000 01779nab a2200193 4500
005 20260520000837.0
008 260224s2009 xxu
245 0 0 _aEvolution of compressional wave velocity during CO2 hydrate formation in sediments
260 _a
_b
_cnov./dic. 2009
270 _a08/06/2010 ; 08/06/2010
300 _a6 p. ; 5731-5736
520 _aTranscripción del resumen del autor. While the acoustic wave-based survey is considered to be one of the most effective and promising means for monitoring the behavior of particulate/discrete geomaterials, the P-wave velocity has scarcely been used to monitor the long-term behavior of CO2 sequestered sediments or to understand the characteristics of CO2 hydrate formation in sediments. Furthermore, there are still only limited reliable laboratory results quantifying the P-wave velocity change in sediments that results from CO2 hydrate formation and accumulation processes. This study presents experimental measurements on the evolution of P-wave velocity as CO2 hydrate saturation increases in unconsolidated sediment. The measured data are compared with the simple yet robust asymptotic Gassmann model to estimate CO2 hydrate saturation (volume fraction of hydrate in pore space) in sediments. Given that in situ techniques to measure acoustic waves are well-established for the exploration of deep oceanic sediment, the methodology presented in this paper for estimating hydrate saturation is of potential significance in the monitoring of the long-term behavior of CO2 reservoirs after sequestration in deep marine sediments.
581 _a6
773 0 _tEnergy & fuels
_g23
942 _cARTICULO
100 1 _aKwon, Tae-Hyuk
_942331
100 1 _aCho, Gye-Chun
_942332
999 _c170811
_d170811