Research on key technology and engineering application of emulsion pump in super-high mining face

With the continuous development and progress of intelligent unmanned mining technology in coal mines, more and more intelligent unmanned fully-mechanized mining faces with large mining heights and super mining heights have been built and put into production, and high-efficiency intelligent fully-mec...

Full description

Saved in:
Bibliographic Details
Main Authors: Ran LI, Jian YE, Haicheng LU, Yuehua LAI, Hao LIU, Rongming CHEN, Tianliang YU, Yan KANG, Chuliang WANG, Dalong WANG
Format: Article
Language:zho
Published: Editorial Department of Coal Science and Technology 2024-11-01
Series:Meitan kexue jishu
Subjects:
Online Access:http://www.mtkxjs.com.cn/article/doi/10.12438/cst.2024-1019
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850060845714767872
author Ran LI
Jian YE
Haicheng LU
Yuehua LAI
Hao LIU
Rongming CHEN
Tianliang YU
Yan KANG
Chuliang WANG
Dalong WANG
author_facet Ran LI
Jian YE
Haicheng LU
Yuehua LAI
Hao LIU
Rongming CHEN
Tianliang YU
Yan KANG
Chuliang WANG
Dalong WANG
author_sort Ran LI
collection DOAJ
description With the continuous development and progress of intelligent unmanned mining technology in coal mines, more and more intelligent unmanned fully-mechanized mining faces with large mining heights and super mining heights have been built and put into production, and high-efficiency intelligent fully-mechanized mining technology and equipment have achieved a leap forward development, which also puts forward new challenges and requirements for the liquid supply capacity of intelligent liquid supply system in coal mines.In order to meet the liquid supply demand of intelligent unmanned fully mechanized mining face with super high mining height, the problems of emulsion pump under the complicated working condition of super large flow were analyzed and summarized, and the key technologies to improve the reliability of super large flow emulsion pump station were studied.A new type of shaft system based on herringbone gear pair input shaft and crankshaft is designed, which solves the problem of low stability of gear pair transmission system in megawatt pump station system. The reliability analysis of the reciprocating cross-liner friction pair and the key bearings of the megawatt transmission system is carried out to improve the reliability of the transmission pair. Through dynamic characteristic analysis of valve, visualization technology and high reliability sealing technology research, the performance of high-efficiency cavitation valve is improved. A cavitation suppression method and structure based on permanent magnet intrinsic safety electromagnet and air pocket enrolling are studied to improve the response characteristics of the pilot stage and the anti-cavitation characteristics of the unloading valve port, thus improving the reliability of the high-pressure large-flow unloading valve. The safety and availability of high pressure and large flow pumping stations have been improved through the innovative development of the intelligent early warning and diagnosis system of cloud edge end cooperation. A new type of shaft system based on herringbone gear pair input shaft and crankshaft is designed, which solves the problem of low stability of gear pair transmission system in megawatt pump station system. The reliability analysis of the reciprocating cross-liner friction pair and the key bearings of the megawatt transmission system is carried out to improve the reliability of the transmission pair. Through dynamic characteristic analysis of valve, visualization technology and high reliability sealing technology research, the performance of high-efficiency cavitation valve is improved. A cavitation suppression method and structure based on permanent magnet intrinsic safety electromagnet and air pocket enrolling are studied to improve the response characteristics of the pilot stage and the anti-cavitation characteristics of the unloading valve port, thus improving the reliability of the high-pressure large-flow unloading valve. The safety and availability of high pressure and large flow pumping stations have been improved through the innovative development of the intelligent early warning and diagnosis system of cloud edge end cooperation.Finally, the high-power-to-weight ratio 1250 L/min, 40 MPa five-plunker emulsion pump was developed and designed, and a complete set of demonstration applications was carried out in the 122104 fully mechanized mining face of Caojiatan Coal Mine of Shaanxi Coal Group, that is, the world's first 10 m super-high intelligent fully mechanized mining face. The successful development of super large flow intelligent emulsion pump station provides a new idea for the configuration of pump station of integrated liquid supply system of super large mining height intelligent fully mechanized mining face.
format Article
id doaj-art-c01b5a237a5e4dc9a2bddc1177e2df7e
institution DOAJ
issn 0253-2336
language zho
publishDate 2024-11-01
publisher Editorial Department of Coal Science and Technology
record_format Article
series Meitan kexue jishu
