首页> 外文期刊>Energy systems >Sensor-based gas tracking: Data acquisition, linearization, and successive source tracking and separation
【24h】

Sensor-based gas tracking: Data acquisition, linearization, and successive source tracking and separation

机译:基于传感器的气体跟踪:数据采集,线性化和连续源跟踪和分离

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The propagation of information encoded in the fluctuations of chemical species of natural gas transported within natural gas distribution grids allows for a new gas tracking method. In contrast to state of the art gas and calorific value tracking based on numerical gas-flow simulations, the presented method is solely based on signal processing techniques. Due to a wider diversification of natural gas sources, gas and therefore calorific value tracking is of great interest for gas grid operators to provide fair invoicing of gas customers. The calorific value of substitute natural gas, e.g. produced by biogas or power-to-gas plants, injected concurrently into natural gas grids, typically deviates significantly over time in comparison to the prevailing natural gas in the grid. Sampling gas features like the chemical species contained in injected gases, or the standard density, by means of calibrated sensors, e.g. by process gas chromatography or infrared sensors, provides time-dependent signals that can be taken for calorific value extrapolation from source nodes to downstream nodes. To that end, we provide a general estimation of gas feature related transmission characteristics of natural gas distribution grids based on a straightforward one-dimensional diffusion model. Additionally, we present an accurate technique to estimate transit times and source fractions on gas grid exit nodes. We show with a field experiment, that gas tracking based on gas sensor signals is feasible and that our new method improves on state of the art gas tracking software based on computational fluid dynamics, already in use for gas customer invoicing.
机译:在天然气分布网格中运输的天然气的化学物质的波动中编码的信息传播允许新的气体跟踪方法。与基于数值气流模拟的艺术气体和热值跟踪的状态相比,所提出的方法仅基于信号处理技术。由于天然气源,天然气的更广泛多样化,因此热值跟踪对气体网格运营商提供了极大的兴趣,以提供燃气客户的公平开票。例如,替代天然气的热值,例如替代天然气。由沼气或能量到气体植物产生,同时注入天然气栅格,通常与电网中的主要天然气相比显着偏离时间。通过校准的传感器,例如通过校准的传感器,如注射气体中包含的化学物质等化学物质等采样的气体特征,例如,通过校准的传感器。通过处理气相色谱或红外传感器,提供时间相关的信号,可以从源节点到下游节点的热值外推。为此,我们基于直接的一维扩散模型提供天然气分布网格的气体特征相关传输特性的一般估计。另外,我们介绍了一种准确的技术来估计燃气网格出口节点上的运输时间和源分数。我们以现场实验显示,基于气体传感器信号的气体跟踪是可行的,我们的新方法基于计算流体动力学的艺术气体跟踪软件的状态提高,已经用于气体客户发票。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号