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Heat Pipe Cooling of Copper Block Tapholes

机译:铜块开孔的热管冷却

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摘要

Copper-block tapholes are used in many types of metallurgical furnaces and are typically water cooled. There are three major disadvantages to such a system: firstly, when operated beyond design parameters, failure of the cooling channels may occur. Secondly, excessively large quantities of water are passed through the cooling channels in order to prevent vapour formation, leading to extensive and costly water-pumping infrastructure. Thirdly, the heat energy extracted from the tapholes is of such low grade that it cannot be recovered or recycled economically for use elsewhere in the plant. By retrofitting existing tapholes with heat pipes, the thermal energy from the tapholes can first be moved out of and away from the molten metal, and then be dissipated into a cooling fluid such as water. By no longer passing high-pressure, high-velocity water close to the tapping hole of the copper block, the formation of vapour is no longer a hazard. Therefore, the flow of water can be decreased to a fraction of what is required for conventional water cooling, and can extract a correspondingly greater quantity of heat per unit of flow. The resulting heat energy stored in the water is of a much higher grade, is much more useful in terms of energy recovery, and can be used elsewhere in the plant.
机译:铜块出铁口用于许多类型的冶金炉中,通常用水冷却。这种系统具有三个主要缺点:首先,当运行超出设计参数时,冷却通道可能发生故障。其次,过多的水流过冷却通道,以防止形成蒸汽,从而导致广泛而昂贵的抽水基础设施。第三,从出铁孔提取的热能的等级很低,以至于不能经济地回收或再循环以用于工厂的其他地方。通过用热管改造现有的出铁口,来自出铁口的热能可以首先从熔融金属中移出,然后散发到诸如水的冷却液中。通过不再使高压,高速水靠近铜块的排出口,蒸汽的形成不再是危险。因此,水的流量可以减少到常规水冷却所需的一部分,并且每单位流量可以提取相应更多的热量。最终存储在水中的热能的等级更高,就能量回收而言更有用,并且可以在工厂的其他地方使用。

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