Affiliation:
1. St. Petersburg State University of Architecture and Civil Engineering
Abstract
Introduction. Hydro-jet technology is an innovative approach to using high pressure water for a variety of purposes. The technology has found a wide application in various industries, including construction, industry, agriculture and surface cleaning. The basic idea of water jetting systems is to use water as a powerful tool to destroy, clean and cut various materials. The paper discusses the constructing of the high-pressure hydro-puller device for hydro-jet technologies.Materials and methods. An analysis of the methods by hydro-jet technologies classification was made. The general structure and the constituent elements of this scheme is shown. Generalizing elements are identified and a characteristic layout diagram for use in all technological methods of hydro-jet methods is described, and the structural elements that are the main components and units of these technologies are described.Results. The scheme of energy flow on the main nodes of the traditional layout scheme of units for hydro-jet technologies is developed. The energy losses formed in the process of operation are estimated, the element of the hydrojet plant with the largest losses is determined, the peculiarities of its functioning and operation are analysed. The design methodologies, taking into account the identified problems and features, for high-pressure transmitting devices are given.Discussion and conclusions. The most efficient operation of ultra-high pressure transmitting devices for hydro-jet technologies is possible only taking into account their thermal state, characterized by a description of their thermal balance, which can only be ensured through the development of a number of techniques proposed for use in the design of such devices.
Publisher
Siberian State Automobile and Highway University (SibADI)
Reference16 articles.
1. Borkowski P. Hydro-jetting method of bas-relief shaping. Archives of Civil and Mechanical Engineering. 2011; V. 11, Issue 2: 267. https://doi.org/10.1016/S1644-9665(12)60142-3
2. Papakostas V., Paravantis J.A., Kontoulis N., Cazenave F., Gerbaud L., Velmurugan N. Environmental Impacts of Water-Based Fluids in Geothermal Drilling. European Geothermal Congress. Berlin, Germany 17-21 October 2022. Available at: https://www.researchgate.net/publication/364816487
3. Liu D., Xie W., Gao J., Hu S., Chen M., Li Y., Li L. Study on the Construction Method and Effects of Ipsilateral, Multi-Nozzle, High-Pressure Jet Grouting Cut-Off Wall. Sustainability. 2022; 14(16): 10383. https://doi.org/10.3390/su141610383
4. Ahmed B., Khoshnaw F. A., Raza M., Elmoneim H., Dar A.A., Shakeel A. New Type of Fluidic Oscillator Made Clean Out Operation Environment Friendly and Cost Effective – A Case Study that Converted Failure into a Success. International Petroleum Technology Conference. Riyadh, Saudi Arabia 21–23 February 2022. https://doi.org/10.2523/IPTC-22265-MS
5. Shanab I.A., Sorensen A.D. Experimental and Statistical Study of High-Pressure Water Jet «Hydro-Demolition Technique» on Concrete for Partial-Depth Concrete Bridge Deck Repair Applications. Transportation Research Record: Journal of the Transportation Research Board. 2023; V. 2677, Issue 12. Available at: https://doi.org/10.1177/03611981231168842