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Thermal effects influencing measurements in a supersonic blowdown wind tunnel

机译:超音速排污风洞中影响测量的热效应

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During a supersonic run of a blowdown wind tunnel, temperature of air in the test section drops which can affect planned measurements. Adverse thermal effects include variations of the Mach and Reynolds numbers, variation of airspeed, condensation of moisture on the model, change of characteristics of the instrumentation in the model, et cetera. Available data on thermal effects on instrumentation are pertaining primarily to long-run-duration wind tunnel facilities. In order to characterize such influences on instrumentation in the models, in short-run-duration blowdown wind tunnels, temperature measurements were made in the wing-panel-balance and main-balance spaces of two wind tunnel models tested in the T-38 wind tunnel. The measurements showed that model-interior temperature in a run increased at the beginning of the run, followed by a slower drop and, at the end of the run, by a large temperature drop. Panel-force balance was affected much more than the main balance. Ways of reducing the unwelcome thermal effects by instrumentation design and test planning are discussed.
机译:在排风管的超音速运行期间,测试段中的空气温度下降,这会影响计划的测量。不利的热效应包括马赫数和雷诺数的变化,空速的变化,模型上水分的凝结,模型中仪器特性的变化等。有关仪器热效应的可用数据主要与长期风洞设施有关。为了在模型中表征这种对仪表的影响,在短期持续排污风洞中,在T-38风中测试的两个风洞模型的翼板平衡和主平衡空间中进行了温度测量隧道。测量结果显示,运行中模型内部温度在运行开始时升高,随后下降较慢,而在运行结束时,温度下降幅度较大。小组力量平衡受到的影响比主要平衡要大得多。讨论了通过仪器设计和测试计划来减少不受欢迎的热效应的方法。

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