论文标题
管道网络中天然气和氢混合物稳定流动的建模和优化
Modeling and Optimization of Steady Flow of Natural Gas and Hydrogen Mixtures in Pipeline Networks
论文作者
论文摘要
我们将带有压缩机的管道网络中稳态气流的模拟和优化的规范问题扩展到整个网络中注入的高度异质气体的混合物的运输。我们的研究是由拟议的项目激励的,该项目将使用清洁能源产生的氢混合到现有的天然气管道系统中,这是减少能源系统对化石燃料的依赖的努力的一部分。管道中的流量与基本的Weymouth方程模型与端点压力有关,该模型具有理想的气体方程,其中波速取决于氢浓度。在顶点,除了质量平衡之外,我们还考虑混合不同氢浓度的传入流。感兴趣的问题是异质气体流量模拟(HGFS),它决定了给定固定边界条件和压缩机设置的系统压力和流动,以及异质气体流动优化(HGFO),通过确定最佳边界条件和压缩机设置来极大地确定目标。我们研究了HGF溶液唯一性的条件,并比较和对比度混合且连续的非线性编程配方。我们开发了解决这两个问题的计算方法,并使用四个复杂性的测试网络检查了它们的性能。
We extend the canonical problems of simulation and optimization of steady-state gas flows in pipeline networks with compressors to the transport of mixtures of highly heterogeneous gases injected throughout a network. Our study is motivated by proposed projects to blend hydrogen generated using clean energy into existing natural gas pipeline systems as part of efforts to reduce the reliance of energy systems on fossil fuels. Flow in a pipe is related to endpoint pressures by a basic Weymouth equation model, with an ideal gas equation of state, where the wave speed depends on the hydrogen concentration. At vertices, in addition to mass balance, we also consider mixing of incoming flows of varying hydrogen concentrations. The problems of interest are the heterogeneous gas flow simulation (HGFS), which determines system pressures and flows given fixed boundary conditions and compressor settings, as well as the heterogeneous gas flow optimization (HGFO), which extremizes an objective by determining optimal boundary conditions and compressor settings. We examine conditions for uniqueness of solutions to the HGFS, as well as compare and contrast mixed-integer and continuous nonlinear programming formulations for the HGFO. We develop computational methods to solve both problems, and examine their performance using four test networks of increasing complexity.