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Waste Heat to Power System in Oil and Gas Industry Improves Plant Power Efficiency

机译:石油和天然气工业中对电力系统的废热提高了厂房功率效率

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Waste heat is the by-product of industrial energy usage. Approximately one-third of the energy consumed by the oil and gas industry is discharged as thermal losses into the environment or via cooling systems. And the main reasons for waste heat discharge are process inefficiencies and technology limitations in the conversion of thermal to mechanical energy. Nevertheless, because the oil and gas industry demands large amounts of thermal, electrical and mechanical energy, a huge amount of waste heat is subsequently available. Organic Rankine Cycle (ORC) technology has made economical utilization of lower temperature heat sources possible. ORC's efficiency percentage for waste heat recovery varies between single digit to the mid-20s, depending on the waste heat source temperature and the cooling medium. Even the recovery of a few MW of thermal energy with a single-digit cycle efficiency for a plant consuming an average of 100 MW (134 102 hp) thermal energy is a considerable efficiency improvement. Studies by the Oakridge National Laboratory (USA) show that 75% of waste heat comes with sufficiently high temperatures (> 150°C, or > 302°F). This report projects a 2-5-year return of investment for ORC-based waste heat to power plant systems, which represents an attractive financial payback. The recovery of waste heat from oil and gas operations remains mostly underutilized. Furthermore, economically feasible power generation from waste heat has been limited to medium-to high-temperature waste heat resources. This paper will explore technical solutions to these challenges facing the oil and gas industry In this paper, three cases of waste heat from a gas turbine's exhaust flue gas are presented. The turbines have nominal output of 7.5, 15, and 25 MW (10 057, 20 115 and 33 525 hp) electrical power at an ambient air temperature of 15°C (59°F). A heat recovery unit (HRU) can recover thermal energy from exhaust flue gas. The heat recovery loop (HRL) could exchange thermal power with an ORC system, which in turn has the potential to produce electrical power. It will be demonstrated that this configuration has a HRL/ORC cycle efficiency of approximately 10% when the ambient air temperature is about 30°C (86°F).
机译:浪费是工业能源使用的副产品。石油和天然气工业消耗的大约三分之一的能量被排放为环境或通过冷却系统被排放为热损失。废热排放的主要原因是加工效率低下和技术限制在热量到机械能的转换。尽管如此,由于石油和天然气行业要求大量的热,电气和机械能,随后可提供大量的废热。有机朗肯循环(ORC)技术已经经济利用较低温度热源。 ORC废热回收的效率百分比在单位数到20S之间变化,这取决于废热源温度和冷却介质。甚至在平均100 MW(134 102 HP)热能的植物中,植物的单位循环效率也具有单位数循环效率的几MW的恢复甚至具有相当大的效率。 Oakridge国家实验室(美国)的研究表明,75%的废热具有足够高的温度(> 150°C,或> 302°F)。本报告项目项目将投资2-5岁的投资回报,对发电厂系统的储存量,这代表了有吸引力的财务回报。来自石油和气体操作的废热的回收仍然大部分未充分利用。此外,废热的经济上可行的发电仅限于中高温废热资源。本文将探讨石油和天然气工业面临的这些挑战的技术解决方案,提出了来自燃气轮机排气烟气的三种废热。涡轮机的标称输出为7.5,15和25mW(10 057,20115和33 525 HP),环境空气温度为15°C(59°F)。热回收单元(HRU)可以从排气烟气中回收热能。热回收回路(HRL)可以用兽人系统交换热功率,这又具有产生电力的可能性。将证明,当环境空气温度为约30℃(86°F)时,该配置的HRL / ORC循环效率约为10%。

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