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A HIGHLY EFFICIENT COGENERATION SYSTEM USING APT COUPLED WITH BIOMASS GASIFICATION

机译:使用APT加上生物质气化的高效热电联产系统

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Biomass is a significant renewable energy source. The conversion of woody biomass into a combustible gas provides the opportunity to enhance the efficiency of biomass-based power systems, and allows solid fuels to be used in high-efficiency power generation processes. This paper discusses the energy efficient utilization of biomass by turbo machines under unpressurized conditions, working with the inverted Brayton cycle in which turbine expansion, cooling by heat exchanger and draft by compressor are made in an open cycle mode. Author calls this an "atmospheric pressure turbine (APT)". Thermodynamic analysis has shown that an electric efficiency up to 25 percent (HHV) and a total energy efficiency of more than 75 percent (HHV) are expected for combined heat and power applications even at small plant capacities (less than 40 kW). By adapting EGR (exhaust gas recirculation), the total cogeneration efficiency is considerably improved by raising the recirculation ratio, and total energy efficiency of 85% is expected when EGR ratio is 0.4. However, the recirculation ratio is limited by the residual oxygen in the combustor. In the present analysis, in order to remove this limitation the air separation unit (ASU) is used additionally. Therefore, the recirculation ratio of 95% can be attained.
机译:生物质是一个重要的可再生能源。将木质生物质转化为可燃气体提供了提高基于生物质的功率系统效率的机会,并允许在高效发电过程中使用固体燃料。本文讨论了在未压制条件下通过涡轮机的涡轮机能力利用生物量,与涡轮机膨胀的倒置布雷顿循环,通过换热器和压缩机的射流进行冷却,采用开放循环模式。作者称之为“大气压涡轮机(APT)”。热力学分析表明,即使在小植物容量(小于40 kW),高达25%(HHV)的电效率高达25%(HHV)和超过75%(HHV)的总能量效率。通过调整EGR(废气再循环),通过提高再循环比率,通过提高循环效率显着提高,并且当EGR比为0.4时,预期总能效85%。然而,再循环比受燃烧器中的残留氧气的限制。在本分析中,为了除去该限制,还使用空气分离单元(ASU)。因此,可以获得95%的再循环比率。

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