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A techno-economic assessment of biomass fuelled trigeneration system integrated with organic Rankine cycle

机译:结合有机朗肯循环的生物质燃料三联产系统的技术经济评估

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Biomass fuelled trigeneration is the term given to the system which is the on-site generation of electricity, heat and cooling simultaneously, using biomass as the fuel source. As a form of the renewable energy sources biomass is not intermittent, location-dependent or very difficult to store. If grown sustainably, biomass can be considered to be CO_2 neutral. Biomass, therefore, would be a promising option for the future to contribute both to the reduction of greenhouse gases and to the solution of replacing fossil fuels in power plants. For a wide range of commercial buildings, biomass trigeneration offers an economical solution of providing power, heat and cooling which is more environmentally friendly than conventional methods. This work focuses on the modelling, simulation and techno-economic analysis of small scale biomass trigeneration applications. The Organic Rankine Cycle (ORC) integrated with conventional combustion provides electricity for building use. The waste heat recovered from the ORC system and exhaust gases is used to supply hot water to space heating and excess heat is also used to drive an absorption cooling system. In order to use energy resources most efficiently, the proposed process is modelled and simulated using the ECLIPSE process simulation package. Based on the results achieved, the key technical and environmental issues have been examined. The study also investigates the impact of different biomass feedstock on the performance of trigeneration plant, biomass ash content ranges from 0.57 to 14.26% ash and a range of moisture content 10.6-33.51%. The calorific value across the biomass sources ranges between 16.56 and 17.97 MJ/kg daf. Finally, an economic evaluation of the system is performed along with sensitivity analyses such as capital investments, plant load factors and fuel costs. The results show that the maximum efficiencies and the best breakeven electricity selling price for the cases considered in this study are as follows: 11.1% and 221 £/MWh for power only, 85.0% and 87 £/MWh for combined heat and power and 71.7% and 103 £/kWh for trigeneration respectively.
机译:生物质燃料三联产是赋予该系统的术语,该系统是使用生物质作为燃料源同时发电,供热和制冷的系统。作为可再生能源的一种形式,生物质不是间歇性的,取决于位置的或很难存储的。如果可持续地生长,则生物质可以被认为是CO_2中性的。因此,生物质将是未来为减少温室气体和为电厂替代化石燃料的解决方案做出贡献的有前途的选择。对于各种各样的商业建筑,生物质三联产技术提供了一种经济的解决方案,可提供电力,热量和冷却资源,比传统方法更加环保。这项工作的重点是小型生物质三联产应用的建模,仿真和技术经济分析。与常规燃烧相结合的有机朗肯循环(ORC)为建筑物提供电力。从ORC系统回收的废热和废气用于向空间供暖提供热水,多余的热量也用于驱动吸收式冷却系统。为了最有效地利用能源,使用ECLIPSE过程仿真程序包对拟议的过程进行建模和仿真。根据取得的成果,对关键的技术和环境问题进行了审查。该研究还调查了不同生物质原料对三联产植株性能的影响,生物质灰分含量为0.57%至14.26%灰分,水分含量为10.6-33.51%。生物质来源的热值介于16.56和17.97 MJ / kg daf之间。最后,对系统进行经济评估,并进行灵敏度分析,例如资本投资,工厂负荷因子和燃料成本。结果表明,在本研究中考虑的案例的最大效率和最佳收支平衡电价如下:仅电力为11.1%和221 £ / MWh,热电联产为85.0%和87 £ / MWh,为71.7对于三联产,分别为%和103 for / kWh。

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