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961.
962.
基于中心分级的高温升燃烧室性能预估 总被引:1,自引:0,他引:1
针对高推质比航空发动机高温升燃烧室的需求,提出一种中心分级燃烧室的设计方案,在保证与现有单环腔燃烧室扩压器尺寸、外机匣最大直径及燃烧室出口尺寸相同的情况下,对设计模型进行了三维数值模拟,并与现有的单环腔燃烧室数值模拟结果及试验结果进行了对比分析.研究结果表明:采用中心分级燃烧室,在获得更高温升的同时,可获得比单环腔燃烧室更高的总压恢复系数和比单环腔燃烧室更低的燃烧室出口温度分布系数(OTDF),其慢车工况下的CO排放和NO排放略高于单环腔燃烧室;在设计总油气比为0.045的情况下,温升可达1360K,总压恢复系数大于等于0.96,OTDF小于等于0.14,出口径向温度分布系数(RTDF)小于等于0.10,燃烧效率大于等于0.987. 相似文献
963.
建立了一个轴向可自由伸缩的单转子系统计算模型,采用有限元法分析了温度场对单转子系统响应特性的影响。参考发动机转子系统的加热对流的边界条件,利用 ANSYS 软件构造了该转子系统的瞬态温度场。分别在常温状态下和考虑温度场情况下,计算了转子系统的不平衡响应并进行了对比分析。结果表明,随着温度的升高,第三阶共振频率的相对误差最大达到11.2%。 相似文献
964.
在不同调制深度下,光纤陀螺反馈通道的非线性误差对陀螺输出精度会有不同的影响。在此研究的基础上,通过实验与仿真分析相结合的方式,对光纤陀螺反馈通道非线性误差的温度特性也做了进一步的研究。研究表明,随着温度的降低,非线性误差对输出的影响也随之增加。仿真采用光纤陀螺单轴板在温箱中测得的数据,并利用Simulink建模分析。 相似文献
965.
966.
高温高速燃气形成的通气空泡对水下航行体的降阻降载具有明显效果,其温度测量对研究通气空泡的动力学特性具有重要的价值。文章进行了温度传感器设计、热电偶信号放大器设计、地面静态测试和水下动态测试,结果表明,设计研制的超小型热电偶解决了高温高速燃气下的抗冲刷和电离子干扰问题,成功测得静态与动态条件下通气空泡内的温度变化,为水下航行体通气空泡的研究提供了试验数据采集的依据。 相似文献
967.
In order to investigate the yielding behavior of the newly developed Ni 3 Al-based intermetallic alloy IC10, yield stresses have been measured in tension and compression with different orientations. The specimens were cut from a sheet with different angles inclined from the solidification direction. The inclined angles were taken to be 0 , 22.5 , 45 , 67.5 and 90 . All experiments were conducted at room temperature except for orientation 0 , whose deformation temperatures ranged from 298 to 1273 K. Experimental results show that the yield strength of alloy IC10 has the anomalous behavior which has been observed for other Ll 2 -long-range ordered intermetallic alloys, but it is less pronounced. The abnormalities show the following characteristics: (i) the yield strength increases as the temperature is raised below the peak temperature, (ii) yield strength anisotropy, (iii) tension/compression asymmetry. Compared to Ni 3 Al single crystals, the polycrystalline exhibits some different yielding behaviors which may be due to the high volume fraction of c phase. 相似文献
968.
Mehmet Şahin 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2012
The aim of this research was to forecast monthly mean air temperature based on remote sensing and artificial neural network (ANN) data by using twenty cities over Turkey. ANN contained an input layer, hidden layer and an output layer. While city, month, altitude, latitude, longitude, monthly mean land surface temperatures were chosen as inputs, and monthly mean air temperature was chosen as output for network. Levenberg–Marquardt (LM) learning algorithms and tansig, logsig and linear transfer functions were used in the network. The data of Turkish State Meteorological Service (TSMS) and Technological Research Council of Turkey–Bilten for the period from 1995 to 2004 were chosen as training when the data of 2005 year were being used as test. Result of research was evaluated according to statistical rules. The best linear correlation coefficient (R), and root mean squared error (RMSE) between the estimated and measured values for monthly mean air temperature with ANN and remote sensing method were found to be 0.991–1.254 K, respectively. 相似文献
969.
970.
Gustavo A. Mansilla 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(11):3545-3557
This paper analyzes the response of the near equatorial and low latitude ionosphere of the South American sector to the geomagnetic storm occurred on 17 March 2015. Ionosonde data from Ramey (18.5° N, 292.9° E), Jicamarca (12.0° S, 283.2° E), Boa Vista (2.8° N, 299.3° E), Sao Luis (2.6° S, 315.8° E), Fortaleza (3.9° S, 321.6° E) and Cachoeira Paulista (22.7° S, 315.0° E) are used for the study. The results show negative disturbances in foF2 at low latitudes during the main phase of the storm, which were attributed to prompt penetration electric fields. Thus, the Equatorial Anomaly (EA) started to reduce their structure in this sector since on 17 March. During the recovery phase (on 18 March), positive disturbances were observed at low, mid-low latitudes (in the post-midnight – predawn hours), which can be mainly attributed to enhanced storm-time neutral winds and composition changes (i.e., increase in the O/N2 ratio). Disturbance dynamo electric fields would also contribute in modulating the electron density of the EA during this storm period. 相似文献