航空涡轮燃料- tio2纳米流体对火箭发动机增热性能的评价

Sandipkumar Sonawane, U. Bhandarkar, B. Puranik, Sanjay Kumar
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引用次数: 1

摘要

纳米流体是基液中高导热纳米颗粒的悬浮液,具有增强基液导热性和传热性能的潜力。本文测量了航空涡轮燃料(ATF)-氧化钛(TiO2)纳米流体的热物理性质、传热性能和压力损失特性。实验结果表明,当颗粒体积浓度为0.3%时,纳米流体的导热系数提高了约15%,而在相同颗粒体积浓度下,纳米流体的粘度提高了35%。在相同压降下,与纯ATF相比,当颗粒体积浓度为0.3%时,传热系数最大提高了18%。
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Assessment of Aviation Turbine Fuel-TiO2 Nanofluid for Heat Transfer Augmentation in Rocket Engines
Nanofluids are suspensions of high thermal conductivity nanoparticles in a base fluid, and offer potential to enhance the thermal conductivity and heat transfer performance of the base fluid. The present work measures the thermo-physical properties, heat transfer performance and pressure loss characteristics of Aviation Turbine Fuel (ATF)-titanium oxide (TiO2) nanofluid. The experimental results show that the enhancement in the thermal conductivity is approximately 15% at a particle volume concentration of 0.3%, whereas the viscosity of the nanofluid increases upto 35% at the same particle volume concentration. Comparing the heat transfer coefficients with those of pure ATF at the same pressure drop, a maximum enhancement of 18% is observed at 0.3% particle volume concentration.
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