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991.
蒙皮材料对浮空器热特性影响的研究 总被引:1,自引:0,他引:1
分析临近空间浮空器热特性的影响因素,并建立临近空间浮空器热特性的数学模型,采用Fortran语言编写程序,对蒙皮材料热辐射特性对浮空器热特性的影响进行了研究.结果表明,选用短波吸收率较低且长波辐射发射率较高的蒙皮材料时,氦气平均温度的昼夜差值较低,浮空器热性能越好.夜晚蒙皮温差随长波辐射发射率的增加而增加;而白天随短波辐射吸收率的增加而增加,在长波辐射发射率较大时,其对蒙皮温差的影响不大,然而长波辐射发射率比较小时,蒙皮温差会非常大,蒙皮温差的峰值出现于黎明和黄昏时段这两个时段. 相似文献
992.
为了揭示等表速飞行的内在机理,建立了飞机等表速运动方程,提出了等表速爬升运动参数计算方法。对比等表速和等真空速爬升公式,提出了功率因子的概念,以反映飞机等表速与等真空速爬升所需单位剩余功率之间的关系。针对等表速等推力、等表速等梯度、等表速等升降速度3种典型爬升方式,应用飞机等表速运动方程给出了稳态运动参数计算方法。计算结果表明,3种爬升方式均存在稳态爬升剖面,稳态运动参数与表速呈一一对应关系。 相似文献
993.
In this study, a process for establishing design requirements and selecting alternative con-figurations for the conceptual phase of aircraft design has been proposed. The proposed process uses system-engineering-based requirement-analysis techniques such as objective tree, analytic hier-archy process, and quality function deployment to establish logical and quantitative standards. Moreover, in order to perform a logical selection of alternative aircraft configurations, it uses advanced decision-making methods such as morphological matrix and technique for order prefer-ence by similarity to the ideal solution. In addition, a preliminary sizing tool has been developed to check the feasibility of the established performance requirements and to evaluate the flight perfor-mance of the selected configurations. The present process has been applied for a two-seater very light aircraft (VLA), resulting in a set of tentative design requirements and two families of VLA configurations: a high-wing configuration and a low-wing configuration. The resulting set of design requirements consists of three categories: customer requirements, certification requirements, and performance requirements. The performance requirements include two mission requirements for the flight range and the endurance by reflecting the customer requirements. The flight performances of the two configuration families were evaluated using the sizing tool developed and the low-wing configuration with conventional tails was selected as the best baseline configuration for the VLA. 相似文献
994.
基于鲨鱼皮衍生出来的微观仿生表面被广泛应用于机翼等航空零部件的设计中,对于提高航空零部件的疲劳寿命、气流动力性等服役性能具有重要作用。砂带磨削能实现零部件表面的高完整性要求的加工,故常用于叶片、整体叶盘等复杂曲面的精密磨削,且能实现微观表面形状,但目前缺乏砂带磨削微观表面的系统研究从而难以实现其精确控制。首先,分析了微观仿生锯齿状表面的典型结构特征,基于单颗粒砂带磨削模型,研究了单颗粒砂带磨削去除机理;然后,建立了砂带磨削多颗粒参数化数学模型,提出了微观仿生锯齿状表面砂带磨削方法;最后,以钛合金叶片型面为对象,搭建以钛合金为典型材料的微观仿生锯齿状表面砂带磨削基础实验平台,进行仿生表面的实验验证。通过对磨削后叶片的表面微观形状参数进行检测,结果表明通过砂带磨削方法实现的微观仿生锯齿状表面以锯齿形沟槽为主,其中沟槽的宽度在2.5~8 μm之间、平均值为4.91 μm,沟槽的高度在3.5~9 μm之间、平均值为5.91 μm,沟槽的夹角在28°~68°之间、平均值为42.3°,验证了微观仿生锯齿状表面砂带磨削的可行性。 相似文献
995.
《中国航空学报》2020,33(3):922-932
The influences of airfoil thickness on the aerodynamic loading distribution and the hinge moments of folding wing aircraft are presented in this work. The traditional panel method shows deficiencies in the calculation of folding wing’s hinge moments. Thus, a thickness correction strategy for the aerodynamic model with CFD results is proposed, and an aeroelastic flight simulation platform is constructed based on the secondary development of ADAMS. Based on the platform, the developed aerodynamic model is verified, then the flight-folding process of the folding wing aircraft is simulated, and the influences of airfoil thickness on the results are investigated. Results show that the developed aerodynamic model can effectively describe the thickness effect of the folding wing. Airfoil thickness, which cannot be considered by the panel method, has a great influence on the hinge moments during the folding process, and the thickness correction has great significance in the calculation of folding wing’s hinge moments. 相似文献
996.
基于EGView软件对SR20飞机出现的多起发动机CHT异常升高故障进行了分析,结果表明出现了早燃引发的爆震,进一步对爆震发生的几率以及如何减小爆震的强度和持续时间进行了研究,并就该机型在运行中减少爆震的发生提出了建议。 相似文献
997.
998.
复合材料飞机闪电防护设计 总被引:1,自引:0,他引:1
飞机的闪电防护设计是一项涉及到多个专业的综合性技术,具体来说,飞机结构、飞控、燃油、航电等专业都必须在设计时考虑闪电防护.随着复合材料技术的发展,运用全复合材料进行通用飞机的设计制造已越来越广泛.由于复合材料和金属材料的差异性,其闪电防护设计具有完全不同的特点.本文根据国内外研究发展趋势,阐述复合材料飞机的闪电防护设计技术以及适航验证的方法. 相似文献
999.
In this paper, a method to design bird-strike-resistant aircraft structures is presented and illustrated through examples. The focus is on bird strike experiments and simulations. The explicit finite element software PAM-CRASH is employed to conduct bird strike simulations, and a coupled Smooth Particles Hydrodynamic (SPH) and Finite Element (FE) method is used to simulate the interaction between a bird and a target structure. The SPH method is explained, and an SPH bird model is established. Constitutive models for various structural materials, such as aluminum alloys, composite materials, honeycomb, and foam materials that are used in aircraft structures, are presented, and model parameters are identified by conducting various material tests. Good agreements between simulation results and experimental data suggest that the numerical model is capable of predicting the dynamic responses of various aircraft structures under a bird strike, and numerical simulation can be used as a tool to design bird-strike-resistant aircraft structures. 相似文献
1000.