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Life time prediction of polymer used as thermal insulation in offshore oil production conditions: Ageing on real structure and reliability of prediction

机译:海上采油条件下用作保温材料的聚合物的寿命预测:真实结构的老化和预测的可靠性

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摘要

Polymers are widely used for passive thermal insulation coatings on steel pipe in offshore oil and gas production. In this industry, structures used in deep sea have to be reliable as they are in service for more than 20 years in a very severe environment: sea water, hydrostatic pressure, temperature. One of the main questions is how to test and predict the lifetime of such structures in the laboratory. This study presents one approach that has been developed to characterize and predict the degradation of polyurethanes used as thermal insulation materials. Based on results obtained during accelerated ageing of the PU in sea water, a prediction of degradation through the thickness has been set up taking into account the temperature profile in the coating, water absorption and hydrolysis. Validity of this model has been investigated by comparing predictions with experimental data obtained on a real structure that has been aged for more than a year with an internal temperature up to 125 ℃ inwater under hydrostatic pressure. Using this prediction, the effect of different parameters (such as coating thickness, internal and external temperature) on the degradation level of a structure has been examined.
机译:聚合物广泛用于海上石油和天然气生产中的钢管上的被动隔热涂料。在这个行业中,深海中使用的结构必须可靠,因为它们在非常恶劣的环境(海水,静水压力,温度)中已经使用了20多年。主要问题之一是如何在实验室中测试和预测此类结构的寿命。这项研究提出了一种方法,用于表征和预测用作隔热材料的聚氨酯的降解。基于在海水中PU加速老化过程中获得的结果,已经建立了考虑到涂层中的温度曲线,吸水率和水解度而预测厚度下降的预测。通过将预测与在静水压力下内部温度高达125℃老化了一年以上的真实结构上获得的实验数据进行比较,研究了该模型的有效性。使用此预测,已检查了不同参数(例如涂层厚度,内部和外部温度)对结构的降解水平的影响。

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