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Design and analysis of a biogas production system utilizing residual energy for a hybrid CSP and biogas power plant

机译:CSP和沼气混合电站利用剩余能量的沼气生产系统的设计和分析

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This paper proposes a novel hybrid CSP and biogas power plant in which biogas is produced with anaerobic treatment of liquid cattle manure under mesophilic conditions. The residual energy from the hybrid power plant is used to maintain the digester content at the optimum temperature of 35 degrees C for stable production of biogas. A simulation model for the power plant with focus on the biogas production has been developed on TRNSYS platform. The thermal performance and dynamic behaviors of this biogas production system under typical climatic conditions in West China are investigated. It is found that the volume of anaerobic digester increases with the increase of hydraulic retention time while the feedstock flow rate decreases with the increase of hydraulic retention time. The maximum temperature fluctuation of the digester in a day is less than 0.8 degrees C with PID control, which guarantees the yield and quality of biogas. For the hybrid power plant, hybridizing solar energy with biogas energy not only improves the power stability but also increases power dispatchability. The increase of solar power sharing ratio can obviously improve the total electricity generation of the hybrid power plant without obvious negative impact on the total efficiency of the hybrid power plant. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型的混合CSP和沼气发电厂,其中通过在中温条件下对液态牛粪进行厌氧处理来生产沼气。混合动力装置的剩余能量用于将沼气池的含量保持在35摄氏度的最佳温度下,以稳定生产沼气。在TRNSYS平台上开发了针对沼气生产的电厂模拟模型。在中国西部典型气候条件下,研究了该沼气生产系统的热性能和动态行为。发现厌氧消化池的体积随水力停留时间的增加而增加,而进料流量随水力停留时间的增加而减小。通过PID控制,一天中消化池的最大温度波动小于0.8摄氏度,这可以确保沼气的产量和质量。对于混合式发电厂,将太阳能与沼气能源混合在一起不仅可以提高电力稳定性,还可以提高电力分配能力。太阳能共享比的提高可以明显改善混合动力电厂的总发电量,而不会对混合动力电厂的总效率产生明显的负面影响。 (C)2016 Elsevier Ltd.保留所有权利。

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