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A novel method to detect the water leakage from tuyere nose cooling circuit in blast furnace

机译:检测高炉风口鼻冷却回路漏水的新方法

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摘要

The water cooled tuyere noses, through which hot blast is blown into the furnace, are exposed to very high temperature region of raceway inside the furnace. As a result the chances of rupture of cooling pipes within the tuyere nose are significantly high. The rupture causes water dripping into the furnace and if it continues and unnoticed for a prolonged period it lowers down the local raceway temperature and thus adversely affects the product hot metal and slag quality. Moreover, with heavy water leakage, there is a danger of explosion; monitoring of the cooling water is therefore essential. Despite the availability of water flow metre at each tuyere it is difficult to identify the leaking tuyere at the early stage unless the rupture size grows bigger and so the leakage. In several cases the furnace is forced to shut down to manually inspect the leakage occurring without prior knowledge of the exact tuyere number. Identification of water leakage at an early stage is therefore necessary to prevent process disturbances due to chilling of the furnace and avoid the unscheduled downtime for tuyere replacement. This paper presents a method to identify the water leakage from tuyere nose cooling circuit in blast furnace and the adverse effect of water leakage on the performance of the blast furnace. A system called water leak detection system is developed for different blast furnaces in Tata Steel Jamshedpur to monitor the water leakage through tuyere nose and identify the exact leaking tuyere based on a dimensionless number called leak detection factor.
机译:水冷的风口鼻将热风吹入炉口,并暴露于炉内滚道的高温区域。结果,风口鼻部中的冷却管破裂的机会非常高。破裂会导致水滴入熔炉,如果持续不断且长时间不被注意,则会降低局部滚道温度,从而对产品铁水和炉渣质量产生不利影响。此外,漏水严重时,有爆炸的危险;因此,监控冷却水至关重要。尽管每个风口都有水流量计,但除非破裂尺寸变大,否则泄漏很难在早期识别出泄漏的风口。在某些情况下,炉子被迫关闭以手动检查发生的泄漏,而无需事先知道确切的风口数。因此,必须尽早识别出漏水现象,以防止由于炉子的冷却而引起的工艺干扰,并避免更换风口的计划外停机时间。本文提出了一种识别高炉风口冷却回路漏水的方法,以及漏水对高炉性能的不利影响。塔塔钢铁查姆德斯珀(Tata Steel Jamshedpur)的不同高炉都开发了一种称为漏水检测系统的系统,以监控通过风口机头漏水的情况,并根据称为漏水检测因子的无因次数来确定确切的漏风口。

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