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Development of Pig Iron and Molten Slag Level Measurement Technique for Blast Furnace

机译:高炉生铁,熔渣水平测量技术的发展。

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Measurement of the pig iron and slag level in the blast furnace is essential to operate the furnace stably because an increase of these liquids level can cause fluctuations of the pressure in the furnace or the temperature of the furnace which are related to the furnace condition and may finally result in reduced productivity or serious trouble.The conventional method is the EMF (electromotive force) measurement correlated with the liquid level. It can be thought that a voltage generated electrochemically (as in a battery) by the reduction reaction of iron oxides. However some reports said that EMF sometimes loses correlation with the liquid level because of thermal influence.In this paper a new method is proposed using a quite small electrical resistance measurement of the hearth of a blast furnace which contains pig iron and molten slag. Accordingly the four point contact method was adopted and a pseudo random signal as a current pattern was fed to improve the S/N ratio.Measurements were done at plural positions along the circumference of the blast furnace. However when the current signal is independently fed at each position, spike noises are generated. These noises are originated in the induced voltage which is generated at neighbor positions when the polarity of the current changes. But finally this noise problem can be solved by feeding synchronized current and measuring the signal on the noiseless timing.The measurement results indicated that the level in the hearth is not necessary identical at all positions.
机译:高炉中生铁和炉渣水平的测量对于稳定运行炉至关重要,因为这些液位的增加会引起炉中压力或炉温的波动,这与炉况有关,并且可能最终导致生产率下降或严重麻烦。传统方法是与液位相关的EMF(电动势)测量。可以认为由于氧化铁的还原反应而在电化学上(如在电池中)产生电压。然而,有报道称,由于热的影响,电动势有时会与液位失去相关性。本文提出了一种新的方法,该方法使用了一个非常小的电阻测量高炉炉膛,其中包含生铁和熔渣。因此,采用四点接触法,并以伪随机信号作为电流模式,以提高信噪比。在高炉周围的多个位置进行了测量。但是,当在每个位置独立馈送电流信号时,会产生尖峰噪声。这些噪声源于感应电压,感应电压是在电流极性改变时在相邻位置产生的。但是最终可以通过馈入同步电流并在无噪声的定时测量信号来解决该噪声问题。测量结果表明,炉膛中的电平不一定在所有位置都相同。

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