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Detailed Study Of The Impact Of Co-utilization Of Biomass In A Natural Gas Combined Cycle Power Plant Through Perturbation Analysis

机译:通过摄动分析详细研究天然气联合利用电厂生物质的联合利用影响

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Co-utilization of fossil fuels and biomass is a successful way to make efficient use of biomass for power production. When replacing only a limited amount of fossil fuel by biomass, measurements of net output power and input fuel rates will however not suffice to accurately determine the marginal efficiency of the newly introduced alternative fuel. The present paper therefore proposes a technique to determine the marginal biomass efficiency with more accuracy. The process simulation model for co-utilization of natural gas and a small perturbing fraction of biomass in an existing combined cycle plant (500 MW~(th) Dro-genbos, Belgium) is taken as case study. In this particular plant, biomass is introduced into the cycle as fuel for a primary steam reforming process of the input natural gas. This paper proposes a perturbation analysis that has been developed to allow for an accurate assessment of the marginal efficiency of biomass by using only accurately measurable variables. To achieve this, effects of co-utilization were studied in each component of the gas turbine down to its steam bottom cycle to identify the components most affected by the limited perturbing amount of biomass. The procedure is validated through process simulation, where accurate marginal efficiencies can be compared with the efficiency obtained from the perturbation analysis. A full off-design simulation is required to achieve this result. Through the use of process simulation, the accuracy of the mathematical model could be verified for each formula and each assumption. Compared to process simulation data, the model was found to accurately predict marginal efficiencies of the introduced biomass for biomass shares as low as 0.1%.
机译:化石燃料和生物质的联合利用是有效利用生物质发电的成功途径。然而,当仅用生物质代替有限数量的化石燃料时,净输出功率和输入燃料费率的测量将不足以准确确定新引入的替代燃料的边际效率。因此,本文提出了一种更精确地确定边际生物质效率的技术。以现有联合循环电厂(比利时500兆瓦(德)-德罗亨博斯)联合利用天然气和少量生物质的过程模拟模型为案例研究。在这个特定的工厂中,将生物质作为燃料引入循环中,用于输入天然气的一次蒸汽重整过程。本文提出了一种扰动分析,该扰动分析通过仅使用可精确测量的变量就可以对生物质的边际效率进行准确评估。为了实现这一目标,对燃气轮机的各个组件(直至其蒸汽底循环)进行了联合利用的效果研究,以识别受有限的生物质扰动影响最大的组件。该过程通过过程仿真进行了验证,可以将精确的边际效率与从扰动分析获得的效率进行比较。要获得此结果,需要进行完整的设计外仿真。通过使用过程仿真,可以针对每个公式和每个假设验证数学模型的准确性。与过程仿真数据相比,发现该模型可以准确地预测引入生物质的生物质份额低至0.1%的边际效率。

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