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首页> 外文期刊>Case Studies in Thermal Engineering >A three - Dimensional numerical simulation of shut - Down heat transfer process in overhead waxy crude oil pipeline
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A three - Dimensional numerical simulation of shut - Down heat transfer process in overhead waxy crude oil pipeline

机译:顶部蜡质原油管道中的闭嘴传热过程的三维数值模拟

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An additional specific heat capacity method and a momentum source method are used to establish a mathematical model to numerically simulate the three-dimensional heat transfer characteristics and flow characteristics of the horizontal three-dimensional overhead crude oil pipeline during the shutdown process. The temperature, velocity and gelation fields of horizontal three-dimensional overhead pipelines with different radial sections along the axial direction have similar evolution processes, although they are affected by the axial temperature drop at the shutdown front. The temperature field has experienced a layered distribution, an approximately elliptical distribution, and a concentric circle distribution in turn. The state with the main heat transfer of natural convection has a large flow velocity. The flow velocity gradually disappears with the increase of the shutdown time. The main mode of heat transfer also completely changes from the coexistence of natural convection and heat conduction to heat conduction. The gel layer first appears on the lower tube wall, and then grows upward along the pipeline wall. The final gel layer gradually changes from an oval shape to a concentric circle under the driving of heat conduction.
机译:额外的特定热容量方法和动量源方法用于建立数学模型,以在关闭过程中进行数值模拟水平三维高架原油管道的三维传热特性和流动特性。沿轴向具有不同径向截面的水平三维架空管道的温度,速度和凝胶化场具有类似的进化过程,尽管它们受到在关断前的轴向温度下降的影响。温度场经历了分层分布,逐渐椭圆分布和同心圆分布。具有自然对流的主要传热的状态具有大的流速。随着关闭时间的增加,流速逐渐消失。热传递模式也完全从自然对流的共存和热传导中的共存变化。凝胶层首先出现在下管壁上,然后沿管道壁向上生长。最终的凝胶层在热传导驱动下逐渐从椭圆形变为同心圆。

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