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Physical modelling of pile drilling in sand

Authors :
Lande, Einar John
Ritter, Stefan
Tyvold, Henning
Nordal, Steinar
Source :
Canadian Geotechnical Journal. October, 2021, Vol. 58 Issue 10, p1437, 15 p.
Publication Year :
2021

Abstract

Drilling for foundation piles and tieback anchors through soils using a continuous casing to support the borehole is often referred to as 'overburden drilling'. Monitoring data from several case studies show that overburden drilling may cause considerable short-term ground settlements indicating a loss of soil volume around the casings. However, further insight is required to understand the mechanisms that govern overburden drilling. Novel physical model tests were carried out to investigate the effects of varying parameters such as flushing media (water or air), flow and penetration rate on the penetration force, pore pressure changes, soil displacements, and drill cutting transport. Tests with water flushing indicate a clear relation between the flow and penetration rate and the resulting influence on the surrounding ground. Increasing flow rates caused larger excess pore pressures at greater radial distances and generated more excess drill cuttings compared to the theoretical casing volume. The obtained results were translated into a non-dimensional framework to estimate optimal flushing parameters in similar conditions. The air flushing tests were considerably limited by the modelling constraints. Notable reduction of pore pressures adjacent to the casing indicate an air-lift pump effect that can lead to extensive ground movements as observed in the field. Key words: model tests, drilling, piles, anchors, settlement, pore pressure. Le forage de pieux de fondation et d'ancrages d'arrimage dans le sol a l'aide d'un tubage continu pour soutenir le trou de forage est souvent appele << forage dans les morts-terrains >>. Les donnees de surveillance provenant de plusieurs etudes de cas montrent que le forage de morts-terrains peut provoquer des tassements considerables du sol a court terme, indiquant une perte de volume de sol autour des tubages. Toutefois, il est necessaire de mieux comprendre les mecanismes qui regissent le forage des morts-terrains. De nouveaux essais sur modele physique ont ete realises pour etudier les effets de divers parametres tels que le milieu de rincage (eau ou air), le debit et le taux de penetration sur la force de penetration, les changements de pression interstitielle, les deplacements de sol et le transport des deblais de forage. Les essais avec rincage a l'eau indiquent une relation claire entre le debit et le taux de penetration et l'influence consequente sur le sol environnant. L'augmentation des debits a entraine des pressions de pores plus importantes a des distances radiales plus grandes et a genere plus de deblais de forage en exces par rapport au volume theorique du tubage. Les resultats obtenus ont ete traduits dans un cadre non dimensionnel pour estimer les parametres de rincage optimaux dans des conditions similaires. Les essais de chasse d'air ont ete considerablement limites par les contraintes de modelisation. Une reduction notable de la pression des pores adjacents au tubage indique un effet de pompe a air qui peut entrainer des mouvements importants du sol, comme on l'a observe sur le terrain. [Traduit par la Redaction] Mots-cles: essais sur maquettes, forage, pieux, ancrages, tassement, pression interstitielle.<br />1. Introduction In areas where soft soil deposits of limited depth are overlying competent bedrock so-called overburden drilling is often carried out to install tieback anchors for sheet pile walls [...]

Details

Language :
English
ISSN :
00083674
Volume :
58
Issue :
10
Database :
Gale General OneFile
Journal :
Canadian Geotechnical Journal
Publication Type :
Academic Journal
Accession number :
edsgcl.679284686
Full Text :
https://doi.org/10.1139/cgj-2020-0373