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Numerical investigation on the flow and heat transfer characteristics of waxy crude oil during the tubular heating

机译:管状加热过程中蜡质原油流动和传热特性的数值研究

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摘要

In industrial practice, tubular heating is known as an effective technology to ensure the security storage of waxy crude oil in the tank. Insights of the thermal and flow behaviors during the tubular heating is a key aspect to optimize the strategy of this heating technology, in order to reduce the cost. In this study the physical and mathematical models representing the heat transfer and flow of waxy crude oil during tubular heating are established. The additional specific heat capacity and momentum source terms methods are employed to address the changing physical properties related to the paraffin crystallization and dissolution. The FVM, PIS0 and fully implicit first order temporal differentiation algorithms are used to perform the numerical simulation. Our outcomes show that the thermal process during tubular heating can be divided into four phases: ①Local thermal response phase, ②Thermal diffusion phase, ③Global thermal response phase, ④Elimination of gelled oil phase. The initial thermal influence range is inhibited by the thermal condition and solid-like gelled waxy crude oil formed after cooling. The plume flow takes great effects of transferring the heat from the tubes to crude oil and accelerating the phase transition, and finally facilitates the oil temperature uniform increasing in most parts of the tank. Whereas the gelled crude oils in the corner between the sidewall and base wall have the strongest solid-like character and lowest temperature. A low temperature layer keeps covering the base wall. At the top wall, the center region between the sidewall and center of the tank is long time occupied by gelled oil. The proportion of solid-like gelled crude oil keeps decreasing with a small slope value following a linear relationship with heating time. A pronounced phase change of waxy crude oil from the transition state into the pure liquid is observed. The minimum temperature value decreases in the initial heating period, and then steeply increases to an approximate plateau value. The fluctuations of the heating powers are observed indicating the transient thermal convections around the tubes. The heat loss power is lowest at the base wall and nearly unchanged. The heat loss power at top wall and sidewall are significantly influenced by heating tubes and depend on the wall temperature.
机译:在工业实践中,管状加热被称为一种有效的技术,以确保罐中蜡质原油的安全储存。在管状加热期间热和流动行为的见解是优化这种加热技术策略的关键方面,以降低成本。在这项研究中,建立了表示管状加热期间蜡状原油热传递和蜡状原油流动的物理和数学模型。使用额外的特定热容量和动量源术语方法来解决与石蜡结晶和溶解相关的变化的物理性质。 FVM,PIS0和完全隐式的第一阶时间差分算法用于执行数值模拟。我们的结果表明,管状加热期间的热处理可分为四个阶段:①本地热响应相,②热扩散相,③Global热响应相,④凝胶化油相。通过在冷却后形成的热条件和固体状凝胶状蜡状原油抑制初始热影响范围。羽流流量对从管中的热量转移到原油并加速相转变的效果很大,并且最终促进油温均匀在罐的大部分部分增加。虽然侧壁和底壁之间的拐角处的凝块原油具有最强的固体状特性和最低温度。低温层覆盖底壁。在顶壁处,槽中的侧壁和中心之间的中心区域长时间被凝胶的油占据。在与加热时间线性关系之后,固体样凝胶原油的比例与小斜率值呈下降。观察到从过渡状态到纯液体中的蜡质原油的明显相变。最小温度值在初始加热期内降低,然后急剧增加到近似高原值。观察到加热功率的波动,表示管周围的瞬态热对流。热损耗功率在底墙上最低,几乎不变。顶壁和侧壁处的热损耗功率受加热管的影响,并取决于壁温。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第11期|120239.1-120239.20|共20页
  • 作者单位

    Key Laboratory of Enhance Oil and Gas Recovery of Educational Ministry Department of Petroleum Engineering Northeast Petroleum University Daqing PR China;

    Key Laboratory of Enhance Oil and Gas Recovery of Educational Ministry Department of Petroleum Engineering Northeast Petroleum University Daqing PR China;

    Key Laboratory of Enhance Oil and Gas Recovery of Educational Ministry Department of Petroleum Engineering Northeast Petroleum University Daqing PR China;

    Key Laboratory of Enhance Oil and Gas Recovery of Educational Ministry Department of Petroleum Engineering Northeast Petroleum University Daqing PR China;

    Key Laboratory of Enhance Oil and Gas Recovery of Educational Ministry Department of Petroleum Engineering Northeast Petroleum University Daqing PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Waxy crude oil; Tubular heating; Numerical simulation; Phase change; Heat transfer;

    机译:蜡质原油;管状加热;数值模拟;相变;传播热量;

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