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31.
32.
Streamwise-body-force-model for rapid simulation combining internal and external flow fields 总被引:2,自引:0,他引:2
《中国航空学报》2016,(5):1205-1212
A streamwise-body-force-model (SBFM) is developed and applied in the overall flow simulation for the distributed propulsion system, combining internal and external flow fields. In view of axial stage effects, fan or compressor effects could be simplified as body forces along the streamline. These body forces which are functions of local parameters could be added as source terms in Navier-Stokes equations to replace solid boundary conditions of blades and hubs. The val-idation of SBFM with uniform inlet and distortion inlet of compressors shows that pressure perfor-mance characteristics agree well with experimental data. A three-dimensional simulation of the integration configuration, via a blended wing body aircraft with a distributed propulsion system using the SBFM, has been completed. Lift coefficient and drag coefficient agree well with wind tun-nel test results. Results show that to reach the goal of rapid integrated simulation combining inter-nal and external flow fields, the computational fluid dynamics method based on SBFM is reasonable. 相似文献
33.
针对国内航空企业飞机结构件数控编程中存在的重复工作量大、效率低、质量不稳定、规范性差等问题,通过面向多主机厂推广基于特征的数控编程技术,切实提高飞机结构件数控编程的效率与质量.首先概述了基于特征的快速程编(FBM NUAA)系统的整体架构,并且介绍了基于特征的数控编程技术在多家主机厂中的推广与应用情况,以及前期推广中遇到的问题,并提出了解决方案.根据多主机厂多机型过百项飞机结构件的实际应用结果表明采用基于特征的快速程编系统进行数控编程,刀轨平均自动生成率超过90%,编程时间较传统编程方式平均缩短70%以上. 相似文献
34.
针对飞机装配过程质量评价对数字化测量技术的需求,开展了面向飞机装配的数字化测量特征设计、测量方案设计、多系统异构测量场构建、测量误差分析与修正等技术研究,并以表面类、内部结构特征、大部件对接和活动部件装配质量的控制为例,阐述了测量设备选型、整体测量场的构建方法及其应用效果. 相似文献
35.
NASA大型民用倾转旋翼机进展研究 总被引:1,自引:0,他引:1
倾转旋翼机是一种结合固定翼飞机和旋翼飞机双重优势的新型飞机,它具有速度快、油耗低、垂直起降等特点。在波音和贝尔公司联合研制的军用倾转旋翼机取得成功后,NASA试图在相关技术的基础上研制出一种90座、航程约为1200nmile、速度约为600km/h的新型先进民用倾转旋翼支线飞机,进而取代现役固定翼支线飞机。通过系统地搜集和科学地分析,明晰了NASA大型民用倾转旋翼机项目的内容、进展、风险和影响并对ARJ21支线项目提出早期预警。 相似文献
36.
教练机发动机设计载荷谱推导方法 总被引:1,自引:3,他引:1
系统地研究了教练机航空发动机设计载荷谱的推导方法,主要包括:(1)基准机的选取与现役发动机载荷谱的空测、统计;(2)新机发动机飞行剖面的预测;(3)新机发动机设计任务循环的编制等三大步骤。提出的方法具有一定的通用性,可以推广到其它类型的发动机设计载荷谱研究。 相似文献
37.
教练机发动机使用任务循环推导 总被引:2,自引:0,他引:2
在大量的外场统计和空测的基础上, 对某教练机发动机的外场使用载荷进行了分析研究, 推导出了其使用任务循环, 并与MIL-STD-1783进行了对比分析, 为国产同类新型教练机发动机的设计任务循环的预测奠定了基础。 相似文献
38.
Arthur Rizzi Peter Eliasson Tomasz Goetzendorf-Grabowski Jan B. Vos Mengmeng Zhang Thomas S. Richardson 《Progress in Aerospace Sciences》2011,47(8):695-705
CEASIOM is a multidisciplinary software environment for aircraft design that has been developed as part of the European Framework 6 SimSAC project. It closely integrates discipline-specific tools such as those used for CAD, grid generation, CFD, stability analysis and control system design. The environment allows the user to take an initial design from geometry definition and aerodynamics generation through to full six degrees of freedom simulation and analysis. Key capabilities include variable fidelity aerodynamics tools and aeroelasticity modules. The purpose of this paper is to demonstrate the potential of CEASIOM by presenting the results of a Design, Simulate and Evaluate (DSE) exercise applied to a novel, project specific, transonic cruiser configuration called the TCR. The baseline TCR configuration is first defined using conventional methods, which is then refined and improved within the CEASIOM software environment. A wind tunnel model of this final configuration was then constructed, tested and used to verify the results generated using CEASIOM. 相似文献
39.
40.
The heavy fuel compression ignition engines are widely equipped as aircraft piston engines. The fuel injection system is one of the key technologies that determines the performance of engine. One of the main challenges is to precisely control the injected fuel quantity and flow rate in the presence of pressure fluctuation. This challenge is even more serious for heavy fuel. An original design for electrically controlled high pressure fuel injection system called Multi-Pumppressure-reservoirs fuel injection System(MPS) was demonstrated to reduce the pressure fluctuation and help keep injection stable. MPS was compared with an ordinary high pressure Common Rail fuel injection System(CRS). This work established one-dimensional AMESim and mathematical models for both CRS and MPS to study the effect of different structures and geometric parameters on the pressure fluctuations. The calculations show that the average fuel pressure fluctuation of MPS can be reduced by 57% for the crankshaft speed of 1900 r/min, and the pressure fluctuation before injection reduced by 100%. It is concluded that the pressure performance of MPS is less sensitive to pressure reservoir volume than that of CRS, and there is an opportunity for further volume reduction. 相似文献