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FLOW AND STRUCTURE DEFORMATION RESEARCH OF A COMPOSITE GLIDER IN FLIGHT CONDITIONS

机译:复合滑翔机在飞行条件下的流动和结构变形研究

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The gliders exemplify a rare subject of flight test campaigns other than standard certification trials. Therefore, not many examples of research activities may be found worldwide. Nevertheless, the gliders neither have advanced flight controls, nor cruise hypersonic, flight testing might encounter barriers to break. The paper presents one of international measurement campaigns performed within the AIM2 (Advanced In-Flight Measurement Techniques 2), the collaborative project co-funded by the European Commission (contract no. 266107), in which several optical measurement methods were developed and enhanced for various industrial flight test applications. Among flying laboratories utilized in the project, the composite training glider, considered as a test-bed, was equipped with instrumentation for two non-intrusive metrologies named Image Pattern Correlation Technique (IPCT) and Infrared Thermography (IRT). They allow characterizing the wing behavior during flight regarding twist and bending as well as the appearance of transition between laminar and turbulent flow, respectively. The authors focused on challenges regarding a glider as a specific flight test bed for equipment preparation, with limited power supply and limited space. Finally, remarks about measurement accuracy and further applications are included.
机译:滑翔机举例说明除标准认证试验之外的飞行测试活动的罕见主题。因此,可以在全球范围内找到许多研究活动的例子。尽管如此,滑翔机既不具有先进的飞行控制,也没有巡航过度,飞行测试可能会遇到障碍的障碍。本文提出了国际衡量活动之一,由欧洲委员会(合同号266107)共同资助的协作项目,其中包括几种光学测量方法,为此开发并增强了几种光学测量方法各种工业飞行试验应用。在该项目中使用的飞行实验室中,复合培训滑翔机被认为是试验床,配备了两个名为图像模式相关技术(IPCT)和红外热成像(IRT)的两个非侵入式计量的仪器。它们允许在有关扭曲和弯曲的飞行期间表征机翼行为以及层流和湍流之间的过渡的外观。作者的重点是有关滑翔机作为设备准备的特定飞行试验台的挑战,电源有限,空间有限。最后,包括测量精度和进一步应用的备注。

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