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Modeling and Simulation of Corn Stover Gasifier and Micro-turbine for Power Generation

机译:玉米秸秆气化炉和微型涡轮机发电的建模与仿真

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This paper focuses on modeling the performance of a small-scale combined heat and power (CHP) plant fueled with corn stover pieces (CSP) as very potential biomass resource in Egypt. The developed power plant can be used to satisfy the heat and electricity needs. The proposed power plant performance is simulated using the professional Cycle-Tempo (R) software. The power plant is divided into three stages; the gasification unit (downdraft fixed bed gasifier and air supply system), gas cleaning and cooling units and the micro-turbine (MT) as an electrical generation unit. In the first stage, the CSP feedstock is converted to producer gas at atmospheric pressure with a reaction temperature about 1028.6 degrees C, using air as a gasifying agent. The efficiency of gasification process at a regulated air-biomass ratio of 1.5 kg/kg is 77.92% with calorific value (LHV) of 3.87 MJ/kg. Cleaning and cooling stage used to dispose the undesirable gas constitutes such as; tar, flying ash, and etc. The clean gas is passing through the MT as power generator for CHP applications with turbine inlet temperature of 850 degrees C. Ultimately, the simulation revealed that the CHP overall efficiency of this developed plant is 63.21% providing an electrical power of 94.81 kW(el) and thermal power of 187.55 kW(th).
机译:本文着重于对以玉米秸秆片(CSP)为燃料的小型热电联产(CHP)电厂的性能进行建模,这是埃及极有潜力的生物质资源。发达的发电厂可用于满足热量和电力需求。使用专业的Cycle-Tempo(R)软件对拟议的电厂性能进行仿真。发电厂分为三个阶段:气化单元(向下气流固定床气化器和空气供应系统),气体清洁和冷却单元以及作为发电单元的微型涡轮机(MT)。在第一阶段中,使用空气作为气化剂,在大气压下,反应温度约为1028.6摄氏度的条件下,将CSP原料转化为生产气。在规定的1.5 kg / kg的空气生物量比下,气化过程的效率为77.92%,热值(LHV)为3.87 MJ / kg。清洗和冷却阶段用来处置不良气体的构成例如;清洁气体通过MT作为发电机组的热电联产发电机,涡轮机入口温度为850摄氏度。最终,模拟显示,这家发达工厂的热电联产总效率为63.21%,电功率为94.81 kW(el),热功率为187.55 kW(th)。

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