沼气燃烧过程自动诊断与控制系统的开发

O. Zhirnova
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引用次数: 0

摘要

本文阐述了沼气的生态效益和经济效益。根据任务的复杂程度,数学模型可以不同程度地描述研究过程。因此,数值模拟应与实验研究相结合,对模型的有效性进行比较和评价。下面是沼气燃烧的数学模型。然后,在中试研究结果的基础上,对数学模型进行了验证,对沼气的燃烧进行了数值模拟。沼气燃烧过程是一个多相燃烧和均相燃烧的复杂过程。极端管理不好的燃烧过程模型可以通过保持最佳cop值来提高能源性能。仿真模型证明了信号分配变化时的极端管理效率,锅炉维护效率达到了规定精度的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DEVELOPMENT OF AN AUTOMATED DIAGNOSTICS AND CONTROL SYSTEM FOR BIOGAS COMBUSTION PROCESSES
The article shows the ecological and economic efficiency of biogas. Depending on the complexity of the tasks, the mathematical model could describe the research process with varying degrees of accuracy. Thus, numerical simulation should be combined with experimental research to compare and assess the validity of the model. Below is presented, a mathematical model of combustion of biogas. Then, based on the results of pilot studies to validate the mathematical model, a numerical simulation of the combustion of biogas. Process for the combustion of biogas is a complex process of their heterogeneous and homogenous combustion. The model of combustion process of extreme management not good can improve energy performance by maintaining the optimum cop value. Proved by simulation model of extreme management efficiency in changing signal assignments, the maintenance efficiency of the boiler is on a level with the specified accuracy.
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