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Bionic Optimization Design of Electronic Nose Chamber for Oil and Gas Detection 被引量:6
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作者 Zhiyong Chang Youhong Sun +5 位作者 Yuchen Zhang Yanli Gao Xiaohui Weng Donghui Chen Liewe David Jun Xie 《Journal of Bionic Engineering》 SCIE EI CSCD 2018年第3期533-544,共12页
In this paper, a miniaturized bionic electronic nose system is developed in order to solve the problems arising in oil and gas detection for large size and inflexible operation in downhole. The bionic electronic nose ... In this paper, a miniaturized bionic electronic nose system is developed in order to solve the problems arising in oil and gas detection for large size and inflexible operation in downhole. The bionic electronic nose chamber is designed by mimicking human nasal turbinate structure, V-groove structure on shark skin surface and flow field distribution around skin surface. The sensitivity of the bionic electronic nose system is investigated through experimentation. Radial Basis Function (RBF) and Support Vector Machines (SVM) of 10-fold cross validation are used to compare the recognition performance of the bionic electronic nose system and common one. The results show that the sensitivity of the bionic electronic nose system with bionic composite chamber (chamber B) is significantly improved compared with that with common chamber (chamber A). The recognition rate of chamber B is 4.27% higher than that of chamber A for the RBF algorithm, while for the SVM algorithm, the recognition rate of chamber B is 5.69% higher than that of chamber A. The three-dimensional simulation model of the chamber is built and verified by Computational Fluid Dynamics (CFD) simulation analysis. The number of vortices in chamber B is fewer than that in chamber A. The airflow velocity near the sensors inside chamber B is slower than that inside chamber A. The vortex intensity near the sensors in chamber B is 2.27 times as much as that in chamber A, which facilitates gas molecules to fully contact with the sensor surface and increases the intensity of sensor signal, and the contact strength and time between odorant molecules and sensor surface. Based on the theoretical investigation and test validation, it is believed that the proposed bionic electronic nose system with bionic composite chamber has potential for oil and gas detection in downhole. 展开更多
关键词 electronic nose bionic chamber sensorS oil gas detection
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提升机钢丝绳载荷动态监测装置的设计及试验 被引量:1
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作者 陈纲 《机械管理开发》 2023年第6期85-87,共3页
针对矿井提升机吊挂时的钢丝绳振动、冲击等问题,研究了对处于动态状态下的钢丝绳张力监测工作,介绍了一种新型的油腔传感器,并将其安装于液压缸的活塞杆与滑块之间,通过将应力信号转化为活塞杆、滑块的压力信号,可有效地消除张力传感... 针对矿井提升机吊挂时的钢丝绳振动、冲击等问题,研究了对处于动态状态下的钢丝绳张力监测工作,介绍了一种新型的油腔传感器,并将其安装于液压缸的活塞杆与滑块之间,通过将应力信号转化为活塞杆、滑块的压力信号,可有效地消除张力传感器与钢丝绳串联产生的安全隐患,保证系统的安全运行。 展开更多
关键词 提升机 钢丝绳张力 油腔传感器 动态监测
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基于仿生鼻腔优化的油气检测方法与实验新技术
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作者 翁小辉 孙友宏 +2 位作者 张书军 谢军 常志勇 《吉林大学学报(工学版)》 EI CAS CSCD 北大核心 2020年第1期382-388,共7页
设计了一种适用于油气检测的小型仿生电子鼻系统。通过分析狗鼻腔鼻流道内部的结构特征及流场分布情况,提出了模拟狗鼻腔的仿生电子鼻腔室,解决油气检测装置尺寸臃肿、操作不灵活等问题。使用3D打印腔室样件进行烃类混合气体检测对比试... 设计了一种适用于油气检测的小型仿生电子鼻系统。通过分析狗鼻腔鼻流道内部的结构特征及流场分布情况,提出了模拟狗鼻腔的仿生电子鼻腔室,解决油气检测装置尺寸臃肿、操作不灵活等问题。使用3D打印腔室样件进行烃类混合气体检测对比试验,采用十折交叉验证法比较随机森林、朴素贝叶斯、极限学习机和支持向量机算法识别效果。结果表明,优化检测腔室后的电子鼻系统灵敏度较普通腔室电子鼻系统有明显提高,识别率提高5.5%,构建的三维仿真腔室CFD分析结果也验证了本文仿生腔室的有效性。 展开更多
关键词 仪器仪表技术 电子鼻 狗鼻腔 仿生设计 油气检测 传感器
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