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Instrumented pressure testing chamber for characterizing sediment cores recovered at in situ hydrostatic pressure

机译:仪器压力测试室,用于表征在原地静水压力下回收的沉积物岩心

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Marine sediments retrieved with pressure coring systems such as those used by the Integrated Ocean Drilling Program maintain samples at in situ hydrostatic pressure throughout recovery. Such pressure cores are particularly important for the study of gas hydrate-bearing sediments, which must be maintained within the gas hydrate stability field during shipboard core characterization. Until now, there has been no device capable of directly measuring a suite of physical properties on sediments contained in pressure cores without first depressurizing them. This study describes the design, construction, and deployment of the Instrumented Pressure Testing Chamber (IPTC), which was first used to measure the physical properties of pressure cores recovered ~ 1530 m below the sea surface during 2005 drilling in the Gulf of Mexico. The IPTC permits drilling through the plastic liner while the core is under pressure and the sequential measurement of P- and S-wave velocities, undrained strength, and electrical conductivity. Preliminary results indicate that the seismic velocities measured on a pressure core with the IPTC are more representative of in situ seismic velocities at comparable depths than are velocities measured on conventional cores from these same depths. The flexibility of the IPTC design allows future modifications to account for restoration of effective, not just hydrostatic, stress; the addition of new types of measurements; sampling of pore fluids and sediments under pressure; and use of the device as a laboratory reactor for gas hydrates studies.
机译:用压力取芯系统(例如,综合海洋钻探计划使用的那些)取回的海洋沉积物在整个恢复过程中都将样品保持在原位静水压力下。这样的压力岩心对于研究含天然气水合物的沉积物特别重要,在船上岩心表征过程中必须将其保持在天然气水合物稳定区内。直到现在,还没有一种设备能够直接测量压力岩心中包含的沉积物的一系列物理性质,而无需先对其降压。这项研究描述了仪器压力测试室(IPTC)的设计,建造和部署,该仪器首先用于测量2005年在墨西哥湾钻探时从海面以下1530 m处回收的压力岩心的物理特性。 IPTC允许在岩心处于压力下时通过塑料衬里钻孔,并依次测量P波和S波速度,不排水强度和电导率。初步结果表明,用IPTC在压力岩心上测得的地震速度比从相同深度在常规岩心上测得的速度更能代表可比较深度的原地地震速度。 IPTC设计的灵活性允许将来进行修改以解决有效应力的恢复,而不仅仅是静水压力的恢复。增加了新的测量类型;在压力下取样孔隙流体和沉积物;将该装置用作气体水合物研究的实验室反应器。

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