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1.
《中国航空学报》2021,34(1):148-162
In order to apply the air fin successfully and ensure the maneuverability of hypersonic vehicle, a key problem to be studied urgently is the heat flux brought by the fin mounting gap. The appearance of mounting gap and fin shaft can induce many complex flow structures which need more attentions to be investigated. Under Ma 6, Nano-tracer-based Planar Laser Scattering (NPLS) and Temperature Sensitive Paints (TSP) were applied to visualize and measure transient flow structures and heat flux distribution of a swept fin-induced flow field with different height mounting gaps. Complementarily, Reynolds-averaged N-S equations were solved with k-ω SST turbulent model. The heat flux distribution results of numerical simulation and TSP observed the change of high heat flux region with different mounting gap, both in position and magnitude. The streamlines based on Computational Fluid Dynamics (CFD) and flow visualization results obtained by NPLS revealed the cause of high heat flux region. The high heat flux region in this flow field is mainly related to the reattachment of vortex and flow stagnation. The increase of gap height can lead to stronger gap overflow and shaft-induced horseshoe vortex, which are source of the high heat flux around the fin. The case with the highest mounting gap (4 mm) en-counters the most severe aerodynamic heating, both on the surface of fin and plate. Thus, under the premise of ensuring the flexibility of the fin, the gap should be set as small as possible.  相似文献   
2.
唐亮  李平  张锋  胡洪波 《推进技术》2020,41(5):1082-1088
测量液体火箭发动机的热载荷是获取燃烧室内部信息的重要方法。为了获取N_2O/C_2H_4预混推进剂燃烧室内壁的热载荷,建立了液体火箭发动机的热流计算的反问题方法,该方法基于对燃烧室壁面温度场的直接求解,通过对轴向多个位置测量温度的反演计算得到燃烧室内壁热流和温度。研究表明:应用文中建立的传热反问题方法能够较为准确地获得热流随时间及空间的分布;热电偶的位置对计算准确性有明显的影响,与理论深度偏差在0.2mm以内的随机深度偏差可导致超过4%热流反演误差;N_2O/C_2H_4预混推进剂燃烧室热流及温度沿轴向逐渐降低,表明燃烧室内的反应释热过程主要在燃烧室头部附近发生。  相似文献   
3.
陈瑶  陈洪伟 《航空动力学报》2019,46(3):71-75, 108
在模块化永磁直线游标电机的初始设计及优化设计中,使用有限元方法(FEM)计算漏磁系数时需要耗费大量的建模和计算时间。针对这一问题,建立该种电机的等效磁网络模型,在建模期间,考虑气隙中的边缘效应,并计算永磁体组与定子齿在不同相对位置时的等效磁导,得到该种电机在一个周期内不同相对位置时的漏磁磁导和漏磁系数的数学解析表达式。采用FEM验证了该数学解析表达式的准确性。研究结果为模块化永磁直线游标电机的设计提供了理论依据。  相似文献   
4.
偏心撞击对撞击式喷嘴雾化特性的影响   总被引:2,自引:0,他引:2  
为研究偏心撞击对撞击式喷嘴雾化特性的影响,建立了求解自燃推进剂冷态射流撞击雾化过程的数值模拟方案,计算了不同偏心度条件下的射流撞击雾化过程。采用树形自适应加密算法直接求解不可压Navier-Stokes方程组,由分段线性的流体体积(VOF)方法对流体界面进行捕捉。结果表明偏心撞击会导致雾场发生偏转,当无量纲偏心度E为1/8时,雾场偏转角度约为9.2°,应控制加工偏差小于该值。随着偏心度的增大,液膜的偏转角度增大,理论推导得到的液膜偏转角度要小于数值计算得到的液膜偏转角度。正心撞击时燃料与氧化剂流强峰值接近,雾场的流强分布呈单峰分布。当发生偏心撞击时,由于燃料与氧化剂部分射流未参与撞击导致流强峰值出现交错,雾场的流强分布呈双峰分布,混合比的空间分布发生较大改变。正心撞击时撞击点下游液滴的速度分布近似呈轴对称分布,而偏心撞击之后的速度分布则呈中心对称分布。偏心撞击导致的射流动量损失使得雾化性能变差,当无量纲偏心度E为1/8时,一甲基肼(MMH)的Sauter平均直径增大约4.8%,四氧化二氮(NTO)的Sauter平均直径增大约5.8%。   相似文献   
5.
一种开关磁阻电机无位置传感器控制效率优化策略   总被引:1,自引:0,他引:1  
针对开关磁阻电机(SRM)的简化磁链法只能实现单相导通运行且导通区间固定的缺点,提出了一种结合固定关断角和自适应调节开通角的无位置传感器控制技术。利用曲线拟合关断位置磁链取代传统存储数据表,通过对比实时计算的动态磁链和曲线拟合的静态磁链,确定关断位置信号并估计转速和其他位置。考虑电机阻抗和电感的非线性特点,优化电感最小区域的开通角自调节模型确定导通区间。仿真结果验证了该方案的可行性和正确性,能够实现转子位置的间接检测,电机的运行效率得到进一步优化。  相似文献   
6.
