NEW POTENTIAL OF HIGH-SPEED WATER JET TECHNOLOGY FOR RENOVATING CONCRETE STRUCTURES

被引:10
|
作者
Bodnarova, L. [1 ]
Sitek, L. [1 ]
Hela, R. [2 ]
Foldyna, J. [2 ]
机构
[1] Brno Univ Technol, Fac Civil Engn, Inst Technol Bldg Mat & Components, Veveri 95, Brno 60200, Czech Republic
[2] Acad Sci, Inst Geon, Ostrava, Czech Republic
关键词
High-speed water jet technology; concrete repair; degraded concrete; single continuous water jet; nozzle; continuous flat water jet; pulsating flat water jet;
D O I
10.2478/v10189-011-0006-z
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The paper discusses the background and results of research focused on the action of a high-speed water jet on concrete with different qualities. The sufficient and careful removal of degraded concrete layers is very important for the renovation of concrete structures. High-speed water jet technology is one of the most common methods used for removing degraded concrete layers. Different types of high-speed water jets were tested in the experimental part. The classical technology of a single continuous water jet generated with one nozzle was tested as well as the technology of revolving water jets generated by multiple nozzles (used mainly for the renovation of larger areas). A continuous flat water jet and pulsating flat water jet were tested the first time, because the connection of a water jet with the acoustic generator of a pulsating jet offers new possibilities for the use of a water jet (see [1] and [2]). A water jet with such a modification is capable of efficient action and can even be used for cutting solid concrete with a relatively low consumption of energy. A flat pulsating water jet which can be newly used for renovation seems to be a promising technology.
引用
收藏
页码:1 / 7
页数:7
相关论文
共 50 条
  • [21] Utilization of ultrasound to enhance high-speed water jet effects
    Foldyna, J
    Sitek, L
    Svehla, B
    Svehla, T
    ULTRASONICS SONOCHEMISTRY, 2004, 11 (3-4) : 131 - 137
  • [22] Atomization of Water Jet in Crossflow via High-Speed Photography
    Fu, Benshuai
    Xiao, Haiyan
    Lu, Bingju
    Li, Guanghua
    Qin, Liping
    SCIENTIFIC REPORTS, 2025, 15 (01):
  • [23] Study on the Fracturing of Rock by High-Speed Water Jet Impact
    Pan, Yue
    Zhai, Shengyu
    Meng, Xinjia
    Pei, Kangchao
    Huo, Fulin
    PROCESSES, 2023, 11 (01)
  • [24] Erosion Test with High-speed Water Jet Applied on Surface of Concrete Treated with Solution of Modified Lithium Silicates
    Hlavacek, Petr
    Sitek, Libor
    Hela, Rudolf
    Bodnarova, Lenka
    ADVANCES IN MANUFACTURING ENGINEERING AND MATERIALS, ICMEM 2018, 2019, : 135 - 143
  • [25] Numerical simulation of high-speed cavitating flows in submerged water jet
    Peng, G.
    Shimizu, S.
    6TH INTERNATIONAL CONFERENCE ON PUMPS AND FANS WITH COMPRESSORS AND WIND TURBINES (ICPF2013), 2013, 52
  • [26] Strained-Silicon as new high-speed technology
    Shapin, Alexey G.
    Kalinin, Sergey V.
    EDM 2006: 7TH ANNUAL INTERNATIONAL WORKSHOP AND TUTORIALS ON ELECTRON DEVICES AND MATERIALS, PROCEEDINGS, 2006, : 21 - 23
  • [27] Numerical simulation and experimental study of the coherence of high-speed water jet
    Lu, Jin-Gang
    Gong, Chen
    Yan, Long-Long
    Yang, Min-Guan
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2014, 35 (08): : 1526 - 1529
  • [28] APPLICATION OF NEW ELECTROOPTICAL TECHNOLOGY TO HIGH-SPEED PHOTOGRAPHY
    SWIFT, HF
    SMPTE JOURNAL, 1980, 89 (10): : 709 - 713
  • [29] A high-speed, compressible synthetic jet
    Crittenden, TM
    Glezer, A
    PHYSICS OF FLUIDS, 2006, 18 (01)
  • [30] HIGH-SPEED DIAGNOSTICS OF A PLASMA JET
    KURTMULL.RK
    NESTERIK.YE
    PILSKII, VI
    PONOMARE.AG
    HIGH TEMPERATURE, 1964, 2 (06) : 753 - &