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首页> 外文期刊>Oil & gas science and technology >Durability of Syntactic Foams for Deep Offshore Insulation: Modelling of Water Uptake under Representative Ageing Conditions in Order to Predic the Evolution of Buoyancy and Thermal Conductivity
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Durability of Syntactic Foams for Deep Offshore Insulation: Modelling of Water Uptake under Representative Ageing Conditions in Order to Predic the Evolution of Buoyancy and Thermal Conductivity

机译:深海绝缘用句法泡沫的耐久性:在有代表性的老化条件下对吸水量进行建模,以预测浮力和导热系数的演变

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摘要

Three different syntactic foams were aged under various conditions of both temperature (from 4°C to 130°C) and pressure (from 1 bar to 300 bar) in renewed sea water. Some functional properties were measured during aging. First, the link between water uptake and both buoyancy and thermal conductivity evolutions was established for each syntactic material under any ageing conditions. Then a finite element model was developed in order to compute water uptake in the materials. The model, based on the description of three hydration mechanisms, each mechanism being linked to a part of the microstructure of the foam, gives a satisfactory agreement with experimental results for all aging conditions and specimen sizes. The model was finally used to simulate the evolution of some functional properties that would experience a structure immersed in real conditions over 20 years. Furthermore, the thickness of the insulation material affected by water ingress after 20 years of aging can be estimated, and this value can be used at the time of design as a sacrificial thickness.
机译:在不同的温度(从4°C到130°C)和压力(从1 bar到300 bar)的不同条件下,将三种不同的合成泡沫在更新的海水中老化。在老化过程中测量了一些功能特性。首先,在任何老化条件下,为每种句法材料建立了吸水与浮力和导热率演变之间的联系。然后开发了一个有限元模型来计算材料中的吸水率。该模型基于三种水合机理的描述,每种机理都与泡沫微结构的一部分相关,与所有老化条件和样品尺寸的实验结果均令人满意。该模型最终用于模拟某些功能特性的演变,这些特性将经历20年沉浸在真实条件下的结构。此外,可以估算出经过20年老化后受水浸入影响的绝缘材料的厚度,并且该值可以在设计时用作牺牲厚度。

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