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Experimental investigation of magnesium combustion in steam

机译:蒸汽中镁燃烧的实验研究

摘要

This paper presents a summary of the experimental results and studies of magnesium combustion in steam. The major subject of these studies was to measure the temperature of magnesium particles after the particles had been ejected from an exploding wire. The distribution of particle temperature along the track was measured by the two-color photo-pyrometry method (TC-PPM). A scanning microdensitometer served as a major data reduction tool in analyzing the film density due to the particle tracks as recorded on calibrated film. The initial temperature of the particle ejection from the plasma and at the beginning of combustion is 3430 K + or - 9.1%. At the initial phase of combustion, the particle consists of pure magnesium with spectral emissivity of about 0.25. During the combustion process, magnesium oxide is formed locally on the particle surface. The oxide is in liquid state with emissivity of 0.9. In the second stage of combustion there are changes on the particle surface in correlation with optical density variation and explained by emissivity variations due to peeling of the oxide film and exposure of the pure magnesium surface. Solidification of the particle, which is magnesium oxide, is observed at the measured temperature of 3125 K + or - 5.7%. The spearpoint effect, which is known in the literature as the Blick Effect, was observed at the end of the particle track. The particle supercools below the normal freezing point and then suddenly crystallizes.
机译:本文概述了蒸汽中镁燃烧的实验结果和研究。这些研究的主要主题是测量镁颗粒从爆炸金属丝中弹出后的温度。通过双色光度法(TC-PPM)测量沿轨道的颗粒温度分布。扫描微光密度计是主要的数据缩减工具,可用于分析由于记录在校准胶片上的颗粒轨迹而引起的胶片密度。从等离子体喷射和燃烧开始时的初始温度为3430 K +或-9.1%。在燃烧的初始阶段,颗粒由光谱发射率约为0.25的纯镁组成。在燃烧过程中,氧化镁在颗粒表面局部形成。氧化物为液态,发射率为0.9。在燃烧的第二阶段,与光密度的变化相关的是颗粒表面的变化,这可以解释为由于氧化膜剥离和纯镁表面暴露而导致的发射率变化。在测得的温度3125 K +或-5.7%处观察到颗粒(为氧化镁)的固化。在粒子轨迹的末端观察到了矛点效应,在文献中称为“布里克效应”。颗粒过冷至正常凝固点以下,然后突然结晶。

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  • 作者

    Chozev Yair;

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  • 年度 1985
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