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Amorphous and Nanocrystalline Dissolvable Alloys with Artificial Intelligence for Applications in Deep-Water and Unconventionals

机译:无定形和纳米晶体可溶性合金,用于深水和非传统应用的人工智能

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Technology developed to harness extended reach deviated (ERD) wells for deep-water and longer laterals for unconventionals demand the use of reliable "Dissolvable Alloys". Furthermore, an economic prediction mechanism to assess the degree of dissolution of deployed dissolvable hardware is highly coveted. This is one of the bottlenecks preventing the increased adoption of dissolvables in both deep-water and multistage stimulation (MSS). DAMORPHE was founded to take advantage of recent Mechanical-Materials-Electrical (MME) innovations for development and commercialization of "Game-Changing" technologies through the selective use of amorphous and nanocrystalline dissolvable alloys with Artificial Intelligence (AI). Here we discuss a couple of applications where dissolvable materials bring enhanced functionality over traditional methods and present a case for how replacing these with intelligent materials can bring further benefits to the end users.
机译:为线束扩展的技术延伸(ERD)井中的深水和较长的侧面,供非传统要求使用可靠的“可溶解合金”。此外,评估展开可溶解硬件溶解度的经济预测机制非常垂涎。这是阻止在深水和多级刺激(MSS)中增加溶解剂的瓶颈的瓶颈之一。该阵控是通过选择性使用具有人工智能(AI)的无定形和纳米晶体可溶性合金(AI)来利用最近的机械材料 - 电气(MME)创新,用于开发和商业化“游戏变化”技术的开发和商业化。在这里,我们讨论了一些应用程序,可溶解材料通过传统方法带来增强的功能,并提出了用智能材料更换这些的案例可以为最终用户带来进一步的益处。

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