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Forced Convection Boiling and Critical Heat Flux of Ethanol in Electrically Heated Tube Tests

机译:电热管测试中乙醇的强制对流沸腾和临界热通量

摘要

Electrically heated tube tests were conducted to characterize the critical heat flux (transition from nucleate to film boiling) of subcritical ethanol flowing at conditions relevant to the design of a regeneratively cooled rocket engine thrust chamber. The coolant was SDA-3C alcohol (95% ethyl alcohol, 5% isopropyl alcohol by weight), and tests were conducted over the following ranges of conditions: pressure from 144 to 703 psia, flow velocities from 9.7 to 77 ft/s, coolant subcooling from 33 to 362 F, and critical heat fluxes up to 8.7 BTU/in(exp 2)/sec. For the data taken near 200 psia, critical heat flux was correlated as a function of the product of velocity and fluid subcooling to within +/- 20%. For data taken at higher pressures, an additional pressure term is needed to correlate the critical heat flux. It was also shown that at the higher test pressures and/or flow rates, exceeding the critical heat flux did not result in wall burnout. This result may significantly increase the engine heat flux design envelope for higher pressure conditions.
机译:进行了电加热管测试,以表征在与再生冷却火箭发动机推力室的设计有关的条件下流动的亚临界乙醇的临界热通量(从核到膜沸腾的转变)。冷却剂为SDA-3C醇(按重量计95%的乙醇,5%的异丙醇),并在以下条件范围内进行了测试:压力从144至703 psia,流速从9.7至77 ft / s,冷却剂从33至362 F的过冷度,临界热通量高达8.7 BTU / in(exp 2)/ sec。对于200 psia附近的数据,临界热通量与速度和流体过冷度乘积在+/- 20%以内的函数相关。对于在较高压力下获取的数据,需要附加压力项来关联临界热通量。还显示出,在较高的测试压力和/或流速下,超过临界热通量不会导致壁烧坏。对于较高的压力条件,此结果可能会大大增加发动机的热通量设计范围。

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