Variable Frequency Vibrators and Their Application to Foundation Engineering
- Organization:
- Deep Foundations Institute
- Pages:
- 5
- File Size:
- 2089 KB
- Publication Date:
- Jan 1, 1996
Abstract
The paper was presented 30 years ago at DFI's 20th Annual Conference in Charleston, South Carolina, in 1995. Its main objective was to describe the operation and performance of vibrators with variable frequency and to illustrate their practical application in foundation engineering. Since then, powerful vibrators with variable frequency have been increasingly used in the foundation industry for installing/extracting piles or sheet piles, treating granular soils to decrease total and differential settlement, or mitigating the liquefaction hazard. However, the potential of variable frequency vibrators for pile installation. or ground compaction has not yet been fully realized. By adjusting the operating frequency of the vibrator, the penetration/extraction speed of piles or sheet piles can be increased signifi- cantly. At the same time, the emission of ground vibrations can be minimized. Some recent important developments for efficiently using vibrators are briefly summarized below.
An important aspect of vibratory driving is "system resonance," at which the vibrator and the probe oscillate "in phase" with the surrounding soil. The relative displacement between the probe and the soil decreases during this phase. Probe penetration slows down, and ground vibrations increase. To effectively install piles or sheet piles in granular soils, the vibrator should be operated at a high frequency (typically above 30 Hz). The vertically oscillating pile emits horizontal stress pulses that
are transmitted to the ground. This mechanism reduces the shaft resistance during driving in granular soils. Con- sequently, the shaft resistance of vibrated piles is often lower than that of impact-driven piles, the impact of which, by definition, occurs at res- onance of the pile-soil system. However, the shaft resistance of vibrated piles can be enhanced if, during the final phase of installation, the operating frequency is gradually lowered to achieve com- paction of the soil surrounding the pile shaft. It is also desirable that the vertical movement amplitude of the pile be gradually reduced to eliminate the formation of a gap below the pile toe. Electronic monitoring systems are available to assist the machine operator in determining system resonance dur- ing driving. Vibration sensors mounted on the vibrator or on the ground can determine, monitor and adjust the resonance frequency. Nowadays, ro- bust electronic systems can display the measured values to the machine operator and the geotechnical engineer on-site or in the office.
Citation
APA: (1996) Variable Frequency Vibrators and Their Application to Foundation Engineering
MLA: Variable Frequency Vibrators and Their Application to Foundation Engineering. Deep Foundations Institute, 1996.