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11.
确定着陆灯安装角度是民用飞机着陆灯系统设计的重要环节,提出一种以主起落架旋转点为参考基准的着陆灯安装角度分析方法,并以某型号民用飞机为例,推算最佳安装角度。通过仿真证明该分析方法思路清晰、计算简单、实用性强,对民用飞机着陆灯系统设计具有一定参考价值。  相似文献   
12.
描述并确定具有明显纹理粗糙表面均方根斜率的光散射技术(均方根斜率是联合表面轮廓高度和波长特性的混合参数)。称为散射光锥法(The scattered light-conemethod)的该技术是基于激光角散射检测阵列(DALLAS——Defector Array for Laser LishtAngular Scattering),它用于测量粗糙表面散射光角分布的仪器。均方根斜率是从DALLAS光散射图象的角宽得到的。一般可以发现角宽(即估计的均方根斜率)对光的入射角和散射角变化相当大时是不敏感的。这些结果与表面材料无关,并且对正弦和随机粗糙表面都是有效的。介绍了散射光锥法的测量原理、实验、数据分析和几点结论。  相似文献   
13.
一种获取耀斑光变曲线的高精度、高分辨方法栗志,周卫红(中国科学院云南天文台,昆明650011)关键词太阳耀斑,光变曲线,测量方法太阳耀斑物理机制的研究,需要得到耀斑核的辐射的演化,在光学波段常用耀斑在单色光的辐射强度的时间变化曲线作为分析依据[1]....  相似文献   
14.
新型行波光调制器单脊波导的微波电路研究   总被引:1,自引:0,他引:1  
设计了一种采用单脊波导作为微波电路的新型行波光调制器。分析计算了脊缝间距小于1.00mm的脊波导中的电场分布、截止波长、频带宽度和特性阻抗;设计了与矩形波导联接的过渡段。结果表明:采用单脊波导作为光调器将使微波电场得到充分的利用,将提高调制效率;使波导单模工作频带增宽;具有较低的特性阻抗;通过过渡段易与矩形波导联接及保证单模传输。最后,经论证选择了切实可行的脊波导各几何参数a=13.00mm,b=10.16mm,d=0.50mm,s=1.00mm。  相似文献   
15.
采用6-3UPS边置式座舱结构的轻型飞行模拟器,其工作空间受约束条件的限制。在数学描述的基础上,对影响工作空间的各项约束检验算法进行研究,并分析约束条件下轻型飞行模拟器的工作空间,为控制算法的研究提供依据。  相似文献   
16.
Extrapolating from the technique of gravitational assist via chaotic trajectories of binary objects, this paper considers how such techniques might be used in other systems. We examine which types of systems are the best candidates for harvesting gravitational energy for payload ejection. We also consider what signatures might be present in either the asteroid orbits or radiation of the central body if extraterrestrial intelligences were to use such techniques about these candidate systems.The simulation studies show that current technology cannot approach the sensitivity needed to detect either of these signals. Instead, we provide these results as guidance to studies in coming decades on patterns that may indicate the use of an asteroid ejection system.  相似文献   
17.
Minimizing energy consumption and maximizing crop productivity are major challenges to growing plants in Bioregenerative Life Support System (BLSS) for future long-term space mission. As a primary source of energy, light is one of the most important environmental factors for plant growth. The purpose of this study is to investigate the effects of low light intensity at different stages on growth, pigment composition, photosynthetic efficiency, biological production and antioxidant defence systems of wheat (Triticum aestivum L.) cultivars during ontogenesis. Experiments were divided into 3 intensity-controlled stages according to growth period (a total of 65 days): seedling stage (first 20 days), heading and flowering stage (middle 30 days) and grain filling stage (last 15 days). Initial light condition of the control was 420 μmol m−2 s−1 and the light intensity increased with the growth of wheat plants. The light intensities of group I and II at the first stage and the last stage were adjusted to the half level of the control respectively. For group III, the first and the last stage were both adjusted to half level of the control. During the middle 30 days, all treatments were kept the same intensity. The results indicated that low-light treatment at seedling stage, biomass, nutritional contents, components of inedible biomass and healthy index (including peroxidase (POD) activity, malondialdehyde (MDA) and proline content) of wheat plants have no significant difference to the control. Furthermore, unit kilojoule yield of group I reached 0.591 × 10−3 g/kJ and induced the highest energy efficiency. However, low-light treatment at grain filling stage affected the final production significantly.  相似文献   
18.
The 3-step Gossamer road map to solar sailing is presented that has been agreed between DLR and ESA in November 2009. The main and exclusive purpose of that project is to develop, to prove, and to demonstrate the solar sail technology as a safe and reliably manageable propulsion technique for long lasting and deep space missions. Since the development of the solar sail technology is quite a complex task, presently at the DLR implemented solar sail related research activities will be presented as well.  相似文献   
19.
Strawberry is a candidate crop for space that is rich in protective antioxidants and could also have psychological benefits as a component of crew diets during long-duration space habitation. Energy for electric lighting is a major input to a controlled-environment crop-production system for space habitation. Day-neutral strawberry cultivars were evaluated at several different photoperiods to determine minimum lighting requirements without limiting yield or negatively impacting fruit quality. The cultivars ‘Tribute’, ‘Seascape’, and ‘Fern’ were grown at 14, 17, or 20 h of light per day, and fruit yield was evaluated over a 31-week production period. This amounted to a difference of 2418 kWh m−2 in energy usage between the longest and shortest photoperiods. All cultivars produced similar total fresh weight of fruit regardless of photoperiod. Volunteer tasters rated organoleptic characteristics including sweetness, tartness, texture, and overall appeal as measures of fruit quality. Generally, organoleptic attributes were not affected by photoperiod, but these attributes were somewhat dependent upon cultivar and harvest time. Cultivars under different photoperiods varied in their production of fruit over time. ‘Seascape’ was the most consistent producer, typically with the largest, most palatable fruit. ‘Seascape’ plants subsequently were grown at 10-, 12-, or 14-h photoperiods over a treatment period of 33 weeks. Photoperiod again had no significant effect on total fruit weight, although there were periodic flushes of productivity. Fruit under all photoperiods had acceptable approval ratings. A large-fruited, day-neutral strawberry cultivar such as ‘Seascape’ remains productive under shortened photoperiods, allowing reductions in energy and crew labor while maintaining flexibility for mixed-cropping scenarios in space.  相似文献   
20.
介绍一种高分辨力、无接触式测量超光滑表面粗糙度参数的反散射计算测量技术。实现该技术的测量装置的角分辨力为0.1°。它可以测量导体或非导体表面纳米级精确度的粗糙度。  相似文献   
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