《中国航空学报》2020,33(12):3027-3038
Hypersonic and high-enthalpy wind tunnels and their measurement techniques are the cornerstone of the hypersonic flight era that is a dream for human beings to fly faster, higher and further. The great progress has been achieved during the recent years and their critical technologies are still in an urgent need for further development. There are at least four kinds of hypersonic and high-enthalpy wind tunnels that are widely applied over the world and can be classified according to their operation modes. These wind tunnels are named as air-directly-heated hypersonic wind tunnel, light-gas-heated shock tunnel, free-piston-driven shock tunnel and detonation-driven shock tunnel, respectively. The critical technologies for developing the wind tunnels are introduced in this paper, and their merits and weakness are discussed based on wind tunnel performance evaluation. Measurement techniques especially developed for high-enthalpy flows are a part of the hypersonic wind tunnel technology because the flow is a chemically reacting gas motion and its diagnosis needs specially designed instruments. Three kinds of the measurement techniques considered to be of primary importance are introduced here, including the heat flux sensor, the aerodynamic balance, and optical diagnosis techniques. The techniques are developed usually for conventional wind tunnels, but further improved for hypersonic and high-enthalpy tunnels. The hypersonic ground test facilities have provided us with most of valuable experimental data on high-enthalpy flows and will play a more important role in hypersonic research area in the future. Therefore, several prospects for developing hypersonic and high-enthalpy wind tunnels are presented from our point of view.  相似文献   
7.
The whistler-mode chorus waves are one of the most important plasma waves in the Earth’s magnetosphere. Generally, the amplitude of whistler-mode chorus waves prefers to strengthen when the energetic fluxes of anisotropic electrons increase outside the plasmapause. This characteristic is commonly associated with the geomagnetic storms or substorms. However, the relationship between the solar wind dynamic pressure (Psw) and the long-time variation of chorus waves during the quiet period of the geomagnetic activity still needs more detailed investigations. In this paper, based on MMS observations, we present a chorus event just observed in the inner side of magnetopause without obvious geomagnetic storms or substroms. Interestingly, during this time interval, some Psw fluctuations were recorded. Both the amplitudes and frequencies of chorus waves changed as a response to the variation in Psw. It proved that the enhancement of Psw increases the energetic electrons fluxes, which provides free energies for the chorus amplification. Furthermore, the wave growth rates calculated using linear theory increases and the central frequency of the chorus waves shifts to a higher frequency when the Psw enhancement is greater, which are also consistent well with the observations. The results provide a direct evidence that the Psw play an important role in the long-time variation of whistler-mode chorus waves inside the magnetopause.  相似文献   
8.
尹柔  薛洁  王静波  李象远 《推进技术》2021,42(8):1876-1882
发动机燃烧室中燃料的能量释放与燃烧特性对于发动机设计具有重要作用,为了预测发动机点火包线和贫/富油极限等关键性能,迫切需要发展航空燃料及其典型组分的高精度化学动力学模型。本文针对燃料典型组分正十烷,采用自主开发的机理生成程序ReaxGen构建了其燃烧详细机理(1499种组分、5713步反应)。为了验证机理的合理性与可靠性,在当量比Φ=0.5-2.0,压力P=1-80 atm的宽工况条件下进行了点火延迟模拟验证,结果表明本文提出的正十烷详细机理在较宽的温度、压力和当量比条件下具有较高的模拟精度。为获得适用于发动机燃烧模拟的高精度简化机理,本文基于误差传播的直接关系图方法简化了正十烷燃烧详细机理,得到包含709种组分、2793步反应的正十烷半详细机理。进一步在高温范围(1000-1500 K),采用路径通量分析方法简化得到含77种组分、359个反应的骨架机理。获得的骨架机理能够合理描述正十烷在高温下的燃烧特性,且该骨架机理尺度规模可用于基于火焰面模型的燃烧数值模拟。基于此高精度的骨架机理模型,结合火焰面生成流形湍流燃烧模型,采用大涡模拟方法进行了航空发动机环形燃烧室单头部扇形的燃烧模拟,初步获得了非稳态流场结构,其中温度模拟结果与实验值基本符合。  相似文献   
9.
为了进一步提高BPMSM的悬浮性能,提出了一种基于磁链辨识的BPMSM轴向振动抑制策略,通过转子磁链的变化来估测转子轴向偏移量,然后将轴向偏移量转化为d轴电流分量参考值i*d,通过对i*d的调节来改善薄片转子的轴向恢复力,实现对轴向振动的有效抑制,从而有效改善电机的悬浮性能。试验结果表明:所提出的轴向振动抑制策略能够对薄片转子轴向振动进行有效抑制,提高系统的抗干扰能力,系统的运行性能得到了有效改善。  相似文献   
10.
In this paper, we study conditions of realization and stability of kink modes with azimuthal wave numbers m=±1 in cylindrical plasma flex with twisted magnetic field and homogeneous current along its axis. We assume permanent axial magnetic field both inside and outside the flex, surrounded by currentless plasma. Azimuthal magnetic field decreases inversely proportional to the distance from the boundary beyond the flex. We derived dispersion equations for stable and unstable modes in approximation of “thin” plasma flex. The analysis of equations has been provided for the case of discontinuous axial magnetic field on flex’s boundary. Conditions of propagation of wave modes have been defined. It was shown, that unstable modes can be implemented in certain interval of longitudinal wavenumbers. Results can be applied for the interpretation of solar magnetic tubes behavior, using measurements, provided by spacecrafts.  相似文献   
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