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Dynamic modelling and control of a direct-combustion biomass CHP unit

机译:直燃生物量CHP单位的动态建模与控制

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Biomass combustion Combined Heat and Power (CHP) technology uses biomass fuel to generate usable heat and electricity simultaneously in a single unit. Biomass is considered the renewable energy resource (RES) and its utilization has been of particular interest to meet the energy needs of modern society. Nevertheless biomass contains much less carbon, more oxygen and moisture content, consequently it has lower heating value compared to the coal and other fossil fuels. Therefore, the amount of heat released to steam production is very slow and it makes challenge for the control process of the unit. A dynamic model of a direct-combustion biomass CHP unit is developed in Matlab/Simulink. Two different control strategies, boiler follow and coordinated boiler turbine control are applied for the control of steam pressure and the output power (heat and electricity) of the biomass CHP unit. Different biomass fuel types with various moisture content, fuel composition and consequently heating value are considered to the biomass combustion process of the CHP. Simulation results show that the impact of biomass fuel properties on system performance is substantial. Comparison of the results of both control process indicates that coordinated control is much quicker and more effective for the control of biomass CHP output power. It also improves controlling process for rejecting the disturbances arising from the moisture content, fuel types and their composition.
机译:生物质燃烧组合的热量和功率(CHP)技术使用生物质燃料在单个单元中同时产生可用的热量和电力。生物质被认为是可再生能源资源(RES),其利用对满足现代社会的能源需求特别感兴趣。然而,生物量含有更少的碳,更多的氧气和水分含量,因此与煤和其他化石燃料相比具有较低的加热值。因此,释放到蒸汽生产的热量非常慢,并且对装置的控制过程产生挑战。 MATLAB / Simulink开发了直燃生物量CHP单元的动态模型。两种不同的控制策略,锅炉遵循和协调锅炉涡轮控制用于控制生物质CHP单元的蒸汽压力和输出功率(热电和电力)。不同的生物质燃料类型,具有各种水分含量,燃料组合物和所以加热值被认为是CHP的生物质燃烧过程。仿真结果表明,生物质燃料特性对系统性能的影响是显着的。两个控制过程结果的比较表明协调控制更快,更有效地控制生物量CHP输出功率。它还改善了抑制水分含量,燃料类型及其组合物产生的干扰的控制过程。

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