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Development of a system for automated control of oil transportation in the Arctic region to prevent the formation of paraffin deposits in pipelines

机译:开发用于自动控制北极地区石油运输的系统,以防止在管道中形成石蜡沉积物

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The paper introduces a unique methodology of preventing and controlling the formation of paraffin deposits in oil pipelines, which is a matter of urgency in regions with negative temperatures, including the Arctic regions. The paper presents the configuration and specific parameters of the developed measuring unit. The proposed measuring unit is capable of detecting the formation of a paraffin layer during its early stages and predicting its composition. Simultaneous use of two radioisotope sensors allows increasing the performance capabilities of the measuring unit, namely to detect the formation of a paraffin layer in the early stages and to issue a signal to amplify the control signal to control the oil pipeline paraffinisation. In addition, the use of a radioisotope unit instead of a single sensor will increase the accuracy of component-wise flow rate measurement, by making an allowance for paraffin deposits formation. The use of customized information processing algorithms also allows determining oil viscosity with high accuracy. The paper deals with an optimization of a system for automated control of a promising method of electric heating via the skin-cables, wherein safety factors of up to 36% are currently used, i.e. in most cases, 1/3 excess electric power is generated. The safety of using the radioisotope measuring technique is proven.
机译:本文介绍了一种独特的预防和控制石油管道中石蜡沉积物形成的方法,这在包括北极地区在内的温度较低的地区是当务之急。本文介绍了已开发的测量单元的配置和特定参数。所提出的测量单元能够在其早期阶段检测石蜡层的形成并预测其组成。同时使用两个放射性同位素传感器可以提高测量单元的性能,即在早期阶段检测石蜡层的形成并发出信号以放大控制信号以控制石油管道的石蜡化。另外,使用放射性同位素单元代替单个传感器将通过允许形成石蜡沉积物来提高逐组分流速测量的准确性。使用定制的信息处理算法还可以高精度确定油的粘度。该论文涉及一种通过皮肤电缆自动控制有前途的电加热方法的系统的优化,其中目前使用的安全系数高达36%,即在大多数情况下,会产生1/3的超额电力。已经证明了使用放射性同位素测量技术的安全性。

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