钻孔
水文地质学
地质学
磁导率
含水层
岩石物理学
松弛法
地下水
土壤科学
地球物理学
多孔性
岩土工程
化学
自旋回波
医学
放射科
生物化学
磁共振成像
膜
作者
Catherine M. Kirkland,Sarah L. Codd
出处
期刊:Vadose Zone Journal
[Soil Science Society of America]
日期:2018-01-01
卷期号:17 (1): 1-11
被引量:19
标识
DOI:10.2136/vzj2017.01.0007
摘要
Core Ideas Low‐field borehole NMR characterizes subsurface heterogeneities from pore to macro scales. Borehole NMR is sensitive to biogeochemical processes and conversions in the subsurface. Development of borehole NMR benefits hydrogeology, soil management, and engineering. The inherent heterogeneity of the near subsurface (<200 m below the ground surface) presents challenges for agricultural water management, hydrogeologic characterization, and engineering, among other fields. Borehole nuclear magnetic resonance (NMR) has the potential not only to describe this heterogeneity in space nondestructively but also to monitor physical and chemical changes in the subsurface with time. Nuclear magnetic resonance is sensitive to parameters of interest like porosity and permeability, saturation, fluid viscosity, and formation mineralogy. Borehole NMR tools have been used to measure soil moisture in model soils, and recent advances in low‐field borehole NMR instrumentation allow estimation of hydraulic properties of unconsolidated aquifers. We also demonstrate the potential for low‐field borehole NMR tools to monitor field‐relevant biogeochemical processes like biofilm accumulation and microbially induced calcite precipitation at laboratory and field scales. Finally, we address some remaining challenges and areas of future research, as well as other possible applications where borehole NMR could provide valuable complementary data.
科研通智能强力驱动
Strongly Powered by AbleSci AI