New method for the transient simulation of natural gas pipeline networks based on the fracture-dimension-reduction algorithm

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS
Qiao Guo , Wenhao Xie , Zihao Nie , Pengfei Lu , Xi Xi , Shouxi Wang
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引用次数: 0

Abstract

The transient simulation technology of natural gas pipeline networks plays an increasingly prominent role in the scheduling management of natural gas pipeline network system. The increasingly large and complex natural gas pipeline network requires more strictly on the calculation efficiency of transient simulation. To this end, this paper proposes a new method for the transient simulation of natural gas pipeline networks based on fracture-dimension-reduction algorithm. Firstly, a pipeline network model is abstracted into a station model, inter-station pipeline network model and connection node model. Secondly, the pressure at the connection node connecting the station and the inter-station pipeline network is used as the basic variable to solve the general solution of the flow rate at the connection node, reconstruct the simulation model of the inter-station pipeline network, and reduce the equation set dimension of the inter-station pipeline network model. Thirdly, the transient simulation model of the natural gas pipeline network system is constructed based on the reconstructed simulation model of the inter-station pipeline network. Finally, the calculation accuracy and efficiency of the proposed algorithm are compared and analyzed for the two working conditions of slow change of compressor speed and rapid shutdown of the compressor. And the following research results are obtained. First, the fracture-dimension-reduction algorithm has a high calculation accuracy, and the relative error of compressor outlet pressure and user pressure is less than 0.1%. Second, the calculation efficiency of the new fracture-dimension-reduction algorithm is high, and compared with the nonlinear equations solving method, the speed-up ratios under the two conditions are high up to 17.3 and 12.2 respectively. Third, the speed-up ratio of the fracture-dimension-reduction algorithm is linearly related to the equation set dimension of the transient simulation model of the pipeline network system. The larger the equation set dimension, the higher the speed-up ratio, which means the more complex the pipeline network model, the more remarkable the calculation speed-up effect. In conclusion, this new method improves the calculation speed while keeping the calculation accuracy, which is of great theoretical value and reference significance for improving the calculation efficiency of the transient simulation of complex natural gas pipeline network systems.

基于裂缝降维算法的天然气管网瞬态模拟新方法
天然气管网暂态仿真技术在天然气管网系统调度管理中发挥着越来越突出的作用。日益庞大复杂的天然气管网对瞬态模拟的计算效率提出了更高的要求。为此,本文提出了一种基于裂缝降维算法的天然气管网瞬态模拟新方法。首先,将管网模型抽象为站点模型、站间管网模型和连接节点模型。其次,以站场与站间管网连接节点处的压力为基本变量,求解连接节点处流量的通解,重构站间管网仿真模型,降低站间管网模型的方程集维数。再次,在重建的站间管网仿真模型的基础上,构建了天然气管网系统的瞬态仿真模型。最后,针对压缩机转速变化缓慢和压缩机快速停机两种工况,对所提出算法的计算精度和效率进行了比较分析。并得出以下研究结果。首先,裂缝降维算法计算精度高,压缩机出口压力和用户压力的相对误差小于0.1%。其次,新的裂缝降维方法计算效率高,与非线性方程组求解方法相比,两种条件下的加速比分别高达17.3和12.2。第三,裂缝降维算法的加速比与管网系统瞬态仿真模型的方程组维数线性相关。方程组维数越大,加速比越高,这意味着管网模型越复杂,计算加速效果就越显著。总之,这种新方法在保持计算精度的同时提高了计算速度,对提高复杂天然气管网系统瞬态模拟的计算效率具有重要的理论价值和参考意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
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