科技报告详细信息
CALIBRATION AND TESTING OF SONIC STIMULATION TECHNOLOGIES
Turpening, Roger ; Pennington, Wayne ; Schmidt, Christopher ; Trisch, Sean
Michigan Technological University
关键词: Calibration;    Oil Wells;    02 Petroleum;    Seismic Surveys;    Amplitudes;   
DOI  :  10.2172/842390
RP-ID  :  NONE
RP-ID  :  FC26-01BC15165
RP-ID  :  842390
美国|英语
来源: UNT Digital Library
PDF
【 摘 要 】

In conjunction with Baker Atlas Inc. Michigan Technological University devised a system capable of recording the earth motion and pressure due to downhole and surface seismic sources. The essential elements of the system are (1) a borehole test site that will remain constant and is available all the time and for any length of time, (2) a downhole sonde that will itself remain constant and, because of its downhole digitization feature, does not require the wireline or surface recording components to remain constant, and (3) a set of procedures that ensures that the amplitude and frequency parameters of a wide range of sources can be compared with confidence. This system was used to record four seismic sources, three downhole sources and one surface source. A single activation of each of the downhole sources was not seen on time traces above the ambient noise, however, one sweep of the surface source, a small vertical vibrator, was easily seen in a time trace. One of the downhole sources was seen by means of a spike in its spectrum and a second downhole source was clearly seen after correlation and stacking. The surface vibrator produced a peak to peak particle motion signal of approximately 4.5 x 10{sup -5} cm/sec and a peak to peak pressure of approx. 2.5 x 10{sup -7} microPascals at a depth of 1,485 ft. Theoretical advances were made with our partner, Dr. Igor Beresnev at Iowa State University. A theory has been developed to account for the behavior of oil ganglia trapped in pore throats, and their ultimate release through the additional incremental pressure associated with sonic stimulation.

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