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THERMAL CONDUCTIVITY OF CONSOLIDATING OFFSHORE CLAYEY BACKFILL

机译:固结海洋黏土回填的热导率

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摘要

Pipelines that transmit untreated products are prone to waxing and hydrate formation unless the fluid is kept above certain temperatures. Since bare pipe can have relatively high thermal conductivity, pipes can be buried to utilise the thermal properties of the surrounding soil. However, the thermal conductivity of clayey offshore trench backfill as it consolidates is poorly understood. This paper describes a series of laboratory tests on offshore clayey sediments to investigate the coupled compressibility and thermal conductivity behaviour. The compressibility behaviour of the soil samples was characterised using a specially designed oedometer apparatus. Measurements of thermal conductivity were taken periodically during the loading sequence. This data was used to model the behaviour of the backfill in a hypothetical jetted offshore trench using finite element analysis. The laboratory testing indicated that the stress-strain behaviour of the undisturbed and reconstituted material seems to be typical of similar onshore clayey soils. The data showed lower thermal conductivities for both the undisturbed and reconstituted soils than have previously been reported by industry for these types of soil. The results have provided extremely useful data on the fundamental behaviour of offshore clayey sediments and have given confidence in predictions of the coupled consolidation and thermal conductivity behaviour of jetted offshore soils using finite element analysis.
机译:除非流体温度保持在一定温度以上,否则传输未经处理的产品的管道容易形成蜡和水合物。由于裸管可以具有相对较高的导热率,因此可以将管埋起来以利用周围土壤的热特性。但是,人们对粘土质海上沟槽回填固结的热导率了解甚少。本文介绍了一系列对海上黏性沉积物的实验室测试,以研究可压缩性和热导率行为的耦合。使用专门设计的里程计设备对土壤样品的可压缩性进行了表征。在加载过程中定期进行热导率测量。使用有限元分析,该数据用于模拟假想的喷射海上沟槽中回填的行为。实验室测试表明,原状和再生材料的应力-应变行为似乎是相似的陆上黏性土壤的典型特征。数据显示,原状和再生土壤的热导率均低于工业界以前对这类土壤的报道。研究结果为海上黏土沉积物的基本行为提供了非常有用的数据,并为使用有限元分析预测喷射的近海土壤的固结和导热系数耦合提供了信心。

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