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Optimal Operation Scheme for a Cogeneration System Promoted from an Emergency Standby System Combined with Absorption Chiller

机译:紧急备用系统与吸收式冷水机相结合的热电联产系统的最佳运行方案

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摘要

A novel optimal operation scheme for a cogeneration system that is promoted from an emergency standby system combined with absorption chiller is introduced. The fuel cost, Time-of-use (TOU) tariff and various operational constrains are taken into account when evaluating the electricity cost and peak demand reductions. Based on a two-stage methodology and a modified mixed-integer programming technique, a novel algorithm is developed to solve the nonlinear optimization problem. A hotel is selected as a sample to demonstrate the correctness of the proposed algorithm. A 100kW gas engine standby generator is promoted to a sample cogenerator system by adding a 50RT absorption chiller and other necessary accessories. Optimal operation scheme, operation benefits and payback period on investment of this sample cogenerator system are analyzed. The simulation results indicate that promoting an emergency standby generator to a cogenerator system is profitable and should be encouraged.
机译:介绍了一种新的热电联产系统的最优运行方案,该方案是从与吸收式制冷机结合的应急备用系统中提炼出来的。在评估电力成本和高峰需求减少时,应考虑燃料成本,使用时间(TOU)费率和各种操作约束。基于两阶段方法和改进的混合整数规划技术,开发了一种新颖的算法来解决非线性优化问题。选择一家旅馆作为样本,以证明所提出算法的正确性。通过添加50RT吸收式冷却器和其他必要的配件,可将100kW燃气发动机备用发电机提升为样品热电联产系统。分析了该样本热电联产系统的最佳运行方案,运行效益和投资回收期。仿真结果表明,将应急备用发电机推广到热电联产系统是有利可图的,应予以鼓励。

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