Mathematical model of system dynamics for heat utilization from ventilation emissions with intermediate heat carrier as an object of automation

B. Kotov, V. Hryshchenko, S. Stepanenko, Y. Pantsir, I. Gerasimchuk
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Abstract

Annotation Purpose. Formulation of a mathematical description of the non-stationary thermal regime of the heat utilization system of ventilation emissions on the basis of a heat exchanger with an intermediate heat carrier for industrial premises. Methods. The specificity of the object under study determines the analytical method of research, which is based on the analysis of the thermal balance of the elements of the studied system and the heat and energy connections between them. Results. A mathematical description of the dynamics of the thermal process in a recuperative heat recovery unit with an intermediate heat carrier is formulated taking into account the variable parameters of ventilation air, both exhaust and supply air and the presence of condensation on the surface of the heat exchanger. Given the possibility of automatic control of the operation of the disposal system by changing the flow of intermediate coolant (which makes the system of equations nonlinear), a linearized mathematical model of the dynamics of the studied system is proposed. Conclusions 1. The obtained mathematical models allow to determine the dynamic characteristics of the system of waste heat utilization in transient modes, as well as to evaluate the efficiency of the system itself and to optimize the parameters of heat exchangers. 2. The linearized model of the thermal utilizer allows to synthesize the system of automatic control of the operating mode and to investigate its parameters. Keywords: waste heat utilization, heat exchanger recuperator, intermediate heat carrier, dynamic mode, mathematical model, production room.
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以中间热载体为自动化对象的通风排放物热利用系统动力学数学模型
AnnotationPurpose。基于工业场所用中间热载体的热交换器的通风排放物热利用系统非定常热状态的数学描述。方法。研究对象的特殊性决定了研究的分析方法,即分析研究系统中各元素的热平衡以及它们之间的热、能联系。考虑到通风空气、排风和送风参数的变化以及换热器表面存在的冷凝现象,建立了具有中间热载体的热回收装置中热过程动力学的数学描述。考虑到通过改变中间冷却剂的流量(使方程组非线性)来自动控制处置系统运行的可能性,提出了所研究系统动力学的线性化数学模型。得到的数学模型可以确定瞬态模式下余热利用系统的动态特性,也可以评估系统本身的效率和优化换热器的参数。热利用器的线性化模型可以综合热利用器运行模式的自动控制系统,并对其参数进行研究。关键词:余热利用,换热器回热器,中间热载体,动态模型,数学模型,生产机房
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