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首页> 外文期刊>International Journal of Heat and Mass Transfer >Gas formation in sand and clay during electrical resistance heating
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Gas formation in sand and clay during electrical resistance heating

机译:电阻加热期间沙子和粘土中的气体形成

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摘要

A series of electrical resistance heating (ERH) experiments were performed in a two-dimensional test cell to investigate gas production within clay lenses composed of specified mass fractions of kaolin and #20-30 silica sand (40%, 70% and 100% kaolin by mass). Temperature, electrical, photographic and piezometric data were collected during the heating of the test cell by ERH, followed by local electrical resistance measurements during cooling. In each experiment the clay lens heated more rapidly than the surrounding sand, with gas production originating at the clay-sand interface and subsequently extending outwards. The Waxman-Smits model was used to interpret electrical properties to assess the production of gas within the lens. Gas saturations immediately after ERH were estimated in the lens interiors as S_g = 0.38 ± 0.07, 0.25 + 0.05 and 0.09 ± 0.02 (for the 40%, 70% and 100% clay mass fractions). Gas saturations sufficient to produce a connected gas phase can be generated during ERH in lenses containing moderate amounts of clay.
机译:在二维测试室中进行了一系列电阻加热(ERH)实验,以研究由指定质量分数的高岭土和#20-30硅砂(40%,70%和100%高岭土)组成的粘土透镜中的气体产生按质量)。在通过ERH加热测试电池的过程中,收集了温度,电学,照相和测压数据,然后在冷却过程中进行了局部电阻测量。在每个实验中,粘土透镜的加热速度都比周围的沙子快,气体的产生源自粘土-砂的界面,然后向外扩展。 Waxman-Smits模型用于解释电学性质,以评估镜片内气体的产生。在镜片内部,ERH之后立即产生的气体饱和度估计为S_g = 0.38±0.07、0.25 + 0.05和0.09±0.02(对于40%,70%和100%的粘土质量分数)。在含有适量粘土的镜片的ERH中,可能会产生足以产生连通气相的饱和气体。

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