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Development options for the Dutch gas distribution grid in a changing gas market

机译:不断变化的天然气市场中荷兰天然气分销网络的开发选择

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The Dutch gas distribution grid faces several changes in the near future. Among others, the share of green gas will grow, the interaction with the electricity distribution grid and local heat grids will increase, and the grid will transform from a mono-gas system to a multi-gas system. The gas distribution grid is likely to be expanded with novel components, e.g. blending stations, gas storage sites, and gas compressor stations. Furthermore, these changes require the currently passive gas distribution grid to become a smart gas grid that monitors and controls the gas pressure, gas flow, and gas quality. Therefore, the distribution service operators need to make investments in the gas distribution grid. When looking at for example the introduction of green gas, a decision tree on the optimal green gas supply configuration can be identified. Decisions in this respect consider, among others, the location of several process steps (perform the process step locally at a small scale or centrally at a larger scale) and the addition of components like a gas storage site or a compressor station. Due to the multitude of development options for the gas distribution grid and the fact that the best solution is largely dependent on the local situation and performance criteria (e.g. CO2 emission minimization or cost minimization), a tool is required that can generate situation specific solutions. Each solution generated by the tool should have its own advantages and disadvantages. Generating multiple options and showing the advantage and disadvantage of them provides the distribution service operators insight in the available options and eases the decision making on investments of the gas distribution grid.
机译:荷兰的燃气分配网在不久的将来将面临一些变化。其中,绿色气体的份额将增加,与配电网和局部热网的相互作用将增加,并且该网将从单气系统转变为多气系统。气体分配网格很可能会增加一些新颖的组件,例如混合站,气体储存站和气体压缩机站。此外,这些变化要求当前的无源气体分配网格成为监视和控制气体压力,气体流量和气体质量的智能气体网格。因此,配送服务运营商需要在燃气配送网进行投资。当查看例如绿色气体的引入时,可以确定关于最佳绿色气体供应配置的决策树。在这方面的决策尤其考虑了几个过程步骤的位置(以小规模局部执行该过程步骤,或以较大规模集中执行该步骤),并添加诸如储气站或压缩机站之类的组件。由于气体分配网格有多种开发选择,并且最佳解决方案很大程度上取决于当地情况和性能标准(例如,CO 2 排放最小化或成本最小化),这一事实是一种工具。可以生成针对具体情况的解决方案的要求。该工具生成的每个解决方案都应具有自己的优点和缺点。生成多个选项并显示它们的优缺点可为分配服务运营商提供有关可用选项的见解,并简化了天然气分配网投资的决策。

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