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1.
《中国航空学报》2021,34(3):1-12
The excellent vectoring characteristic of Dual Synthetic Jet (DSJ) provides a new control strategy for the active flow control, such as thrust vectoring control, large area cooling, separated flow control and so on. For incompressible flow, the influence relation of source variables, such as structure parameters of actuators, driving parameters and material attributes of piezoelectric vibrating diaphragm, on the vectoring DSJ and a theoretical model are established based on theoretical and regression analysis, which are all verified by numerical simulations. The two synthetic jets can be deemed as a main flow with a higher jet velocity and a disturbing flow with a lower jet velocity. The results indicate that the influence factors contain the low-pressure area formed at the exit of the disturbing flow, which could promote the vectoring deflection, and the impact effect of the disturbing flow and the suppressive effect of the main flow with the effect of restraining the vectoring deflection. The vectoring angle is a complex parameter coupled by all source variables. The detailed theoretical model, whose error is controlled within 3.6 degrees, can be used to quantitatively assess the vectoring feature of DSJ and thus to provide a guidance for designing the control law applied in the active flow control. 相似文献
2.
结合火箭发动机工程应用环境,研究了GN-1煤油高温高压热物性、安全特性、传热结焦性能以及点火延迟性能,并和现役火箭煤油作了对比分析。采用商业仪器对GN-1煤油在最高200℃、最高压力25MPa范围内的密度、黏度、定压比热容、导热系数、表面张力进行了实验测量。在实验数据的基础上,依据基团贡献法、基于比容平移法则的P-R方程、摩擦理论、广义对应态原理分别对GN-1煤油在最高350℃、最高压力60MPa范围内的密度、黏度、定压比热容、导热系数、表面张力进行了理论计算,建立了GN-1煤油的密度方程、黏度方程、导热系数方程,并将方程的计算值与实验值进行了对比,计算偏差较小。对GN-1煤油和火箭煤油的安全性能进行对比研究,GN-1煤油的闪点为40℃,自燃温度为305℃,高于火箭煤油(225℃);燃点为47℃,低于火箭煤油(82℃),GN-1煤油的爆炸极限范围为0.44%-2.9%(40℃)。GN-1煤油和火箭煤油的急性经口毒性LD50>5000mg/kg,均属于第五级化合物(实际无毒)。在入口压力10 MPa,流速10 m·s-1,内壁温480℃条件下,GN-1煤油的传热系数比火箭煤油提高14.4%,建立了传热准则方程。GN-1煤油出口油温220℃时试验段平均结焦速率是出口油温150℃时的4.43倍,GN-1煤油不锈钢材质管路中试验段平均结焦为高合管材质管路中的22.3%。在970K-1105K温度范围内,GN-1煤油的点火延迟时间为320μs-471μs,是火箭煤油的55.6%-69.3%。相关研究可对发动机可靠设计及应用提供重要参考。 相似文献
3.
Lin Quan Bing Cai Xiong Hu Qingchen Xu Ling Li 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(2):715-721
During solar flares, the X-ray radiation suddenly increases, resulting in an increase in the electron density of the atmospheric D region and a strong absorption of short-wave radio waves. Based on Langfang medium frequency (MF) radar, this paper analyzed the variation characteristics of D region in the lower ionosphere from 62 km to 82 km. The analysis focused on multiple C-level and M-level solar flare events before and after the large-scale flare event at 11:53 (UT) on September 6, 2017. The results show that it is difficult to detect the electron density over 70 km in Langfang during solar flares, but the electron density value can be obtained as low as 62 km, and the stronger the flare intensity, the lower the detectable electron density height. Besides, the equal electron density height, the received power of X and O waves will also be significantly reduced during the flares, and the reduction of equal electron density height has a weak linear relationship with flare intensity. 相似文献
4.
交叉眼干扰被认为是对单脉冲雷达干扰最有效的方式之一。基于雷达方程建立了隔离平台回波下的两点源反向交叉眼干扰模型,推导了交叉眼干扰欺骗角一般性公式,研究了干扰机发射天线间距、干扰平台旋转角和干扰机相对雷达之间距离等参数变化对角度欺骗效果的影响,并依据单脉冲雷达接收机获取角度的信息处理流程,建立了单脉冲雷达接收机仿真模型,对交叉眼数学模型的正确性和局限性进行了分析。研究结果表明:单脉冲雷达越靠近两点源交叉眼干扰机中心线、干扰机两发射天线间距越大、与干扰机距离越近时,角度欺骗效果越好;单脉冲雷达的欺骗角度随着与干扰机距离的接近呈指数式增大;数学模型和仿真模型计算的单脉冲雷达角度误差最大值随干扰机天线与雷达天线中心连线的夹角的增大呈指数化增长。研究可为交叉眼干扰工程设计作参考。 相似文献
5.
