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Revamping, Energy Efficiency,and Exergy Analysis of an Existing Upstream Gas Treatment Facility

机译:现有上游气体处理设施的改造,能效和火用分析

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Surface oil and gas treatment facilities in service for decades are likely to be oversized due to the natural depletion of their reservoirs. Despite these plants might have been designed modularly, meaning they comprise multiple identical units serving the same task, such units operate often in conditions far from the design. This work analyzes the revamping options of an existing upstream gas facility, chosen because representative of a wide set of plants. It presents a flexible process simulation model, implemented in the hysys environment and dynamically linked to an Excel spreadsheet, which includes the performance maps of all turbomachineries and the main characteristics of the investigated modifications. The model may be used to run simulations for various gas input conditions and to predict the performance over 1 year of operation and for different possible future scenarios. The first objective is to assess economically the considered options, which shall be applied only if yielding short return times of the investment since the reservoir is mature. Moreover, all options are appreciated adopting a figure of merit, here defined, that compares the overall energy consumption to the one calculated with state-of-the-art technologies. In addition, exergy and environmental analyses are executed.
机译:由于储层的自然枯竭,已投入使用数十年的地表油气处理设施可能会超大型。尽管这些工厂可能是模块化设计的,这意味着它们包含多个用于同一任务的相同单元,但此类单元通常在远离设计的条件下运行。这项工作分析了现有上游燃气设施的改造方案,这些方案之所以选择,是因为它们代表了众多电厂。它提供了一个灵活的过程仿真模型,该模型在hysys环境中实现并动态链接到Excel电子表格,其中包括所有涡轮机械的性能图以及所研究修改的主要特征。该模型可用于对各种气体输入条件进行模拟,并预测运行1年以上以及将来可能出现的不同情况下的性能。第一个目标是从经济角度评估考虑的方案,该方案仅在由于储层成熟而产生的投资回报时间短时才适用。此外,采用此处定义的品质因数,将所有能耗与采用最新技术计算得出的能耗进行比较,可以赞赏所有选择。另外,进行了火用和环境分析。

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