Geological Publishing House, Institute of Exploration Technology, Chinese Academy of Geological SciencesHost
2023 Vol. 50, No. 2
Article Contents

WANG Qiang, ZHU Hengyin, LIU Bing, FENG Jianyu, FENG Congcong, SUN Yajun and CAI Zhengshui, . 2023. Development of LSZ-1 automatic measuring instrument for mud filter loss. DRILLING ENGINEERING, 50(2): 129-135. doi: 10.12143/j.ztgc.2023.02.018
Citation: WANG Qiang, ZHU Hengyin, LIU Bing, FENG Jianyu, FENG Congcong, SUN Yajun and CAI Zhengshui, . 2023. Development of LSZ-1 automatic measuring instrument for mud filter loss. DRILLING ENGINEERING, 50(2): 129-135. doi: 10.12143/j.ztgc.2023.02.018

Development of LSZ-1 automatic measuring instrument for mud filter loss

More Information
  • At present, the measurement of mud filter loss in the drilling site or in the mud laboratory is mainly based on the traditional manual measurement,with cumbersome measurement procedures, large reading error, and low work efficiency. For this reason, the research and development of the automatic measuring instrument for mud filtration has been carried out. LSZ-1 automatic instrument for medium and low pressure mud filtration has been developed through technical breakthrough in structural design, software development, sensor optimization, new filter material development, etc. Through laboratory tests, key technological breakthroughs such as automatic measurement of mud filtration loss, data storage and wireless transmission, and automatic cleaning of the device have been realized. The successful development of this instrument can provide technical support for the implementation of intelligent deep drilling engineering in the future, effectively reduce labor intensity, improve data measurement reliability and work efficiency, and is the core technical equipment of drilling information and automation.
  • 加载中
  • [1] 闫铁,许瑞,刘维凯,等.中国智能化钻井技术研究发展[J].东北石油大学学报,2020,44(4):15-21,6.

    Google Scholar

    YAN Tie, XU Rui, LIU Weikai, et al. Research and development of intelligent drilling technology in China[J]. Journal of Northeast Petroleum University, 2020,44(4):15-21,6.

    Google Scholar

    [2] [2] 李根生,宋先知,田守嶒.智能钻井技术研究现状及发展趋势[J].石油钻探技术,2020,48(1):1-8.

    Google Scholar

    LI Gensheng, SONG Xianzhi, TIAN Shouceng. Intelligent drilling technology research status and development trends[J].Petroleum Drilling Techniques, 2020,48(1):1-8.

    Google Scholar

    [3] [3] 薛倩冰,张金昌.智能化自动化钻探技术与装备发展概述[J].探矿工程(岩土钻掘工程),2020,47(4):9-14.

    Google Scholar

    XUE Qianbing, ZHANG Jinchang. Advances in intelligent automatic drilling technologies and equipment[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2020,47(4):9-14.

    Google Scholar

    [4] [4] 翁竞.一种滤失量测定组件:CN210829238U[P].2020-06-23.

    Google Scholar

    WONG Jing. Filter loss measuring assembly: CN210829238U[P]. 2020-06-23.

    Google Scholar

    [5] [5] 李凡,李大奇,张国,等.一种改进型API滤失量测定仪:CN209231290U[P].2019-08-09.

    Google Scholar

    LI Fan, LI Daqi, ZHANG Guo, et al. Improved API filter loss tester: CN209231290U[P]. 2019-08-09.

    Google Scholar

    [6] [6] 张志财,刘保双,王忠杰,等. 钻井液性能在线监测系统的研制与现场应用[J].钻井液与完井液,2020,37(5):597-601,607.

    Google Scholar

    ZHANG Zhicai, LIU Baoshuang, WANG Zhongjie, et al. Development and field application of an online drilling fluid property monitoring system[J]. Drilling Fluid & Completion Fluid, 2020,37(5):597-601,607.

    Google Scholar

    [7] [7] 朱恒银,王强,刘兵,等.5000m新型能源勘探智能钻探装备与技术研究[J].钻探工程,2022,49(1):110-119.

    Google Scholar

    ZHU Hengyin, WANG Qiang, LIU Bing, et al. Research on 5000m new energy exploration intelligent drilling equipment and technology[J]. Drilling Engineering, 2022,49(1):110-119.

    Google Scholar

    [8] [8] 潘一,徐明磊,郭永成,等.智能钻井液的化学体系及辅助系统研究进展[J].精细化工,2020,37(11):2246-2254.

    Google Scholar

    PAN Yi, XU Minglei,GUO Yongcheng, et al. Research progress on chemical system and auxiliary system of intelligent drilling fluids[J]. Fine Chemicals, 2020,37(11):2246-2254.

    Google Scholar

    [9] [9] 蒋官澄,董腾飞,崔凯潇,等.智能钻井液技术研究现状与发展方向[J].石油勘探与开发,2022,49(3):577-585.

    Google Scholar

    JIANG Guancheng, DONG Tengfei, CUI Kaixiao, et al. Research status and development directions of intelligent drilling fluid technologies[J]. Petroleum Exploration and Development, 2022,49(3):577-585.

    Google Scholar

    [10] [10] 朱恒银,王强,杨凯华,等.深部岩心钻探技术与管理[M].北京:地质出版社,2014.ZHU Hengyin, WANG Qiang, YANG Kaihua, et al. Deep Core Drilling Technology and Management[M]. Beijing: Geological Publishing House, 2014.

    Google Scholar

    [11] [11] 姚如钢,张振华,彭春耀,等.钻井液滤失造壁性能评价方法研究现状[J].钻井液与完井液,2016,33(6):1-9.

