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OPTIMIZING THE STEADY OPERATION OF AN DOUBLE OIL PIPELINE SYSTEM BY DECOMPOSTION METHOD

机译:通过分解方法优化双油管系统的稳定运行

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As a main channel for long distance transportation of Daqing crude oil, Daqing-Tieling oil pipeline system consists of two pipelines in parallel. With its capacity of 45 million tons per year, the system is the largest oil pipeline system in China and plays an important role in the petroleum industry and national economy of China. Due to the complicated interconnection between the two pipelines in the system, the optimization of steady operation of the system is much more difficult than a single pipeline so that it can be considered as an optimization problem on large scale system. Besides the interconnection of the two pipelines, because of high pour point of Daqing crude oil , another difficulty to solve the problem comes from the fact that the two pipelines are hot oil pipeline, of which the heating-pumping stations are equipped with some heaters to heat the crude oil so as to improve its flow ability. For the optimization problem, the basic decision variables can be divided into two types, the discharge temperature of each heating-pumping station and the 0-1 variable which assigns a pump online or offline, and they are dependent to each other. Under certain conditions, the problem can be decomposed into two relatively independent sub-problems, one being the optimization of the oil temperatures in the system, another being the optimization of the matching between a pump combination and the all pipe segments of the system. The first sub-problem has been modeled as a nonlinear programming problem with 55 decision variables and more than one hundred constraints. For simplifying the solving process of the sub-problem, it has been further decomposed into a set of sub-problems again, each of which can be easily solved. The second sub-problem can be modeled as a dynamic programming problem. On the basis of the models and the algorithms proposed for the above-mentioned problem, a software QTOPT has been developed specially for the Daqing-Tieling oil pipeline system, and has been used in evaluating and optimizing the process design of the system. Also the software can be used to optimize the steady operation of the system.
机译:作为大庆原油长途运输的主要通道,大庆泰尔工油管道系统由两个平行的管道组成。该系统每年拥有4500万吨的能力,是中国最大的石油管道系统,在石油工业和中国国民经济中发挥着重要作用。由于系统中的两个管道之间的复杂互连,系统的稳定操作的优化比单个管道更困难得多,使得它可以被视为大规模系统上的优化问题。除了两个管道的互连外,由于大庆原油的高倾点,还有解决问题的另一个困难来自于两条管道是热油管的事实,其中加热泵站配有一些加热器加热原油,以提高其流动能力。对于优化问题,基本判定变量可以分为两种类型,每个加热泵站的放电温度和分配泵的0-1变量,它们彼此依赖。在某些条件下,问题可以分解成两个相对独立的子问题,一个是系统中的油温优化,另一个是泵组合与系统的所有管道区段之间的匹配。第一个子问题已被建模为非线性编程问题,其中55个决策变量和超过一百个约束。为了简化子问题的求解过程,再次进一步分解成一组子问题,每个子问题可以容易地解决。第二子问题可以被建模为动态编程问题。在模型和算法上提出的上述问题的基础上,软件QTOPT专为大庆 - 泰林油管系统开发,并已用于评估和优化系统的过程设计。此外,该软件可用于优化系统的稳定操作。

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