减压条件下主油管模态参数的修正

V. Bolonnyi
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引用次数: 0

摘要

介绍了乌克兰石油运输系统的特点;确定了乌克兰石油管道的应急风险。对乌克兰、俄罗斯和美国的石油管道运输事故率进行了分析。考虑了乌克兰石油管道运行期间人为紧急情况的开始和发展过程。本文介绍了根据原油泄漏点的原油损失量来确定管道中附带压力的技术。为石油管道运输突发事件的损失量计算和环境危害评价提供了契机。它是基于运动方程和流体流动的连续性。这种技术可以计算出由于段段开始和结束时的压力变化以及集中采油的出现而引起的瞬态模式下管道每个点的压力。它还提供了一个机会来监测在管道减压条件下沿管道模式参数的变化。当波动幅度最大时,计算结果的最大差异成为典型。已经确定,当与摄动源的距离增大时,差异增大。对于摄动起始点()处的压力波动,计算结果几乎不存在差异。根据计算结果,构建了输油管道内由于段首和段末压力跃变以及管道路线某一点可能存在泄漏而引起的振荡过程的压力变化图。主要输油管道的管线段是最危险的部分,因为所有的突发事件都与不同强度的以石油泄漏到环境中的应急过程有关,并且由于系统可能发生故障而具有危险性。油污区产生的过程和时间长短取决于原油泄漏量、泄漏强度和输油管道的深度。
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Modification of Mode Parameters of Main Oil Pipelines under the Condition of Depressurizing
The characteristics of Ukrainian oil transportation system are presented; the emergency risks of Ukrainian oil pipelines are established. The analysis of the accident rate of oil pipeline transportation in Ukraine, Russia and the USA was carried out. The processes of initiation and progression of man-made emergencies in Ukraine during the oil pipelines operation are considered. The article presents the technique of specifying the incidental pressure in a pipeline, depending on the amount of oil loss at the site of oil leaks. It gives an opportunity to calculate the amount of oil loss and to evaluate the environmental hazards caused by oil pipeline transportation emergencies.  It is based on the equations of motion and continuity of fluid flow. This technique makes it possible to calculate the pressure at each point of a pipeline in transient mode caused by changes in pressure at the beginning and at the end of the section and the emergence of concentrated oil offtake. It also gives an opportunity to monitor the change in mode parameters along the pipeline under conditions of pipeline depressurization. Maximum discrepancy in calculation results becomes typical when the range of fluctuations is maximal. It has been established that discrepancy increases when the distance from the source of perturbation becomes bigger. The discrepancy in calculation results is practically non-existent for the pressure fluctuations at the point of perturbation start (). Based on the results of calculations, the author constructs a graph of pressure change of the oscillatory process in the oil pipeline caused by the jump in the pressure at the beginning and at the end of the section, and the presence of probable leaks at the certain point of the pipeline route. The line section of the main oil pipelines is the most dangerous part since all emergencies are associated with emergency processes of different intensity in the form of outflow of oil into the environment, and are dangerous because of system breakdowns can take place. Both the process of the generation of the oil pollution zone and its time period depend on the amount of oil leakage, its intensity and depth of the oil pipeline.
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