Improvement of design of heat networks:parallel-series connection

Georgy Derevyanko, V. Mescheryakov
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Abstract

An analytical model of the system has been developed, consisting of a parallel-series connection of thermal devices. On the basis of graph theory, a system of equations of communication between the graphical representation of the system and the table of integers, which are the numbers of nodes and branches, is presented. Mathematical formalization made it possible to create a data representation that describes the distribution of temperatures in the nodes of the system and flows on its branches and reduce the volume of the problem based on expert estimates corresponding to the second law of thermodynamics.The chains and routes of heat distribution in the network of heat exchangers, including input and output elements, distribution and mixing units, are considered. The presented data structure provides an opportunity to programmatically build a system of energy balance equations for the system. The system of equations is supplemented by the hypothesis of the proportionality of the change in the measure of energy in the element to the potential applied to them.As a result, a system of equations is obtained, which forms a complete problem written in matrix form. In the design problem, after determining the requirements for the system, in the mathematical sense, the problem arises of determining the elements of the matrix by the value of the determinant. The requirement of equilibrium in the nodes of mixing flows, together with the conservation law, allows us to formulate a complete system of equationsthat determines the distribution of flows on the branches of networks.The principle of minimum uncertainty allows us to identify a group of roots that has maximum efficiency when the principle of equilibrium is fulfilled for the elements of the system. An example is presented that implements the exact scheme for solving the design problem for a given ratio of flows at the input to the system and the requirement for itsefficiency.
热网设计改进:并联串联
建立了由热器件并联串联组成的系统的解析模型。在图论的基础上,给出了系统的图形表示与表示节点和分支数目的整数表之间通信的方程组。数学形式化使得创建一个数据表示成为可能,该数据表示描述了系统节点中的温度分布及其分支上的流量,并根据热力学第二定律根据专家估计减少了问题的体积。考虑了换热器网络中的热分布链和路径,包括输入和输出单元、分配和混合单元。所提出的数据结构提供了以编程方式为系统建立能量平衡方程系统的机会。这个方程组是由一个假设来补充的,即元素的能量测量的变化与施加在它们身上的势成比例。结果,得到了一个方程组,它形成了一个矩阵形式的完整问题。在设计问题中,在确定了系统的要求之后,在数学意义上,就出现了用行列式的值来确定矩阵元素的问题。混合流节点的平衡要求,加上守恒定律,使我们能够制定一个完整的方程组来确定网络分支上的流量分布。最小不确定性原则使我们能够确定当系统各要素的平衡原则得到满足时效率最高的一组根。给出了一个实例,实现了在给定系统输入流量比和系统效率要求下解决设计问题的精确方案。
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