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Flow visualization of a rocket injector spray using gelled propellant simulants

机译:使用胶状推进剂模拟剂的火箭喷射器喷雾流动可视化

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摘要

A study was conducted at NASA-Lewis to compare the atomization characteristics of gelled and nongelled propellant simulants. A gelled propellant simulant composed of water, sodium hydroxide, and an acrylic acid polymer resin (as the gelling agent) was used to simulate the viscosity of an aluminum/PR-1 metallized fuel gel. Water was used as a comparison fluid to isolate the rheological effects of the water-gel and to simulate nongelled RP-1. The water-gel was injected through the central orifice of a triplet injector element and the central post of a coaxial injector element. Nitrogen gas flowed through the outer orifices of the triplet injector element and through the annulus of the coaxial injector element and atomized the gelled and nongelled liquids. Photographs of the water-gel spray patterns at different operating conditions were compared with images obtained using water and nitrogen. A laser light was used for illumination of the sprays. The results of the testing showed that the water sprays produced a finer and more uniform atomization than the water-gel sprays. Rheological analysis of the water-gel showed poor atomization caused by high viscosity of water-gel delaying the transition to turbulence.
机译:NASA-Lewis进行了一项研究,比较了胶状和非胶状推进剂模拟物的雾化特性。由水,氢氧化钠和丙烯酸聚合物树脂(作为胶凝剂)组成的胶凝推进剂模拟物用于模拟铝/ PR-1金属化燃料凝胶的粘度。水被用作比较液,以分离水凝胶的流变效应并模拟非凝胶化的RP-1。通过三重态注射器元件的中心孔和同轴注射器元件的中心柱注射水凝胶。氮气流过三重态注射器元件的外孔,并流过同轴注射器元件的环面,并使胶化和非胶化液体雾化。将在不同操作条件下水凝胶喷雾模式的照片与使用水和氮气获得的图像进行比较。使用激光照射喷雾。测试结果表明,水喷雾比水凝胶喷雾产生更细,更均匀的雾化。水凝胶的流变学分析表明,由于水凝胶的高粘度导致延迟向湍流的过渡而导致雾化较差。

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