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Effect of Surface Catalysis on Measured Heat Transfer in an Expansion Tunnel Facility

机译:表面催化对膨胀隧道设施中传热的影响

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Measurements of surface heat transfer in the LENS-I reflected shock and the LENS-XX expansion tunnel have been studied to assess the catalytic response of the surface in flows with significant dissociation in the shock layer. Previous research in this area has generally shown that measurements in the reflected shock tunnel shows good correlation with complete catalytic recombination at the surface (the "super-catalytic" boundary condition). This boundary condition is energetically conservative but does not account for physical mechanisms and limiting participants in the surface reactions. In many of these same cases in the reflected shock tunnel, quantifying the thermochemical excitation of the freestream remains a significant uncertainty in the modeling of the test article and the resulting surface response. Recent measurements of heat transfer in the LENS-XX expansion tunnel facility, where the freestream is in a thermochemically quiescent state that can be more readily described, have shown behavior that is consistent with finite-rate recombination efficiency of 0.003 to 0.010 for platinum/Pyrex thin-film gages and 0.002 to 0.010 for chromel-constantan coaxial thermocouples.
机译:已对LENS-1反射冲击波和LENS-XX膨胀隧道中表面传热的测量进行了研究,以评估在冲击层中具有明显解离的流动中表面的催化响应。该领域的先前研究通常表明,反射激波隧道中的测量结果与表面上的完全催化复合(“超催化”边界条件)具有良好的相关性。该边界条件在能量上是保守的,但没有考虑物理机制并限制了表面反应的参与者。在反射激波隧道中的许多相同情况下,对自由流的热化学激发进行量化仍是测试物品建模和所得表面响应的重大不确定因素。最近对LENS-XX膨胀隧道设施中的传热进行了测量,该处的自由流处于热化学静止状态(可以更容易地描述),其行为与铂/派热克斯的0.003至0.010的有限速率复合效率相一致薄膜应变计,对于铬-康斯坦坦同轴热电偶为0.002至0.010。

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