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Learning From Experience: An Automatic pH Neutralization System Using Hybrid Fuzzy System and Neural Network

机译:从经验中学习:使用混合模糊系统和神经网络的自动pH中和系统

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In oil and gas industry, the pH level is one of the most important indicators of mud contamination while drilling. Although the process has simple components, the pH neutralization process is complicated in the mud circulation system. This difficulty is due to the high nonlinearity of the process. In this paper, the fuzzy neural network (FNN) is integrated to the fuzzy logic controller (FLC) to create a system which identifies pH fluctuation into a drilling mud system, assesses and signals its severity. And then, it automatically actuates a chemical treating fluids valve (CTFV), such as Caustic Soda (CS), for neutralizing the drilling fluid pH level while circulating.In this work, an integrated mud circulation lab-scaled system is used to mimic the pH neutralization (e.g., because of the H2S intrusion) while drilling the hydrogen sulfide bearing zones. The system contains several significant nonlinearities such as sudden pH reduction appearances that stretch the ability of simple controllers in achieving satisfactory performance. The results show, the FLC can be used successfully to stabilize any chosen operating point of the system and to deal with nonlinearities (uncertainties of a model). All derived results are validated by computer simulation of a nonlinear mathematical model of the lab-scaled mud neutralization system.The presented FNN in this work demonstrates a reliable response to neutralize the circulated drilling fluid pH, through a quick, safe, and automatic initiation of appropriate treatment.
机译:在石油和天然气工业中,PH水平是钻井时最重要的泥浆污染指标之一。虽然该过程具有简单的组件,但在泥浆循环系统中,pH中和过程复杂化。这种困难是由于该过程的高度非线性。在本文中,模糊神经网络(FNN)集成到模糊逻辑控制器(FLC)以创建一个系统,该系统将pH波动识别到钻井泥浆系统中,评估和发出严重性。然后,它可以自动致动化学处理流体阀(CTFV),例如苛性钠(CS),用于在循环的同时中和钻井液pH水平。在这项工作中,综合泥浆循环实验室缩放系统用于模拟在钻硫化氢轴承区域的同时,pH中和(例如,由于H2S侵入)。该系统含有几种显着的非线性,例如突然的pH减少出场,其延伸了简单控制器在实现令人满意的性能方面的能力。结果表明,FLC可以成功地使用,以稳定系统的任何选择的操作点并处理非线性(模型的不确定性)。所有导出的结果都是通过实验室级泥浆中和系统的非线性数学模型的计算机模拟验证。本工作中所呈现的FNN证明了通过快速,安全和自动启动来中和循环钻井液pH的可靠响应适当的治疗。

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