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Techno-Economic Evaluation of Associated Gas Usage for Gas Turbine Power Generation in the Presence of Degradation Resource Decline

机译:存在退化和资源下降的燃气轮机发电伴生气使用的技术经济评价

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摘要

This research examined the technical and economic feasibility of harnessing flare gas emissions from oil fields. The outcome would provide the basis for a substantial re-utilization of this waste energy due to the current practice of flaring and use it alternatively as energy for powering oil fields, rural electrification and desalination. Nigeria is used as a case study. Burning fossil fuels have grave environmental impact, amidst increasing global concerns over harmful emissions. This research addresses resource decline and suggests divestment as a partial cure.The gas turbine is subject to degradation of its components as it is used. Though several methods of assessing gas turbine degradation have been developed with varying degrees of success, no one method has addressed issues pertaining to associated gas and its effects on degradation with divestment. Simulation of two single shaft, heavy duty industrial gas turbines; and three aero-derivative industrial gas turbines of the heavy medium and light capacity ranges were carried out for varying operating conditions, to ascertain the effects of degradation when run on associated gas. Thereafter, optimizations for the best power plant engine mix and the least cost of electricity were carried out.Genetic algorithm was used to assess a population of 10,000 individuals over 500 generations; convergence was achieved for different configurations of the five study engines at discount rates of 5% and 10%, over three power ranges. The divestment pattern starts with the lightest aero-derivative industrial gas turbine; the best power plant selection was limited to the two lightest aero-derivatives in the fleet, completely ignoring the heavy engines.A techno-economic, environmental and risk assessment model comprising performance, emission, economics and risk modules was successfully developed to assess gas turbine degradation with divestment. Using this tool, it was confirmed that associated gas usage resulted in degradation of gas turbine performance, an increase in gas collection as well as operation and maintenance costs. Also there was increasingly higher creep life consumption during slow, medium and fast degradation scenarios for both engine sets.The novel technical contribution of the research work therefore is the influence of degradation on the economic use of associated gas as fuel in gas turbine power generation; and the implementation of divestment in the face of fuel decline.
机译:这项研究检查了利用油田火炬气排放的技术和经济可行性。由于目前的燃烧方法,该结果将为该废能源的大量再利用提供基础,并将其替代地用作为油田,农村电气化和淡化提供动力的能源。以尼日利亚为例。在全球日益关注有害排放的情况下,燃烧化石燃料对环境造成严重影响。这项研究解决了资源减少的问题,并建议将撤资作为部分解决方案。燃气轮机在使用时会遭受其部件的降解。尽管已经开发了几种评估燃气轮机退化的方法,但均取得了不同程度的成功,但没有一种方法能够解决与伴生气有关的问题及其对撤资对退化的影响。两台单轴重型工业燃气轮机的仿真;并针对不同的工况进行了三台重载和轻载范围的航空衍生工业燃气轮机,以确定在相关气体上运行时的退化影响。此后,对最佳发电厂的发动机组合和最低的电力成本进行了优化。使用遗传算法评估了500余代的10,000个人的种群;在三个功率范围内,以5%和10%的折现率对五个研究引擎的不同配置实现了收敛。撤资模式始于最轻的航空衍生工业燃气轮机。最好的电厂选择仅限于机队中最轻的两种航空衍生品,完全忽略了重型发动机。成功开发了一种技术经济,环境和风险评估模型,包括性能,排放,经济和风险模块,以评估燃气轮机撤资导致退化。使用该工具,已确认相关的燃气用量导致燃气轮机性能下降,燃气收集量增加以及运行和维护成本。在这两种发动机组的慢速,中速和快速退化情况下,蠕变寿命消耗也越来越高。因此,研究工作的新技术贡献是退化对燃气轮机发电中伴生气作为燃料的经济利用的影响。并在燃料减少的情况下实施撤资。

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    Allison Isaiah;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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