Research on the Autonomous Control Technology Used in the Slurry Mixing System of Cementing Units

Author:

Gao Xiang1,Hou Guojian23,Yang Huiwen4,Hu Changmiao23,Cui Junguo23ORCID,Xiao Wensheng23

Affiliation:

1. Wanhua Chemical Group Co., Ltd., Yantai 264006, China

2. College of Mechanical and Electrical Engineering, China University of Petroleum, Qingdao 266580, China

3. National Engineering Research Center of Marine Geophysical Prospecting and Exploration and Development Equipment, Qingdao 266580, China

4. Cosco Shipping Heavy Industry Co., Ltd., Shanghai 200135, China

Abstract

Cementing is a critical link in oil and gas exploitation, in which slurry density control is particularly important. In this study, we examined a slurry mixing control system in order to solve the problem of time delays in the mixing system. The model of a slurry mixing system was built in accordance with the system’s structure. A Smith fuzzy PID (proportion integration differentiation) composite control solution is proposed herein, and the simulation results show that the adjustment time and overshoot are lower than those of the conventional PID control and Smith predictive compensation control. A genetic algorithm is utilized to optimize the quantization factor and scale factor of the Smith fuzzy PID controller. Following optimization, the rise time of the controller was found to be 0.45 s, which represents a decrease of 35.9%, the overshoot was reduced by 0.4%, and the stabilization time was reduced by 36.6%. Afterward, we built a cementing slurry mixing simulation experimental platform, and experiments were used to verify the feasibility and superiority of the Smith fuzzy PID controller optimized by the genetic algorithm in comparison with the conventional controllers. The study results thus provide a scientific basis for the engineering application of the autonomous control technology of the slurry mixing system in cementing units.

Publisher

MDPI AG

Reference25 articles.

1. Research on the New Problems and Development Direction Faced by Domestic Cementing at Present;Wen;Mod. Bus. Tra. Ind.,2018

2. Stable LPV Realization of the Smith Predictor;Blanchini;Int. J. Syst. Sci.,2016

3. Bai, J.B. (2006). Research on Adaptive Control of Test Room Air Conditioning System. [Master’s Thesis, Southeast University].

4. Application of PSO Tuned Fuzzy Logic Controller for LFC of Two-area Power System with Redox Flow Battery and PV Solar Park;Mohamed;Ain. Shams. Eng. J.,2022

5. Main Steam Pressure Control Technology Based on Mismatch Compensated Smith-RBF Neural Network;Gao;J. Chongqing Univ.,2019

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