2019International Journal of Rock Mechanics and Mining SciencesOpen access

Full-scale experimental investigation of the performance of a jet-assisted rotary drilling system in crystalline rock

Thomas Stoxreiter, Gary Portwood, Laurent Gerbaud, Olivier Seibel, Stefan Essl, Johann Plank, Herbert Hofstätter

Open full text 28 citations

Abstract

Full-scale drilling experiments (8½ in. bit size) with a high-pressure fluid jet assisted rotary drilling system were performed in hard to drill crystalline rock. Besides the development of novel drill bits and high-pressure components, an existing drilling simulator test bench was adapted to the requirements of the current tests. A total number of seventeen test runs was conducted to enable a comparison of drilling performance between state of the art drilling technique and the innovative jet assisted system. A significant increase in rate of penetration was achieved with the system. Another relevant aspect was the influence of different drilling and jetting fluids on drilling performance. The interaction of the hydraulic and mechanical rock removing processes was researched in detail and led to further conclusions about the rock destruction process. Basic and sophisticated correlations between drilling parameters were examined in order to define the favourable operational parameters for each bit type. Lessons learned during these experiments will directly be integrated in the preparation of later field tests of the enhanced system.

Open-access reader

About this research paper

What this paper is about

Full-scale drilling experiments (8½ in. bit size) with a high-pressure fluid jet assisted rotary drilling system were performed in hard to drill crystalline rock. Besides the development of novel drill bits and high-pressure components, an existing drilling simulator test bench was adapted to the requirements of the current tests. A total number of seventeen test runs was conducted to enable a comparison of drilling performance between state of the art drilling technique and the innovative jet assisted system. A significant increase in rate of penetration was achieved with the system. Another relevant aspect was the influence of different drilling and jetting fluids on drilling performance. The interaction of the hydraulic and mechanical rock removing processes was researched in detail and led to further conclusions about the rock destruction process. Basic and sophisticated correlations between drilling parameters were examined in order to define the favourable operational parameters for each bit type. Lessons learned during these experiments will directly be integrated in the preparation of later field tests of the enhanced system.

Why it matters

OpenAlex reports 28 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Full-scale drilling experiments (8½ in. bit size) with a high-pressure fluid jet assisted rotary drilling system were performed in hard to drill crystalline rock. Besides the development of novel drill bits and high-pressure components, an existing drilling simulator test bench was adapted to the requirements of the current tests. A total number of seventeen test runs was conducted to enable a comparison of drilling performance between state of the art drilling technique and the innovative jet assisted system. A significant increase in rate of penetration was achieved with the system. Another relevant aspect was the influence of different drilling and jetting fluids on drilling performance. The interaction of the hydraulic and mechanical rock removing processes was researched in detail and led to further conclusions about the rock destruction process. Basic and sophisticated correlations between drilling parameters were examined in order to define the favourable operational parameters for each bit type. Lessons learned during these experiments will directly be integrated in the preparation of later field tests of the enhanced system.

Key concepts: Drilling, Rate of penetration, Drill, Drill bit, Petroleum engineering, Measurement while drilling, Drilling fluid, Mechanical engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Full-scale experimental investigation of the performance of a jet-assisted rotary drilling system in crystalline rock — Research Paper | ScholarLens