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Model and experimental study on jetting flow rate for installing surface conductor in deep-water

机译:深水中安装表面导体的射流流速模型与实验研究

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摘要

Jetting is preferentially adopted for surface conductor installation in deep-water oil and gas facilities. Surface conductor bearing capacity decreases due to soil disturbance, which is the main risk of jetting technology. A calculation model of the minimum jetting flow rate is established based on Bernoulli's theorem and soil mechanics. Jetting experiments are carried out to investigate the effect of jetting flow rate on the bearing capacity of surface conductor. Experiment results show that the bearing capacity of surface conductor decreases exponentially with flow rate. Considering the effect of flow rate both on hydraulic breaking soil capacity and the bearing capacity of surface conductor, a design method of jetting flow rate for installing surface conductor is proposed. This method ensures the successful implementation of jetting technology and has been successfully applied in more than 30 deep-water wells in the South China Sea and West Africa. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在深水油气设施中的表面导体安装中,优先采用喷射法。由于土壤扰动,表面导体的承载能力下降,这是喷射技术的主要风险。基于伯努利定理和土壤力学,建立了最小喷射流量的计算模型。进行喷射实验以研究喷射流速对表面导体承载力的影响。实验结果表明,表面导体的承载力随着流量的增加呈指数下降。考虑流量对水力破土能力和表面导体承载力的影响,提出了一种安装表面导体喷射流量的设计方法。这种方法确保了射流技术的成功实施,并已成功应用于南中国海和西非的30多个深水井中。 (C)2016 Elsevier Ltd.保留所有权利。

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