首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Heat Transfer to the Wall of End Gas Side during Propagation of Premixed Flame in a Closed Vessel (Heat Flux Measurements by Both Interference Image Analysis and Thin Surface Thermocouple Methods)
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Heat Transfer to the Wall of End Gas Side during Propagation of Premixed Flame in a Closed Vessel (Heat Flux Measurements by Both Interference Image Analysis and Thin Surface Thermocouple Methods)

机译:在密闭容器中传播预混火焰期间,热量传递至末端气体壁(通过干涉图像分析和薄表面热电偶方法测量热通量)

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摘要

It is necessary to know the heat flux near a wall in order to understand the unsteady heat transfer in a combustion chamber. In this study, a fuel-air mixture was ignited at the center of a constant-volume vessel and the heat flux was determined from the change in the temperature distribution in the boundary layer near the wall of the end gas side by analyzing the interference image. The heat flux was compared with that from a thin surface coaxial thermocouple with high response. It was found that before the flame arrives at the wall, the heat transfer is smaller than the thermal radiation from the flame, and the temperature of unburned gas changes nearly adiabatically. After the flame reaches the wall, the heat flux due to the temperature gradient becomes larger than that due to the thermal radiation.
机译:为了了解燃烧室内的不稳定传热,有必要知道壁附近的热通量。在这项研究中,在恒定容积容器的中心点燃了一种燃料-空气混合物,并通过分析干扰图像,根据端气侧壁附近边界层中温度分布的变化来确定热通量。 。将热通量与来自具有高响应性的薄表面同轴热电偶的热通量进行了比较。发现在火焰到达壁之前,传热小于火焰的热辐射,并且未燃烧气体的温度几乎绝热地变化。火焰到达壁后,由于温度梯度引起的热通量要大于由于热辐射引起的热通量。

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