spelling doaj-art-c01b5a237a5e4dc9a2bddc1177e2df7e2025-08-20T02:50:26ZzhoEditorial Department of Coal Science and TechnologyMeitan kexue jishu0253-23362024-11-01521115316210.12438/cst.2024-10192024-1019Research on key technology and engineering application of emulsion pump in super-high mining faceRan LI0Jian YE1Haicheng LU2Yuehua LAI3Hao LIU4Rongming CHEN5Tianliang YU6Yan KANG7Chuliang WANG8Dalong WANG9Beijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaBeijing Tianma Intelligent Control Technology Co., Ltd., Beijing 101399, ChinaWith the continuous development and progress of intelligent unmanned mining technology in coal mines, more and more intelligent unmanned fully-mechanized mining faces with large mining heights and super mining heights have been built and put into production, and high-efficiency intelligent fully-mechanized mining technology and equipment have achieved a leap forward development, which also puts forward new challenges and requirements for the liquid supply capacity of intelligent liquid supply system in coal mines.In order to meet the liquid supply demand of intelligent unmanned fully mechanized mining face with super high mining height, the problems of emulsion pump under the complicated working condition of super large flow were analyzed and summarized, and the key technologies to improve the reliability of super large flow emulsion pump station were studied.A new type of shaft system based on herringbone gear pair input shaft and crankshaft is designed, which solves the problem of low stability of gear pair transmission system in megawatt pump station system. The reliability analysis of the reciprocating cross-liner friction pair and the key bearings of the megawatt transmission system is carried out to improve the reliability of the transmission pair. Through dynamic characteristic analysis of valve, visualization technology and high reliability sealing technology research, the performance of high-efficiency cavitation valve is improved. A cavitation suppression method and structure based on permanent magnet intrinsic safety electromagnet and air pocket enrolling are studied to improve the response characteristics of the pilot stage and the anti-cavitation characteristics of the unloading valve port, thus improving the reliability of the high-pressure large-flow unloading valve. The safety and availability of high pressure and large flow pumping stations have been improved through the innovative development of the intelligent early warning and diagnosis system of cloud edge end cooperation. A new type of shaft system based on herringbone gear pair input shaft and crankshaft is designed, which solves the problem of low stability of gear pair transmission system in megawatt pump station system. The reliability analysis of the reciprocating cross-liner friction pair and the key bearings of the megawatt transmission system is carried out to improve the reliability of the transmission pair. Through dynamic characteristic analysis of valve, visualization technology and high reliability sealing technology research, the performance of high-efficiency cavitation valve is improved. A cavitation suppression method and structure based on permanent magnet intrinsic safety electromagnet and air pocket enrolling are studied to improve the response characteristics of the pilot stage and the anti-cavitation characteristics of the unloading valve port, thus improving the reliability of the high-pressure large-flow unloading valve. The safety and availability of high pressure and large flow pumping stations have been improved through the innovative development of the intelligent early warning and diagnosis system of cloud edge end cooperation.Finally, the high-power-to-weight ratio 1250 L/min, 40 MPa five-plunker emulsion pump was developed and designed, and a complete set of demonstration applications was carried out in the 122104 fully mechanized mining face of Caojiatan Coal Mine of Shaanxi Coal Group, that is, the world's first 10 m super-high intelligent fully mechanized mining face. The successful development of super large flow intelligent emulsion pump station provides a new idea for the configuration of pump station of integrated liquid supply system of super large mining height intelligent fully mechanized mining face.http://www.mtkxjs.com.cn/article/doi/10.12438/cst.2024-1019intelligent liquid supply technologypower transmission technologycorrosion-resistant flow distribution technologyemulsion pumpelectromagnetic unloading valvefault prediction and health management
spellingShingle Ran LI
Jian YE
Haicheng LU
Yuehua LAI
Hao LIU
Rongming CHEN
Tianliang YU
Yan KANG
Chuliang WANG
Dalong WANG
Research on key technology and engineering application of emulsion pump in super-high mining face
Meitan kexue jishu
intelligent liquid supply technology
power transmission technology
corrosion-resistant flow distribution technology
emulsion pump
electromagnetic unloading valve
fault prediction and health management
title Research on key technology and engineering application of emulsion pump in super-high mining face
title_full Research on key technology and engineering application of emulsion pump in super-high mining face
title_fullStr Research on key technology and engineering application of emulsion pump in super-high mining face
title_full_unstemmed Research on key technology and engineering application of emulsion pump in super-high mining face
title_short Research on key technology and engineering application of emulsion pump in super-high mining face
title_sort research on key technology and engineering application of emulsion pump in super high mining face
topic intelligent liquid supply technology
power transmission technology
corrosion-resistant flow distribution technology
emulsion pump
electromagnetic unloading valve
fault prediction and health management
url http://www.mtkxjs.com.cn/article/doi/10.12438/cst.2024-1019
work_keys_str_mv AT ranli researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT jianye researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT haichenglu researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT yuehualai researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT haoliu researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT rongmingchen researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT tianliangyu researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT yankang researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT chuliangwang researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface
AT dalongwang researchonkeytechnologyandengineeringapplicationofemulsionpumpinsuperhighminingface