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Quantitative Salt-Water Modeling of Fire-Induced Flows for Convective Heat Transfer Model Development

机译:对流传热模型开发中火源流的盐水定量建模

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This research provides a detailed analysis of convective heat transfer in ceiling jets by using a quantitative salt-water modeling technique. The methodology of quantitative salt-water modeling builds on the analogy between salt-water flow and fire induced flow, which has been successfully used in the qualitative analysis of fires. Planar laser induced fluorescence and laser doppler velocimetry have been implemented to measure the di-mensionless density difference and velocity in salt-water plumes. The quantitative saltwater modeling technique has been validated through comparisons of appropriately scaled salt-water measurements, fire measurements, and theory. This analogy has been exploited to develop an engineering heat transfer model for predicting heat transfer in impinging fire plumes using salt-water measurements along with the adiabatic wall modeling concept. Combining quantitative salt-water modeling and adiabatic wall modeling concepts introduces new opportunities for studying heat transfer issues in basic and complex fire induced flow configurations.
机译:这项研究通过使用定量盐水建模技术,对吊顶射流中的对流传热进行了详细分析。盐水定量建模的方法建立在盐水流与火诱发流之间的类比基础上,已成功地用于火的定性分析中。已经实施了平面激光诱导荧光和激光多普勒测速仪来测量盐水羽流中的无量纲密度差和速度。盐水定量建模技术已经通过比较适当比例的盐水测量值,火灾测量值和理论进行了验证。已经利用这种类比来开发工程传热模型,以使用盐水测量和绝热壁建模概念来预测撞击火羽中的传热。将定量盐水建模和绝热壁建模概念相结合,为研究基本和复杂火灾引起的流动配置中的传热问题提供了新的机会。

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