绿化沙漠,助力企业,关爱环境

Jasbindra Singh, M. Lawati, Abdulkareem Hindawi, Mohammed Harthi, Abdel Samiee Rady, Mohammed Al Hinai, Marya Al Salmi, Safiya Al Hatmi, Mohamed Siyabi, Moosa Rawahi, I. Mahruqi, Nasser Al Azri
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引用次数: 0

摘要

本文介绍了采出和处理后的地层水用于大型池塘植树和养藻的利用情况;在阿曼南部发生了大规模的地震。已经进行了详细的研究,以评估在生产油藏中维持压力的注入要求,并使用剩余的多余盆栽处理水来种植棕榈树。过去,采出水被用于比生产层深的地层。采出水在一个处理站进行分离,该处理站接收来自南阿曼多个油田的总产量。这些水被处理在生产储层下面的含水层中,由于这种处理,储层经历了压力维持。研究了这种多余的水处理对含水层的影响,以评估破坏盖层完整性的风险。风险并不大,但为了确保“不损害环境和人员”,决定降低或优化注入速度,以保持油藏压力,保护储量。此外,水的处理需要大量的电力,相当于每年排放大量的二氧化碳。该研究使用简单的物质平衡方法来预测给定注射剖面的压力行为。该研究的建议已经付诸实施,将深水处理转变为注入含水层。这是通过整合从地下到现场作业的许多接口来实现的。所有的部件都已到位,以进行下一阶段的执行,即处理水面的水以去除石油,从而使水达到可接受的质量水平,用于植树和藻类池塘。该项目还旨在在未来的第二阶段进一步处理水,使其达到更高的规格,以便将其用于农业目的。这将引入一个依赖这一水源的商业农场。在南阿曼,这将是一个全新的概念,处理后的水将用于农业,在多个层面上解决多个问题,即帮助企业实现持续石油生产的目标,通过农业帮助当地社区创造就业机会,并通过减少碳足迹帮助组织保护环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Greening the Desert While Helping Business and Caring for the Environment
This paper describes the utilization of produced and treated formation water for planting trees and growing algae in large ponds; in a massive scale in South Oman. A detailed study has been carried out to assess the injection requirements for pressure maintenance in the producing reservoir and using the remaining excess pot-treated water for farming of the palm trees. The produced water has been used as disposal in formations deeper than the producing horizons in the past. The produced water was separated in a processing station that received gross production from a number of fields in South Oman. This water was disposed in the aquifer underlying a producing reservoir that has experienced pressure maintenance due to this disposal. The impact of this excess water disposal on the aquifer was studied to evaluate the risk of breaching cap rock integrity. The risk was not significant but to ensure "no damage to the environment and people" it was decided to reduce or optimize injection rates to maintain the reservoir pressure safeguarding reserves. In addition, the disposal of the water required significant amount of power equivalent to emitting significant amount of CO2 annually just for water disposal. The study was carried out using simple material balance methods to predict the pressure behaviour given an injection profile. The recommendations from the study have already been implemented to convert the deep-water disposal to injection in the aquifer. This has been achieved by the integration of number of interfaces from sub-surface to field operations. All the pieces are in place to take it the next level of execution that is to treat the water at surface for oil removal, hence rendering the water at acceptable quality levels for tree plantation and algae ponds. The project also aims in a future second phase to further treat the water to higher specifications allowing the use of it for agricultural purposes. This would introduce a commercial farm that will depend on this source of water. This would be a novel concept in South Oman where the treated water will be used for farming solving multiple issues at multiple levels namely helping the business achieve its objective of sustained oil production, helping local communities with employment via farming and helping the organization care for the environment by reducing carbon footprints.
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