    Google Scholar

    YAO Rugang, ZHANG Zhenhua, PENG Chunyao, et al. Status quo of methods for evaluating filtration performance and mud cake quality of drilling fluid[J]. Drilling Fluid & Completion Fluid, 2016,33(6):1-9.

    Google Scholar

    [12] [12] 鄢捷年.钻井液工艺学[M].东营:石油大学出版社,2001:366-369.

    Google Scholar

    YAN Jienian. Drilling Fluid Technology[M]. Dongying: China University of Petroleum Press, 2001:366-369.

    Google Scholar

    [13] [13] 张洁,刘宁,陈刚.钻井液静态/动态滤失性评价装置与方法研究[J].石油仪器,2014,28(2):50-54,9.

    Google Scholar

    ZHANG Jie, LIU Ning, CHEN Gang. Study on evaluation apparatus and method of static/dynamic filtration of drilling fluid[J]. Petroleum Instruments, 2014,28(2):50-54,9.

    Google Scholar

    [14] [14] GB/T 16783.1—2014,石油天然气工业 钻井液现场测试 第1部分:水基钻井液[S].GB/T 16783.1—2014, Petroleum and natural gas industries—Field testing of drilling fluids—Part 1: Water-based fluids[S].

    Google Scholar

    [15] [15] 王鹏,刘伟,张果.钻井液性能自动监测装置的现状及改进建议[J].钻采工艺,2022,45(3):42-47.

    Google Scholar

    WANG Peng, LIU Wei, ZHANG Guo.Status quo and improvement suggestions of automatic monitoring equipment for drilling fluid performance[J]. Drilling and Production Technology, 2022,45(3):42-47.

    Google Scholar

    [16] [16] 张勇,张长亮,李江,等.钻井液自动在线测量技术和应用介绍[J].石油化工自动化,2021,57(S1):141-145,162.

    Google Scholar

    ZHANG Yong, ZHANG Changliang, LI Jiang, et al. Technology and application on introduction of automaticon-line measurement for drilling fluid[J]. Automation In Petro-Chemical Industry, 2021,57(S1):141-145,162.

    Google Scholar

    [17] [17] 朱恒银,王强,冯建宇,等.一种泥浆滤失量自动测量装置:CN213275602U[P].2021-05-25.

    Google Scholar

    ZHU Hengyin, WANG Qiang, FENG Jianyu, et al. Automatic mud filter loss measuring device: CN213275602U[P]. 2021-05-25.

    Google Scholar

    [18] [18] 朱恒银,王强,冯建宇,等.一种钻探泥浆性能多参数测量装置:CN214200204U[P].2021-09-14.

    Google Scholar

    ZHU Hengyin, WANG Qiang, FENG Jianyu,et al. Drilling mud performance multi-parameter measuring device: CN214200204U[P]. 2021-09-14.

    Google Scholar

    [19] [19] 于倩倩,齐奔,黄子庚,等.滤失量实时监测装置:CN208187887U[P].2018-12-04.

    Google Scholar

    YU Qianqian, QI Ben, HUANG Zigeng, et al. Filter loss real-time supervision device: CN208187887U[P]. 2018-12-04.

    Google Scholar

    [20] [20] SY/T 5677—2019,钻井液用滤纸[S].SY/T 5677—2019, Filter paper for drilling fluid[S].

    Google Scholar

    [21] [21] 余娇,王迪,孙召霞,等.微纳米纤维复合滤纸的过滤性能研究[J].中国造纸,2021,40(3):27-34.

    Google Scholar

    YU Jiao, WANG Di, SUN Zhaoxia, et al. Study on the filtration performance of micro-nano fiber composite filter paper[J]. China Pulp & Paper, 2021,40(3):27-34.

    Google Scholar

    [22] [22] 杨圆坤,陶洪飞, 马合木江·艾合买提,等.不同滤网条件的微压过滤冲洗池过滤性能研究[J].水资源与水工程学报,2020,31(6):249-255.

    Google Scholar

    YANG Yuankun, TAO Hongfei, Mahemujiang·AIHEMAITI, et al. Filtration performance of micro-pressure filtering and washingpool with different screen materials[J]. Journal of Water Resources & Water Engineering, 2020,31(6):249-255.

    Google Scholar

    [23] [23] 卫志美,刘振艳,王劭妤,等.多种结构聚醚砜纤维过滤膜的制备及过滤性能[J].高分子材料科学与工程,2020,36(11):101-108.

    Google Scholar

    WEI Zhimei, LIU Zhenyan, WANG Shaoyu, et al. Preparation and filtration performance of different structure polyethersulfone fibrious membranes[J]. Polymer Materials Science and Engineering, 2020,36(11):101-108.

    Google Scholar

    [24] [24] 乌效鸣,蔡记华,胡郁乐.钻井液与岩土工程浆材[M].武汉:中国地质大学出版社,2014.WU Xiaoming, CAI Jihua, HU Yule. Drilling Fluid and Geotechnical Slurry Material[M]. Wuhan: China University of Geosciences Press, 2014.

    Google Scholar

    [25] [25] 郭盛堂.高性能水基钻井液体系研制与应用[J].探矿工程(岩土钻掘工程),2017,44(11):26-29.

    Google Scholar

    GUO Shengtang. Development and application of high performance water-based drilling fluid system[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2017,44(11):26-29.

    Google Scholar

    [26] [26] 付帆,陶士先,李晓东.绿色勘查高温环保冲洗液研究[J].探矿工程(岩土钻掘工程),2020,47(4):129-133.

    Google Scholar

    FU Fan, TAO Shixian, LI Xiaodong. Research on environment-friendly high-temperature drilling fluid for green exploration[J].Exploration Engineering (Rock & Soil Drilling and Tunneling), 2020,47(4):129-133.

    Google Scholar

  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article Metrics

Article views(475) PDF downloads(168) Cited by(0)

Access History

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint