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Experimental Study on the Thermal Insulation and Seawater Corrosion Resistance Effects of Silane-Nanoceramic Coatings in Subsea Riser

机译:海底立管硅烷纳米陶瓷涂层隔热和海水耐腐蚀效应的实验研究

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In China's Bohai Sea, there is a large amount of heavy and viscous oil needs to be produced. At present, the steam huff and puff is currently the most effective means of producing heavy oil reservoir, and the riser system is a conduit system that connects the subsea wellhead and the rig and also plays an important role in the circulation of steam. Thus, as an important circulation channel in thermal recovery well in offshore heavy oilfield, the riser needs to have heat insulation effect. The silane-nanoceramic composite as a new type of heat insulation coating material has the advantages of low thermal conductivity, high insulation effect and seawater corrosion resistance than other insulation coatings. This paper firstly utilizes infrared heating technology to test the thermal insulation performance of ordinary nanoceramics and silanenanoceramic coatings. Then the actual service condition of thermal insulation coating is simulated by using the test of the riser heating device. The thermal barrier effect of three types of riser thermal barrier coatings is evaluated, the influence of coating structure, and coating thickness on the insulation effect of silane-nanoceramic composite coating are also analyzed. Considering the corrosion resistance of the riser coating system in seawater, this paper also tests the anti-seawater immersion properties of the coating and salt spray corrosion resistance, and uses two field experiments to verify the actual results. The results figure out that silane-nanoceramic ceramic coatings have better thermal insulation properties than ordinary ceramic coatings. The thermal conductivity of silane-nanoceramic can be as low as 0.028 W/mK, and heat insulation rate can reach more than 70% when the inner temperature is kept at 350°C, so the silane-nanoceramic coatings have obvious advantages compared with other insulating materials. External wall spraying coating has higher insulation effect. With the increase of coating thickness, the insulation effect is more significant. The insulation preservation rate can be more than 80%, when coating thickness reached 500um. The corrosion resistance experimental results show that the coating anticorrosive life rises with the increase of the coating thickness and the field experiments prove the silane-nanoceramic composite coating has good seawater corrosion resistance, salt spray resistance and antifouling performance.
机译:在中国的渤海,有要产生大量的重质和粘性油的需求。目前,蒸汽吞吐是目前生产稠油油藏的最有效的手段,和立管系统是连接水下井口和钻机和也起着蒸汽的循环中起重要作用的管道系统。因此,如在热采井在近海油田重的重要循环通道,提升管需要具有隔热效果。硅烷的纳米陶瓷复合物作为一种新型的隔热涂层材料的具有低导热率,高绝缘效果和比其他绝缘涂层耐海水腐蚀的优点。本文首先利用红外加热技术来测试普通纳米陶瓷和silanenanoceramic涂层的热绝缘性能。然后热绝缘层的实际使用情况,通过使用提升管加热装置的测试模拟。三种类型的提升管的热障涂层的热障效果进行评价时,在硅烷 - 纳米陶瓷复合涂层的绝缘效果的涂层结构,和涂层厚度的影响进行了分析。考虑在海水中的立管涂层体系的耐腐蚀性,本文还测试涂层和耐盐雾腐蚀性能的抗海水浸泡性能,并使用两个大田试验以验证实际结果。结果弄清楚,硅烷纳米陶瓷陶瓷涂层具有比普通陶瓷涂层更好的保温隔热性能。硅烷纳米陶瓷的热导率可以低至如0.028 W / mK的,并且当内部温度保持在350℃下保温率能达到70%以上,所以与其他相比硅烷纳米陶瓷涂层具有明显的优势绝缘材料。外部壁喷涂涂层具有较高的绝缘效果。随着涂层厚度的增加,绝缘效果更为显著。绝缘保存率可超过80%,当涂布厚度达到500um。耐腐蚀性试验结果表明,该涂层防腐寿命上升与涂层厚度的增加和场实验证明硅烷纳米陶瓷复合涂层具有良好的耐海水腐蚀性,耐盐雾性和防污性能。

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