针对人为溢油问题,探讨了周围水介入射流的特点

S. R. Kildibaeva, M. Stolpovsky, Elina E. Suyargulova
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引用次数: 0

摘要

俄罗斯联邦的石油开发规模每年都在增长。三分之一的碳氢化合物产自近海地区。在俄罗斯,海上石油生产发生在鄂霍次克海、波罗的海、里海和佩霍拉海。管道石油生产是一个技术复杂的过程,因此增加了为石油产品的生产、运输和加工创造安全过程的相关性。如果忽视安全防范,忽视每年的诊断和维修工作,就可能产生引发人为事故的因素,从而导致自然灾害的发生。意外石油泄漏的后果导致了环境中动植物的破坏。为了彻底消除石油泄漏,需要大量的经济、技术和时间资源。海上石油泄漏导致水下射流的形成,将碳氢化合物扩散到周围的流体中。预测这一水下射流的行为,有可能加快溢油响应的过程。本文研究了油品损坏源的形成问题。这种源可能是由于输油管道损坏而形成的。根据问题条件,该源位于储层底部,具有以下热物性特征:油体积流量、温度、密度等。该问题考虑的是介质的特性,其特点是输油管道深度小,因此没有考虑水合物的形成。为了解决这一问题,采用了积分拉格朗日控制体积法(ILCVM)。根据该方法,淹没射流被视为一系列圆柱形控制体,这些圆柱形控制体具有自己的特性,如半径、高度、密度、液含量比、温度、速度等。根据控制体积的移动,上述参数重新计算。这种水下射流还受到环境特征的影响:液体温度、水盐度和暗流的存在。利用ILCVM,建立了包含动量守恒方程、质量守恒方程和能量守恒方程的数学模型。为了保证模型的准确性,详细考虑了射流中周围流体的卷入参数。在此数学模型的基础上,对石油泄漏情况下射流中各种形式的水夹带进行了计算。构造了图来识别热物理特征的依赖关系。
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ABOUT THE FEATURES OF SURROUNDING WATER INVOLVEMENT IN THE JET FOR THE PROBLEM ON MAN-MADE OIL SPILLS
Every year, the scale of oil development in the Russian Federation is growing. A third of the hydrocarbons produced are in the offshore zone. In Russia, offshore oil production takes place in the Okhotsk, Baltic, Caspian and Pechora Seas. Oil production in a pipeline is a technologically complex process, thereby increasing the relevance of creating safe processes for the production, transportation and processing of petroleum products.If safety precautions are neglected, annual diagnostic and repair work is ignored, factors may arise that provoke the occurrence of man-made accidents leading to natural disasters. The consequences of accidental oil spills lead to the destruction of flora and fauna in the environment. For the complete elimination of an oil spill, considerable economic, technological and time resources are required.An offshore oil spill results in the formation of submerged jets that spread hydrocarbons into the surrounding fluid. Predicting the behavior of this submerged jet, it is possible to accelerate the process of oil spill response.The paper considers the problem of formation of a damaged source of oil products. This source could be formed as a result of oil pipeline damage. According to the condition of the problem, this source is located at the bottom of the reservoir and has the following thermophysical characteristics: oil volume flow, temperature, density, etc. The problem considers the characteristics of the medium, which are characterized by a small depth of the oil pipeline, so the formation of hydrate is not taken into account.To solve the problem, the integral Lagrangian control volumes method (ILCVM) is used. According to this method, the submerged jet is considered as a sequence of cylindrical control volumes, which have their own characteristics, such as radius, height, density, liquid content ratio, temperature, velocity, etc. Depending on the movement of the control volume, the above parameters are recalculated. This submerged jet is also affected by the characteristics of the environment: liquid temperature, water salinity, and the presence of an undercurrent.As a result of using ILCVM, a mathematical model that contains the equations of conservation of momentum, mass and energy was built For the accuracy of the model, the parameter of the involvement of the surrounding fluid in the jet is considered in detail. Based on the mathematical model, calculations were carried out for various formats of water entrainment in the jet for cases of oil spills. Graphs were constructed to identify the dependencies of the thermophysical characteristics.
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