分析结果表明,当尺寸减小时,仿生飞行更容易实现:通过共振能实现高频运动,微静电、电磁和压电驱动器都能满足扑翼系统功率需求。这为设计和研制微型仿生扑翼飞行器提供了理论依据。 相似文献
145.
146.
针对非对称变翼飞行器的姿态控制问题,提出了一种复合控制系统的设计方法。基于非对称变翼的姿态动力学模型,将变翼作为一种主动控制方式,提出了非对称变翼的使用条件,并采用逻辑函数设计了气动舵和变翼的复合控制分配策略。利用扩张干扰观测器估计了变翼过程中的扰动,采用全局滑动模态的变结构控制方法,设计了姿态复合控制系统,抑制了变形过程中参数的剧烈变化和变形引起的附加扰动。通过仿真,一方面与固定翼飞行器对比,校验了非对称变翼控制的有效性;另一方面通过气动数据的正负拉偏,验证了控制器对气动参数的摄动有良好的鲁棒性。 相似文献
147.
148.
Reconfigurable Flight Control Design for Combat Flying Wing with Multiple Control Surfaces 总被引:2,自引:2,他引:0
With control using redundant multiple control surface arrangement and large-deflection drag rudders,a combat flying wing has a higher probability for control surface failures.Therefore,its flight control system must be able to reconfigure after such failures.Considering three types of typical control surface failures(lock-in-place(LIP),loss-of-effectiveness(LOE) and float),flight control reconfiguration characteristic and capability of such aircraft types are analyzed.Because of the control surface redundancy,the aircraft using the dynamic inversion flight control law already has a control allocation block.In this paper,its flight control configuration during the above failures is achieved by modifying this block.It is shown that such a reconfigurable flight control design is valid,through numerical simulations of flight attitude control task.Results indicate that,in the circumstances of control surface failures with limited degree and the degradation of the flying quality level,a combat flying wing adopting this flight control reconfiguration approach based on control allocation could guarantee its flight safety and perform some flight combat missions. 相似文献
149.
Li Jie Zhou Zhou 《中国航空学报》2008,21(1):19-27
To compute transonic flows over a complex 3D aircraft configuration, a viscous/inviscid interaction method is developed by coupling an integral boundary-layer solver with an Eluer solver in a "semi-inverse" manner. For the turbulent boundary-layer, an integral method using Green's lag equation is coupled with the outer inviscid flow. A blowing velocity approach is used to simulate the displacement effects of the boundary layer. To predict the aerodynamic drag, it is developed a numerical technique called far-field method that is based on the momentum theorem, in which the total drag is divided into three component drags, i.e. viscous, induced and wave-formed. Consequently, it can provide more physical insight into the drag sources than the often-used surface integral technique. The drag decomposition can be achieved with help of the second law of thermodynamics, which implies that entropy increases and total pressure decreases only across shock wave along a streamline of an inviscid non-isentropic flow. This method has been applied to the DLR-F4 wing/body configuration showing results in good agreement with the wind tunnel data. 相似文献
150.
<正> 大后掠机翼翼尖挂导弹对外界干扰的动力响应很灵敏,这种干扰主要来自随机不稳定气流或各种突加载荷。为保证安全和防止导弹失控,摸清其响应值非常必要;除理论计算外,对可能遇到的不平稳气流和突加载荷在翼尖导弹上的动力响应进行了空测,并用频谱分析和功率谱密度分析处理了空测数据,制订了翼尖导弹振动与冲击试验谱,进行了地面试验与空中打靶试验,获得了满意结果。 相似文献