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SHOCK TUBE DESIGN FOR HIGH FIDELITY BLAST WAVE SIMULATION

机译:高保真爆炸波仿真的短管设计

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Traumatic brain injury (TBI) has been recognized as the signature wound of the current conflicts and it has been hypothesized that blast overpressure can contribute a significant pathway to TBI. As such, there are many ongoing research efforts to understand the mechanism to blast induced TBI, which all require blast testing using physical and biological surrogates either in the field or in the laboratory. The use of shock tubes to generate blast-like pressure waves in a laboratory can effectively produce the large amounts of data needed for research into blast induced TBI. A combined analytical, computational, and experimental approach was developed to design an advanced shock tube capable of generating high quality out-of-tube blast waves. The selected tube design was fabricated and laboratory tests at various blast wave levels were conducted. Comparisons of tube-generated laboratory data with explosive-generated field data indicated that the shock tube could accurately reproduce blast wave loading on test surrogates. High fidelity blast wave simulation in the laboratory presents an avenue to rapidly and inexpensively generate the large volumes of data necessary to validate and develop theories linking blast exposure to TBI.
机译:创伤性脑损伤(TBI)被认为是当前冲突的签名伤口,并且已经假设爆炸过压会导致TBI的重要途径。因此,有许多持续的研究努力来了解爆炸引起的TBI的机制,这一切都需要在现场或实验室中使用物理和生物代剂的爆炸测试。使用冲击管在实验室中产生爆炸压力波可以有效地产生研究诱导的TBI所需的大量数据。开发了一种组合的分析,计算和实验方法来设计一种能够产生高质量的管爆波的先进的冲击管。制造所选择的管设计,并进行各种鼓波水平的实验室测试。管生成的实验室数据与爆炸性导场数据的比较表明,冲击管可以准确地再现测试代理的爆炸波浪。实验室中的高保真爆炸波模拟展示了速度迅速,廉价地生成验证和开发链接到TBI所需的大量数据。

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