随着在轨微小卫星及空间碎片数量不断增加,为保证在轨卫星的运行安全,需要对微小目标进行有效跟踪探测及稳定编目。雷达作为近地空间目标监视的主用设备,在对厘米级小目标进行探测跟踪时,其工作频率是决定其能否可靠探测关键因素,高频有利于探测小目标,并可获得相对稳定的RCS,但高频信号的波束小、搜索能力较低,实现难度大,也使得成本过高。为适于实际工程应用,需从效费比出发,对频率进行优选。本文从目标RCS的角度提出一种空间目标监视雷达信号频率的优选准则,给出该准则下周长波长比ka的取值范围。为了更加清楚地说明该优选准则的应用,给出了直径5 cm和10 cm的目标在该准则下信号频率的取值范围,并与国外工作做了比较,证明该准则可行。 相似文献
6.
X.B. Zhao W.Z. Shao L.B. Zhao Y. Gao Y.Y. Hu X.Z. Yuan 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(10):3072-3086
The main objective of our work was to investigate the impact of rain on wave observations from C-band (~5.3 GHz) synthetic aperture radar (SAR) in tropical cyclones. In this study, 10 Sentinel-1 SAR images were available from the Satellite Hurricane Observation Campaign, which were taken under cyclonic conditions during the 2016 hurricane season. The third-generation wave model, known as Simulating WAves Nearshore (SWAN) (version 41.31), was used to simulate the wave fields corresponding to these Sentinel-1 SAR images. In addition, rainfall data from the Tropical Rainfall Measuring Mission satellite passing over the spatial coverage of the Sentinel-1 SAR images were collected. The simulated results were validated against significant wave heights (SWHs) from the Jason-2 altimeter and European Centre for Medium-Range Weather Forecasts data, revealing a root mean square error (RMSE) of ~0.5 m with a 0.25 scatter index. Winds retrieved from the VH-polarized Sentinel-1 SAR images using the Sentinel-1 Extra Wide-swath Mode Wind Speed Retrieval Model after Noise Removal were taken as prior information for wave retrieval. It was discovered that rain did indeed affect the SAR wave retrieval, as evidenced by the 3.21-m RMSE of SWHs between the SAR images and the SWAN model, which was obtained for the ~1000 match-ups with raindrops. The raindrops dampened the wave retrieval when the rain rate was < ~5 mm/hr; however, they enhanced wave retrieval for higher rain rates. It was also found that the portion of the rain-induced ring wave with a wave number > 0.05 rad/m (~125 m wavelength) was clearly observed in the SAR-derived wave spectra. 相似文献
7.
以空间目标为研究对象,针对双基地雷达时间、空间及频率同步误差导致的逆合成孔径雷达图像散焦问题,提出基于离散多项式相位变换的自聚焦算法。算法首先将目标平动、转动及同步误差导致的相位项统一建模为高阶多项式,利用离散多项式相位变换方法估计高阶多项式系数并据此构建补偿相位项,完成高阶相位补偿。最后进行方位压缩得到高聚焦度的二维ISAR像。算法通过选取合适的延时参数及成像积累时间可得到高精度参数估计及相位补偿,理论分析和仿真校验了算法性能优于常用的非参数化自聚焦算法。 相似文献
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为了解决目标识别、隐身目标设计等研究领域对雷达图像需求日益增加的问题,提出了一种基于射线追踪的快速雷达图像仿真方法。该方法利用射线追踪计算每一个射线管的散射电场及其在雷达成像平面的投影坐标,通过将所有射线管的贡献在像域进行累加得到1幅二维雷达图像。通过对不同路径射线的聚类,可实现对散射贡献的分离,从而建立目标部件与强散射源的对应关系,并对复杂目标雷达图像进行解释。给出了Slicy目标的快速雷达图像仿真与算例分析,分析结果表明:基于射线追踪的快速雷达图像仿真方法可对复杂雷达图像进行有效预测,并能对强散射源进行成因分析。 相似文献