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Improving Energy Utilization in Anaerobic Digester Power Systems

机译:改善厌氧消化器电源系统的能源利用

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This study investigates a 50 kW anaerobic digestion system to identify practical ways of improving energy utilization within the system. This digester system is operated with heat provided only from the biogas combusted in the engine-generator. Energyutilization in this study is thus considered as how best to apply this produced heat to overcome deficient operating temperatures in the colder winter months. A computer model was developed to simulate the system and was used to investigate outcomes ofvarious design improvements. The most significant improvements could be obtained by increasing the heat recovered from the digester effluent and removing condensation from the biogas prior to combustion. The simulation results show that increasing the waste heat recovery unit effectiveness to 0.4 or higher allows for year-round performance without the need for supplemental heating. In addition, conditioning the biogas by chilling it from 35°C to 20°C (thus removing a portion of the moisture content) increases output energy from the engine-generator by almost 10%.
机译:这项研究调查了一个50 kW的厌氧消化系统,以确定提高系统内能源利用率的实际方法。该蒸煮器系统仅利用发动机发电机中燃烧的沼气提供的热量运行。因此,本研究中的能源利用被认为是如何最好地利用产生的热量来克服较冷的冬季中不足的工作温度。开发了计算机模型来模拟系统,并用于调查各种设计改进的结果。通过增加从蒸煮器废水中回收的热量并在燃烧之前从沼气中除去冷凝物,可以获得最显着的改进。仿真结果表明,将废热回收装置的效率提高到0.4或更高,可以实现全年的性能,而无需补充加热。此外,通过将沼气从35°C冷却至20°C(从而除去一部分水分)来调节沼气,可将发动机发电机的输出能量提高近10%。

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