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Shape memory alloy actuated accumulator for ultra-deepwater oil and gas exploration

机译:用于超深水油气勘探的形状记忆合金致动蓄能器

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摘要

As offshore oil and gas exploration moves further offshore and into deeper waters to reach hydrocarbon reserves, it is becoming essential for the industry to develop more reliable and efficient hydraulic accumulators to supply pressured hydraulic fluid for various control and actuation operations, such as closing rams of blowout preventers and controlling subsea valves on the seafloor. By utilizing the shape memory effect property of nitinol, which is a type of shape memory alloy (SMA), an innovative SMA actuated hydraulic accumulator prototype has been developed and successfully tested at Smart Materials and Structure Laboratory at the University of Houston. Absence of gas in the developed SMA accumulator prototype makes it immune to hydrostatic head loss caused by water depth and thus reduces the number of accumulators required in deep water operations. Experiments with a feedback control have demonstrated that the proposed SMA actuated accumulator can provide precisely regulated pressurized fluids. Furthermore the potential use of ultracapacitors along with an embedded system to control the electric power supplied to SMA allows this accumulator to be an autonomous device for deployment. The developed SMA accumulator will make deepwater oil extraction systems more compact and cost effective.
机译:随着海上油气勘探进一步向海上移动并进入更深的水域以达到碳氢化合物储量,对行业而言,开发更可靠,更高效的液压蓄能器以供应压力液压流体以进行各种控制和执行操作(例如,关闭闸板的操作)变得至关重要。防喷器和控制海底的海底阀门。通过利用镍钛诺(一种形状记忆合金(SMA))的形状记忆效应特性,开发了一种创新的SMA驱动的液压蓄能器原型,并在休斯顿大学智能材料和结构实验室成功进行了测试。研发的SMA蓄能器原型中没有气体,因此不受水深造成的静水压损失的影响,因此减少了深水作业所需的蓄能器数量。带有反馈控制的实验表明,所建议的SMA驱动蓄能器可以提供精确调节的加压流体。此外,潜在地使用超级电容器以及嵌入式系统来控制提供给SMA的电力,使该蓄能器成为用于部署的自主设备。先进的SMA蓄能器将使深水采油系统更紧凑且更具成本效益。

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