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首页> 外文期刊>Journal of Engineering and Technology Research >Responses application to monitor and predict crude oil distillation rate using pneumatic control system on a furnace
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Responses application to monitor and predict crude oil distillation rate using pneumatic control system on a furnace

机译:响应应用程序,用于在炉上使用气动控制系统监控和预测原油蒸馏速率

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In this paper, mathematical model were developed to evaluate the different types of responses for monitoring and predicting the furnace output temperature of crude oil at various time intervals. Result obtain reveals increase in furnace output temperature with increase in coefficient of time for different input signal at constant time. Similarly, as the time increases, it is observed that the furnace output temperature increases as well as presented in this research work. At constant coefficient of time, it is observe that the furnace output temperature increases with increase in time for step input, ramp input, and impulse. The order of magnitude in terms output temperature is ramp input step input impulse at constant time coefficient of 10 s-1. The model developed was used principally to monitor and control the temperature of the crude oil entering the crude distillation column also to account for the effect of the variations in the finance fuel flow rate and the influence of the changes in the feed temperature and using the model dynamic open loop simulations are performed, and approximation based on parallel linear transfer function models are fitted to various input responses. The result obtained from the model was compared with existing furnace data of Nigerian Liquefied Natural Gas (NLNG) which indicates that step input response was used in the design of their furnace.
机译:本文建立了数学模型,以评估在不同时间间隔监测和预测原油炉输出温度的不同类型的响应。获得的结果表明,对于恒定时间的不同输入信号,炉子输出温度随时间系数的增加而增加。类似地,随着时间的增加,观察到炉子的输出温度也增加了,正如本研究工作所介绍的。在恒定的时间系数下,可以观察到炉子的输出温度随着阶跃输入,斜坡输入和脉冲时间的增加而增加。就输出温度而言,数量级为斜坡输入>阶跃输入>恒定时间系数10 s-1时的脉冲。开发的模型主要用于监视和控制进入原油蒸馏塔的原油温度,还考虑了财务燃料流量变化的影响以及进料温度变化的影响,并使用该模型进行动态开环仿真,并将基于并行线性传递函数模型的近似值拟合到各种输入响应。从模型中获得的结果与尼日利亚液化天然气(NLNG)的现有熔炉数据进行了比较,这表明在其熔炉的设计中使用了阶跃输入响应。

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