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Model Property Based Material Balance and Energy Conservation Analysis for Process Industry Energy Transfer Systems

机译:基于模型属性的过程工业能量传输系统的物料平衡和节能分析

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摘要

Conventional historical data based material and energy balance analyses are static and isolated computations. Such methods cannot embody the cross-coupling effect of energy flow, material flow and information flow in the process industry; furthermore, they cannot easily realize the effective evaluation and comparison of different energy transfer processes by alternating the model module. In this paper, a novel method for material balance and energy conservation analysis of process industry energy transfer system is developed based on model property. Firstly, a reconfigurable energy transfer process model, which is independent of energy types and energy-consuming equipment, is presented from the viewpoint of the cross-coupling effect of energy flow, material flow and information flow. Thereafter the material balance determination is proposed based on both a dynamic incidence matrix and dynamic balance quantity. Moreover, the model-weighted conservation determination theorem is proved, and the energy efficiency analysis method is also discussed. Results confirmed the efficacy of the proposed methods, confirming its potential for use by process industry in energy efficiency analyses.
机译:基于常规历史数据的物料和能量平衡分析是静态和孤立的计算。这种方法不能体现过程工业中能量流,材料流和信息流的交叉耦合效应;此外,他们无法通过交替使用模型模块轻松地实现对不同能量传递过程的有效评估和比较。本文基于模型特性,提出了一种新型的过程工业能量转移系统物料平衡和节能分析方法。首先,从能量流,物质流和信息流的交叉耦合效应的角度出发,提出了一种与能量类型和耗能设备无关的可重构能量传递过程模型。此后,基于动态关联矩阵和动态平衡量,建议物料平衡确定。此外,证明了模型加权守恒确定定理,并讨论了能效分析方法。结果证实了所提出方法的有效性,证实了其在过程工业中进行能源效率分析的潜力。

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