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Numerical simulation for the heat transfer behavior of oil pipeline during the shutdown and restart process

机译:输油管道关停重启过程中传热行为的数值模拟

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Mathematical models for the heat transfer behavior of the oil pipeline during shutdown and restart are established. And the finite difference and finite volume method are used to disperse the mathematical models to investigate the heat transfer characteristics of the thermal system. Five simulation cases are executed to obtain some findings. During restart, the pipeline can be divided into three regions with each region has a certain temperature changing trait. And the increasing of temperature on certain position has two stages and each stage has a different temperature evolution due to the movement of remain cold oil and entering of hot oil. The surrounding soil has the analogical temperature evolution in contrast to the crude oil except some thermal hysteresis exists. And a thermal influence region is also found around the pipeline. The influence of restart flow and temperature on the oil pipeline is also investigated. There is a worthy of note that in case that the restart flow is lower than a certain value, there may be appears a period of time that the oil temperature continues to decrease although the pipeline has been restarted. This condition increases the risk of oil gelatinization.
机译:建立了停机和重启过程中输油管道传热行为的数学模型。并利用有限差分法和有限体积法对数学模型进行离散,以研究热力系统的传热特性。执行五个模拟案例以获得一些发现。在重新启动期间,管道可以分为三个区域,每个区域具有一定的温度变化特性。由于剩余冷油的运动和热油的进入,在某一位置的温度升高有两个阶段,每个阶段的温度变化都不同。除了存在一些热滞后,周围的土壤与原油相比具有类似的温度变化。并且在管道周围还发现了一个热影响区域。还研究了重启流量和温度对输油管道的影响。值得注意的是,如果重新启动流量低于某个特定值,则可能会出现一段时间,尽管管道已重新启动,但油温仍继续下降。这种情况会增加油糊化的风险。

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