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Technologies for mathematical and computer modeling to automate the process of operational states development for heat supply systems

机译:用于自动化供热系统运行状态开发过程的数学和计算机建模技术

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This article proposes the new technology for development of operational states for HSS of arbitrary structure and dimension. Technology is based on multilevel modeling and a new method for adjustment calculation of thermal hydraulic states. It is implemented in the information and computer complex ?ANGARA-HN?. Technology includes checking the permissibility of states, calculating the throttling devices on the network and inputs of consumers’ buildings. It allows calculating large systems with intermediate stages of regulation, developing adjustment measures to improve the quality of heat supply and consumer provision, reducing circulation flow rates and pressure in networks. The development of modeling methods is carried out in the following directions: taking into account the new composition of equipment, including mixing pumping stations; development of nontraditional methods of calculation, such as object-oriented modeling; development of tasks of hierarchical optimization and identification of state parameters, as task of rising for model adequacy; development of task for finding of sectioning variants for multi-circuit heat network with several sources. The application of methodological and software developments makes it possible to obtain both an economic and a social effect by identifying and realizing of the energy saving potential, improving the quality and reliability.
机译:本文提出了对任意结构和维度的HSS的运营状态开发新技术。技术基于多级建模和热液压调整计算的新方法。它是在信息和计算机复杂的?Angara-HN中实现?技术包括检查状态的允许性,计算网络上的限制设备以及消费者建筑的输入。它允许计算具有调节中间阶段的大型系统,开发调整措施,以提高供热和消费者提供的质量,降低网络中的循环流速和压力。建模方法的发展在以下方向上进行:考虑到新的设备组成,包括混合泵站;开发非传统方法的计算方法,例如面向对象的建模;发展分层优化任务和状态参数识别,作为模型充足性的崛起的任务;用几种来源寻找多电路热网络切片变体的任务的开发。方法和软件开发的应用使得通过识别和实现节能潜力,提高质量和可靠性,可以获得经济和社会效果。

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