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首页> 外文期刊>International Journal of Heat and Mass Transfer >Temperature drop and gelatinization characteristics of waxy crude oil in 1000 m~3 single and double-plate floating roof oil tanks during storage
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Temperature drop and gelatinization characteristics of waxy crude oil in 1000 m~3 single and double-plate floating roof oil tanks during storage

机译:储藏过程中1000 m〜3单板和双板浮顶油罐中蜡质原油的温度下降和糊化特性

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Single and double-plate floating roof oil tanks are two types of widely used floating roof oil tanks in petrochemical industry. However, the differences in flow and hear transfer characteristics of waxy crude oil inside these two tanks have been studied insufficiently. Finite volume method is employed in this research to study the temperature drop and gelatinization processes of waxy crude oil as well as the differences in single and double-plate floating roof tanks. Based on a comprehensive consideration of the atmosphere, soil, floating roof oil tank as well as the tank structure and the variations of the waxy crude oil state and rheological behavior, general physical and mathematical models are established. In the model, wax precipitation and gelatinization processes of waxy crude oil are described by the enthalpyporous media method. Non-Newtonian behavior is described by the Power law equation. Turbulent natural convection is described by the LES method. SIMPLE algorithm is employed to couple pressure and velocity. Taking 1000 m(3) single and double-plate floating roof oil tanks as examples, the evolution of oil temperature and flow behavior is studied and the variations of the gel oil thickness and heat flux are analyzed. Moreover, the differences between these two tanks are also discussed. Results show that due to the structure difference of the tank roof, the temperature drop rates are 0.018 degrees C/h and 0.007 degrees C/h respectively in single and double-plate floating roof tanks in the case of this research. Secondly, for the growth of gel oil on tank bottom, in double-plate floating roof tank, gel oil thickness keeps growing and fluctuating, while in single-plate tank, the original gelled oil layer disappears firstly and then increases gradually. Thirdly, although for both tanks, tank roof is the main part of heat dissipation towards the atmosphere, the maximum heat fluxes are respectively over 2.0 kW and 0.4 kW for single and double-plate floating roof tanks, and the total average heat fluxes respectively are 1.49 kW and 0.59 kW. (C) 2019 Published by Elsevier Ltd.
机译:单板和双板浮顶油箱是石化行业中广泛使用的两种浮顶油箱。然而,对这两个罐内蜡质原油的流动和听觉传递特性的差异的研究不足。本研究采用有限体积法研究蜡质原油的温度下降和糊化过程,以及单板和双板浮顶罐的差异。综合考虑大气,土壤,浮顶油罐,罐结构以及蜡质原油状态和流变行为的变化,建立了一般的物理和数学模型。在该模型中,通过焓孔介质法描述了蜡质原油的蜡沉淀和糊化过程。非牛顿行为由幂定律方程描述。 LES方法描述了湍流自然对流。采用SIMPLE算法来耦合压力和速度。以1000 m(3)单板和双板浮顶油箱为例,研究了油温和流动行为的演变,并分析了凝胶油厚度和热通量的变化。此外,还讨论了这两个水箱之间的差异。结果表明,由于罐顶结构的不同,在这种情况下,单板和双板浮顶罐的降温速率分别为0.018℃/ h和0.007℃/ h。其次,随着罐底胶油的增长,在双板浮顶罐中,胶油厚度持续增长和波动,而在单板罐中,原始胶化油层首先消失,然后逐渐增加。第三,尽管对于两个储罐,罐顶都是向大气散热的主要部分,但单板和双板浮顶罐的最大热通量分别超过2.0 kW和0.4 kW,而总平均热通量分别为1.49 kW和0.59 kW。 (C)2019由Elsevier Ltd.发布

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