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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Microturbines and Trigeneration: Optimization Strategies and Multiple Engine Configuration Effects
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Microturbines and Trigeneration: Optimization Strategies and Multiple Engine Configuration Effects

机译:微型涡轮机和三代发电:优化策略和多引擎配置效果

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摘要

This paper investigates energy savings and economic aspects related to the use of micro-turbine generators in commercial buildings either for cogeneration (electricity + heat) or for trigeneration (electricity, heat and cold). In all calculations, reference is made to a 25 kW_(el)-class commercial microturbine generator (MTG), tested by the authors. Various plant schemes are considered, based on one or several MTG sets. The possibility of generating heat and/or cold also by an electrically driven inverse-cycle air-to-water heat pump/chiller system is also considered. Calculations are based on the simulation code TRIGEN developed by the authors. The code provides detailed energy, economic and emission yearly balances. The plant operating mode is optimized in each time interval. The results indicate that, due to large load variations, (ⅰ) the optimum turbine nominal output is in the range of about 70% of the electric peak demand, (ⅱ) energy savings are marginal, (ⅲ) advantages related to splitting the overall capacity on more than one unit are marginal, and (ⅳ) the addition of an absorption machine improves the plant economics.
机译:本文研究了与在商业建筑中使用微型涡轮发电机进行热电联产(电+热)或三联发电(电,热和冷)有关的节能和经济方面。在所有计算中,均引用了作者测试过的25 kW_(el)级商用微型涡轮发电机(MTG)。基于一个或几个MTG集,考虑了各种工厂方案。还考虑了也可能通过电动逆循环空气-水热泵/冷却器系统产生热量和/或冷量的可能性。计算基于作者开发的仿真代码TRIGEN。该法规提供了详细的能源,经济和排放年度余额。在每个时间间隔内优化了工厂的运行模式。结果表明,由于较大的负载变化,(ⅰ)最佳涡轮机标称输出在电高峰需求的70%左右的范围内;(ⅱ)节能量很小;(ⅲ)与整体拆分有关的优势一个以上装置的最大容量很小,并且(ⅳ)增加一台吸收机可以提高工厂的经济效益。

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