Fugitive Emissions Study: How to Minimize and Control Methane Emissions While Utilizing Sand Separators

R. Wasfy, D. Spady, Á. Sisto, C. Hemstock, K. Hierath
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Abstract

The goal for all oil and gas well sites is to have zero fugitive emissions. This is functionally difficult during flowback and early production operations, however, minimizing and managing fugitive emissions to net-zero is possible with planning and careful production equipment selection. Sand separators are a critical piece of flowback and early production equipment. The process of removing sand at high pressure through blowing vessels down to atmospheric pressure, provides conditions where fugitive emissions can be created. In order to reduce the unnecessary fugitive emissions, horizontal or low angle Desanders have shown better performance over vertical or spherical sand separators as they have a larger sand holding capacity as well as a reliable sand measuring system resulting in fewer cleanouts and unnecessary releases of fugitive emissions (Wasfy et al, SPE-196142-MS 10). Furthermore, simple changes and additions to the rig-up design can be made to allow for all methane emissions to be captured during the process providing options for how to handle greenhouse gases in order to minimize environmental impact. Using a spherical separator as a base measurement, for 1 m3 (264.2 gallons) of sand stopped a vertical geometry would produce 94.3% of the carbon emissions of the spherical vessel while the horizontal desander would produce 34.5% of the carbon emissions of the spherical and a low angle tilt would produce 14.7% of the carbon emissions. Also, through leveraging improved rig-up design with Horizontal and Low-Angle Tilt Desander, all methane resulting from the desanding process can be captured and directed to flare or vapor recovery reducing the equivalent CO2 released into the environment to near zero. With the industry moving to achieve the minimal amount of environmental impact, operators are looking at every aspect of the process to reduce methane emissions, including the flowback process. The implementing of horizontal or Low-Angle Tilt Desanders, the sand measurement system, and the improved rig-up design allows for the elimination of open tanks on location during flowback. Further analysis, design improvements, and technology integration continues in order to achieve the goal of eliminating flaring and to conserve all methane produced by compressing into the pipeline and/or reserving to fuel other completions operations.
无组织排放研究:如何在利用砂分离器的同时减少和控制甲烷排放
所有石油和天然气井场的目标是实现零逸散排放。在返排和早期生产作业中,这在功能上是困难的,然而,通过规划和仔细的生产设备选择,可以将逸散排放最小化并管理到净零。砂分离器是返排和早期生产设备的关键部件。通过将容器吹到大气压力,在高压下去除沙子的过程,为产生逸散性排放提供了条件。为了减少不必要的无组织排放物,水平或低角度除砂器比垂直或球形除砂器表现出更好的性能,因为它们具有更大的持砂能力以及可靠的测砂系统,从而减少了清砂量和不必要的无组织排放物释放(Wasfy等,SPE-196142-MS 10)。此外,可以对装配设计进行简单的更改和添加,以便在过程中捕获所有甲烷排放,从而为如何处理温室气体提供选择,以最大限度地减少对环境的影响。使用球形分离器作为基础测量,对于1立方米(264.2加仑)的砂,垂直几何形状停止将产生94.3%的球形容器的碳排放量,而水平除砂器将产生34.5%的球形碳排放量,低角度倾斜将产生14.7%的碳排放量。此外,通过改进的水平和低角度倾斜除砂器的安装设计,除砂过程中产生的所有甲烷都可以被捕获并直接用于火炬或蒸汽回收,将释放到环境中的当量二氧化碳减少到接近零。随着油气行业努力实现对环境影响最小化的目标,油公司正在关注该过程的各个方面,以减少甲烷的排放,包括反排过程。采用水平或低角度倾斜除砂器、测砂系统和改进的装配设计,可以在返排过程中消除现场的开放式储罐。进一步的分析、设计改进和技术整合将继续进行,以实现消除燃烧的目标,并通过压缩到管道和/或储存为其他完井作业提供燃料来保存所有产生的甲烷。
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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