沼气反应器发酵过程中能量消耗的动态分析

M. Zablodskiy, M. Spodoba
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引用次数: 3

摘要

本文研究了生物质厌氧发酵过程中沼气反应器内的热分布问题。本工作中使用的数学模型使我们能够充分研究参与加热过程的每个物体,固体或稀有物体的温度变化动态,并确定厌氧发酵热稳定过程所需的能量,同时考虑:初始温度介质、搅拌频率、底物运动方式、厌氧发酵温度状态、风速、底物及热稳定过程涉及对象的理化参数、搅拌装置类型、电热电缆功率。本文进行了动态分析,首次建立了加热底物所需的能量,并获得了厌氧发酵热稳定过程中电热索和其他物体温度变化的依赖关系。鉴于文章中提出的结果,有可能创建节能系统,自动控制沼气反应器中基质的混合和加热,这将增加沼气厂的盈利能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Analysis of Energy Consumption During Substrate Fermentation in a Biogas Reactor
The article is devoted to the issue of thermal distribution in a biogas reactor during anaerobic fermentation of biomass. The mathematical model used in this work allows us to fully investigate the dynamics of temperature change of each object, solid or rare, which participates in the heating process and determine the amount of energy required for the process of thermal stabilization of anaerobic fermentation, taking into account: initial temperatures medium, mixing frequency, substrate movement mode, anaerobic fermentation temperature regime, wind speed and physicochemical parameters of the substrate and objects involved in the thermal stabilization process, type of mixing device and power of the electric heating cable. In the article, a dynamic analysis was carried out, which made it possible for the first time to establish the required amount of energy for heating the substrate and to obtain the dependences of the temperature change of the electric heating cable and other objects involved in the process of thermal stabilization of anaerobic fermentation. Given the results presented in the article, it is possible to create energy-efficient systems automatic control mixing and heating of the substrate in biogas reactors, which will increase the profitability of the biogas plant.
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