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Research on Distributed Synchronous Acquisition System for Seabed Terrain Deformation Monitoring

机译:海底地形监测的分布式同步采集系统研究

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Natural gas is an important green (low carbon) energy source, and natural gas hydrate is another molecular form of natural gas (aqueous). Natural gas hydrate is a clathrate hydrate formed by methane (CH4) and free water under certain conditions. Under normal temperature and normal pressure, natural gas hydrate is easily decomposed into methane and water, and its solid phase requires low temperature and high pressure conditions, especially low temperature. The decomposition of natural gas hydrate will destroy the engineering mechanical structure of sediments, causing land subsidence, and can also cause geological disasters such as subsidence of seabed, landslides and even earthquakes, threatening the exploration and exploitation of hydrates. This paper studies the data synchronization acquisition problem of seabed terrain deformation monitoring, and discusses how to realize fast and correct data acquisition, and how to solve the time synchronization of the internal data of the system when the independent high-precision time reference source common on the land cannot be used.
机译:天然气是重要的绿色(低碳)能源,天然气水合物是天然气(水)的另一种分子形式。天然气水合物是在一定条件下由甲烷(CH4)和游离水形成的笼形水合物。在常温常压下,天然气水合物容易分解为甲烷和水,其固相需要低温和高压条件,尤其是低温。天然气水合物的分解将破坏沉积物的工程机械结构,导致地面沉降,还可能引起地质灾害,例如海床沉降,滑坡甚至地震,从而威胁到水合物的勘探和开发。本文研究了海床地形变形监测的数据同步采集问题,探讨了如何实现快速正确的数据采集,以及如何在独立的高精度时间参考源普遍存在的情况下解决系统内部数据的时间同步问题。该土地无法使用。

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