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Detecting Arctic oil spills with NMR: a feasibility study

机译:利用NMR检测北极溢油的可行性研究

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摘要

To meet the world's growing energy needs, the oil industry is pursuing oil resources in ice-prone regions. These activities will require robust oil spill contingency plans. One area of need is a method to remotely detect oil that is trapped beneath or within ice. The current operational method for oil detection within or under ice requires placing personnel on the ice to take measurements. A primary challenge with these measurements is the speed at which they can be collected. Presented here is a scaled-down prototype of an Earth's field nuclear magnetic resonance device that can be moved from one spot to another on the ice by a helicopter to quickly survey large areas. This small-scale version has been built and tested. It successfully differentiates an oil surrogate from the bulk water signal by using an adiabatic inversion, followed by a delay to suppress the otherwise overwhelming water signal before acquiring the signal after an adiabatic half passage. The device will be scaled up, and further testing will be conducted. Initial proof-of-principle results show great promise for the development of a remote oil detector.
机译:为了满足世界不断增长的能源需求,石油工业正在冰多地区寻找石油资源。这些活动将需要强有力的漏油应急计划。一个需要的领域是一种远程检测被困在冰下或冰中的油的方法。当前在冰内或冰下检测油的操作方法要求将人员放在冰上进行测量。这些测量的主要挑战是收集它们的速度。这里展示的是按比例缩小的地球磁场核磁共振设备的原型,可以通过直升机将其从冰上的一个点移动到另一个点,以快速测量大面积。此小型版本已构建并经过测试。通过使用绝热反演,它成功地将石油替代物与大量水信号区分开,随后是一个延迟时间,以抑制原本不堪重负的水信号,然后在绝热半通道后获取信号。该设备将按比例放大,并将进行进一步的测试。初步的原理验证结果显示了开发远程油检测器的巨大希望。

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