首页> 外文期刊>Journal of nuclear science and technology >A Correlation in Displacement Velocity of Liquid Film Boundary formed on a Heated Vertical Surface in Emergency Cooling
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A Correlation in Displacement Velocity of Liquid Film Boundary formed on a Heated Vertical Surface in Emergency Cooling

机译:紧急冷却中在加热的垂直表面上形成的液膜边界位移速度的相关性

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Intense ebullition occurs at the liquid front heading a falling sheet of water over a heated vertical surface, as in the case of emergency cooling. It has been ascertained that the displace-ment velocity of this liquid front is nearly constant for the values of specified parameters such as wall temperature before cooling, flow rate of cooling liquid, and the physical properties of heated wall and cooling liquid. Observations were conducted on the liquid front velocity using a heated wall of stainless-steel and with tap water as cooling liquid. An analysis has been made on the basis of a two-dimensional transient heat conduction model, the result of which proves to be valid for explaining the liquid front behavior when account is taken of boiling heat transfer. The liquid front velocity is given bywhere N denotes a reference state. The above relation is applicable in the region of flow rate from 0.245 kg/m ? sec to 2.45 kg/m ? sec.
机译:与紧急冷却的情况一样,强烈的沸腾发生在液体前端,在加热的垂直表面上流下一片水。已经确定,对于特定参数的值,例如冷却之前的壁温,冷却液的流量以及加热的壁和冷却液的物理性质,该液体前沿的位移速度几乎是恒定的。使用不锈钢加热壁并以自来水作为冷却液,对液体前沿速度进行了观察。在二维瞬态热传导模型的基础上进行了分析,其结果被证明对于解释考虑沸腾传热的液体前沿行为是有效的。液体前沿速度由下式给出:其中N表示参考状态。上述关系适用于流量为0.245 kg / m? sec至2.45 kg / m?秒

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