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A STUDY ON THE PERFORMANCE OF STEAM INJECTION IN A TYPICAL MICRO GAS TURBINE

机译:典型微型燃气轮机蒸汽喷射性能的研究

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Microturbines are very promising for small-scale Combined Heat and Power (CHP) production. Due to the. simultaneous production of heat and power, the Turbec T100 microturbine CHP System has the potential of realizing considerable energy savings, compared to classic separate production. The power production however is strictly bound to the heat production. A reduction in heat demand will mostly lead to a shutdown of the unit, since electric efficiency is too low and not competitive with electricity from the net. The reduced amount of running hours has a severe negative impact on the lifetime profitability of the unit. A solution is proposed by injecting auto-generated steam in the T100 micro Gas Turbine (mGT), in order to increase electric efficiency during periods with low heat demand. By doing so, a forced shut down of the unit can be avoided. The goal of this study was to investigate and quantify the beneficial effect of steam injection on the performance of a typical recuperated mGT. This paper reports on an extended series of steam injection experiments performed on a Turbec T100 microturbine. Previous experiments revealed the necessity for a more accurate determination of the mass flow rate and more precise compressor characteristics. Therefore the test rig was equipped with an additional oxygen analyzer in the exhaust and a pressure gauge to allow for the accurate determination of the pressure ratio. Experiments with steam injection in the compressor outlet of the T100 were performed to demonstrate and validate the benefits of introducing steam in the cycle and to verify its ability to handle the injected steam. It is expected that the mGT will produce a constant power at reduced shaft speed and increased electric efficiency. Steam injection experiments validated the increase in electric efficiency during stable operation of the mGT. At nominal 100 kW_e power production, the replacement of 3.5% of the air mass flow with steam (adiabatic steam injection limit) resulted in an absolute electric efficiency increase of 1.7%. The experiments successfully demonstrated the potential for steam/water injection in the T100 mGT.
机译:Microtur障对于小规模的综合热量和功率(CHP)生产非常有前途。因为。同时生产的热量和功率,Curbec T100 Microturbine CHP系统具有实现相当大的节能,与经典的单独生产相比。然而,电力产生严格绑定到热量生产。热量需求的降低主要导致该单元的关闭,因为电效率太低,并且与网的电力不具有竞争力。减少的运行时间对单位的寿命盈利能力产生严重的负面影响。通过在T100微燃气涡轮机(MGT)中注入自动产生的蒸汽来提出一种解决方案,以便在热需求低的时段期间提高电效率。通过这样做,可以避免单位的强制关闭。本研究的目标是调查和量化蒸汽喷射对典型恢复MGT性能的有益效果。本文报告了在涡轮T100微电流上进行的扩展系列蒸汽注射实验。以前的实验揭示了更准确地确定质量流量和更精确的压缩机特性的必要性。因此,试验台配备了排气管中的额外氧气分析仪和压力表,以允许精确地确定压力比。进行T100的压缩机出口中蒸汽喷射的实验,以证明并验证在循环中引入蒸汽的益处,并验证其处理注入的蒸汽的能力。预计MGT将以减小的轴速度产生恒定功率并提高电效率。蒸汽喷射实验验证了MGT稳定运行期间电效率的提高。在标称100 KW_E电力生产中,用蒸汽(绝热蒸汽喷射极限)更换3.5%的空气质量流量,导致绝对电效率增加1.7%。实验成功地证明了T100 MgT中蒸汽/注水的可能性。

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