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Effect Of Oxide Layers On Spray Water Cooling Heat Transfer At High Surface Temperatures

机译:高表面温度下氧化物层对喷雾水冷却换热的影响

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The influence of surface oxidation phenomena on spray water cooling heat transfer is an important issue in steel industry. In practical applications, spray cooling is regularly used for the cooling of steel surfaces from high temperatures with an (initial) oxide (scale) layer. This paper investigates the changes in the heat transfer due to the oxide layer and its removal during cooling. After a theoretical treatment of the principal effects of thin and stable layers, the heat transfer coefficient was measured by an automated cooling test stand (instationary method) for oxidized steel samples. The heat transfer is described by the concept of an effective heat transfer coefficient. Compared to the clean surface state, scale layers show a different effective heat transfer coefficient in the transition boiling regime. Additionally, the local delamination of the oxide, the formation of vapor gaps at the oxide-metal interface and the movement of scale plates makes the heat transfer more erratic. The heat transfer is therefore inhomogencous and has to be described statistically. For water temperatures around 291 K, surface temperatures between 473 and 1173 K, i.e. △T > 180 K and water impact densities between V_s = 3 and 30 kg/(m~2 s) the heat transfer coefficient a was measured. As sample material, different steel grades, oxidized in air for a specific time (0,...,80 μm scale layer) were used. The results are compared with the clean surface state.
机译:表面氧化现象对喷雾水冷却换热的影响是钢铁行业的重要问题。在实际应用中,通常使用喷雾冷却来从(初始)氧化物(氧化皮)层从高温冷却钢表面。本文研究了由于氧化层引起的传热变化及其在冷却过程中的去除。在理论上处理了薄而稳定的层的主要作用之后,通过自动冷却试验台(固定方法)对氧化的钢样品测量了传热系数。通过有效传热系数的概念来描述传热。与干净的表面状态相比,水垢层在过渡沸腾状态下显示出不同的有效传热系数。另外,氧化物的局部分层,在氧化物-金属界面处形成蒸汽间隙以及刻度盘的移动使热传递更加不稳定。因此,传热是不均匀的,必须进行统计学描述。对于大约291 K的水温,在473和1173 K之间的表面温度(即△T> 180 K)和水冲击密度在V_s = 3和30 kg /(m〜2 s)之间,测量了传热系数a。作为样本材料,使用了在空气中氧化特定时间(0,...,80μm氧化皮)的不同等级的钢。将结果与清洁的表面状态进行比较。

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