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Improvement of a free piston driver for a high-enthalpy shock tunnel

机译:改进了用于高焓冲击通道的自由活塞驱动器

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摘要

In order to improve the operation of a high-enthalpy free piston shock tunnel its tuned operation was studied analytically and experimentally. First, the piston motion in the free piston driver tube was analytically solved by proposing a simple piston/gasdynamic model, and the tuned operation condition was formulated as an eigenvalue with which the piston has sufficiently high speed at the moment of diaphragm rupture, so as to maintain a constant driver gas pressure, and reduces its speed to come to rest when very closely approaching the end of the driver tube. Second, the result of this analysis was validated by its comparison with experiments which were conducted in the medium-sized free piston shock tunnel HEK installed at the NAL Kakuda Research Center. By observing the detail of piston landing at the end of the driver tube the present tuned operation was found to be successfully achieved with the operating condition given here. Its advantages in improving the pressure recovery factor and in enhancing the stagnation enthalpy were successfully demonstrated. [References: 8]
机译:为了提高高焓无活塞冲击隧道的运行性能,对其进行了分析和实验研究。首先,通过提出一个简单的活塞/气体动力学模型来解析自由活塞驱动管中的活塞运动,并将调整后的运行条件公式化为特征值,以使膜片破裂时活塞具有足够高的速度,从而保持恒定的驱动器气体压力,并在非常接近驱动器管的末端时降低其速度使其静止。其次,通过与在NAL Kakuda研究中心安装的中型自由活塞冲击隧道HEK进行的实验进行比较,验证了该分析的结果。通过观察在驱动管末端的活塞着陆的细节,发现在这里给出的工作条件下成功地完成了当前调整的操作。成功地证明了其在改善压力恢复因子和增强停滞焓方面的优势。 [参考:8]

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