Yohanes Daud Suherman, Edilla Edilla
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引用次数: 0

摘要

氢气控制系统是HCl制造过程中的氢气控制系统。这种控制是需要控制氢气的存在超过容量或低容量在HCl燃烧器,导致产品故障。氢气是制造HCl的第一步,需要考虑其参数,包括控制阀、流量变送器和压力变送器。在本研究中,可以操作控制器来调节HCl燃烧器上的氢气控制阀管路开度。然后通过2个变送器测量流量和压力来确定进入HCl燃烧器的氢气的设定值。此外,由变送器测量的信号将提供反馈,使流量和压力值出现在控制器上。通过对比系统上的数据和现场的实际数据,确保观测到参数数据。从该控制系统的观测数据来看,在控制阀开度参数为34%的情况下,HCl生产初期的氢气需要量可以在1小时内完成,通过打开控制阀可知流量变送器指示值为34 kg/h,变送器压力为9kPa,因此流量和压力指示值可以用于后期的HCl生产过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sistem Kendali Hidrogen Pada HCl Burner Menggunakan Controller Yokogawa
The hydrogen control system is a hydrogen control system in the HCl manufacturing process. This control is needed to control the presence of hydrogen over capacity or low capacity in the HCl burner, resulting in product failure. Hydrogen is one of the first steps for making HCl, which needs to be considered for its parameters, consisting of a control valve, flow transmitter, and pressure transmitter. In this study, a controller can be operated to adjust the hydrogen control valve line opening on the HCl burner. Then to find out the set point value of hydrogen entering the HCl burner, 2 transmitters measure flow and pressure. Furthermore, the signal measured by the transmitter will provide feedback so that the flow and pressure values appear on the controller. To ensure that the parameter data has been observed by comparison between the data on the system and the actual data in the field. From the observational data of this control system, the need for hydrogen for the initial stage of HCl production can be carried out within 1 hour with the control valve opening parameter of 34%, so that by opening the control valve it is known that the flow transmitter indication is 34 kg/hour and the transmitter pressure is 9kPa, so from flow and pressure indications can be used for later stages of the HCl manufacturing process.
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