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A Steam-Plasma Igniter for Aluminum Powder Combustion

机译:铝粉燃烧用蒸汽等离子点火器

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摘要

High-temperature ignition is essential for the ignition and combustion of energetic metal fuels, including aluminum and magnesium particles which are protected by their high-melting-temperature oxides. A plasma torch characterized by an ultrahigh-temperature plasma plume fulfills such high-temperature ignition conditions. A new steam plasma igniter is designed and successfully validated by aluminum power ignition and combustion tests. The steam plasma rapidly stabilizes in both plasma and steam jet modes. Parametric investigation of the steam plasma jet is conducted in terms of arc strength. A high-speed camera and an oscilloscope method visualize the discharge characteristics, and optical emission spectroscopy measures the thermochemical properties of the plasma jet. The diatomic molecule OH fitting method, the Boltzmann plot method, and short exposure capturing with an intensified charge coupled device record the axial distributions of the rotational gas temperature, excitation temperature, and OH radical distribution, respectively. The excitation temperature at the nozzle tip is near 5500 K, and the gas temperature is 5400 K.
机译:高温点火对于高能金属燃料(包括铝和镁颗粒)的点火和燃烧是至关重要的,这些金属燃料受到其高熔点氧化物的保护。具有超高温等离子羽流的等离子炬满足了这种高温点火条件。设计了一种新型蒸汽等离子点火器,并通过铝功率点火和燃烧测试成功地对其进行了验证。蒸汽等离子体在等离子体和蒸汽喷射模式下均迅速稳定。蒸汽等离子体射流的参数研究是根据电弧强度进行的。高速相机和示波器方法可观察到放电特性,而光发射光谱仪可测量等离子体射流的热化学性质。双原子分子OH拟合方法,玻尔兹曼图法和使用增强的电荷耦合器件进行的短时间曝光捕获分别记录了旋转气体温度,激发温度和OH自由基分布的轴向分布。喷嘴尖端的激发温度接近5500 K,气体温度为5400K。

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