Experimental study on atomization phenomena of kerosene in supersonic cold flow

来源 :Science in China(Series E:Technological Sciences) | 被引量 : 0次 | 上传用户:huoqiyin
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Experiments were conducted to study the atomization phenomena of kerosene jet in supersonic flow. The kerosene jet was driven by compressed nitrogen. Mean-while,the shadowgraph and planar laser-induced fluorescence (PLIF) were used to visualize the flow field in the case of different total pressure and jet pressure. The results imply the followings: The combination of shadowgraph and PLIF is a rea-sonable method to study the atomization phenomena in supersonic flow. PLIF can detect the distribution of kerosene droplets accurately. Shadowgraph can visualize the wave structure. Higher jet-to-freestream dynamic pressure initiates higher penetration height and the jet column will be easier to breakup and atomize,but it also induces stronger shock waves and aggravate total pressure lost. Three-di-mensional,unsteady surface wave plays an important role in making the jet break up and atomize. Higher jet-to-freestream dynamic pressure will accelerate the de-velopment of surface wave and enlarge the amplitude of surface wave,while lower jet-to-freestream ratio will inhibit the development of surface wave. Experiments were conducted to study the atomization phenomena of kerosene jet in supersonic flow. The-kerosene jet was driven by compressed nitrogen. Mean-while, the shadowgraph and planar laser-induced fluorescence (PLIF) were used to visualize the flow field in the case of The results imply the followings: The combination of shadowgraph and PLIF is a rea-sonable method to study the atomization phenomena in supersonic flow. PLG can detect the distribution of kerosene droplets accurately. Shadowgraph can visualize the wave structure Higher jet-to-freestream dynamic pressure initiates higher penetration height and the jet column will be easier to breakup and atomize, but it also induces stronger shock waves and aggravate total pressure lost. Three-di-mensional, unsteady surface wave plays an important role in making the jet break up and atomize. Higher jet-to-freestream dynamic pressure will accelerate the de-development of surface wave and enlarg e the amplitude of surface wave, while lower jet-to-freestream ratio will inhibit the development of surface wave.
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