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首页> 外文期刊>Thermal engineering >Mathematical Model for Calculation of the Heat-Hydraulic Modes of Heating Points of Heat-Supplying Systems1
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Mathematical Model for Calculation of the Heat-Hydraulic Modes of Heating Points of Heat-Supplying Systems1

机译:供热系统加热点热工模式的数学模型1

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The mathematical model and calculation method of the thermal-hydraulic modes of heat points, based on the theory of hydraulic circuits, being developed at the Melentiev Energy Systems Institute are presented. The redundant circuit of the heat point was developed, in which all possible connecting circuits (CC) of the heat engineering equipment and the places of possible installation of control valve were inserted. It allows simulating the operating modes both at central heat points (CHP) and individual heat points (IHP). The configuration of the desired circuit is carried out automatically by removing the unnecessary links. The following circuits connecting the heating systems (HS) are considered: the dependent circuit (direct and through mixing elevator) and independent one (through the heater). The following connecting circuits of the load of hot water supply (HWS) were considered: open CC (direct water pumping from pipelines of heat networks) and a closed CC with connecting the HWS heaters on single-level (serial and parallel) and two-level (sequential and combined) circuits. The following connecting circuits of the ventilation systems (VS) were also considered: dependent circuit and independent one through a common heat exchanger with HS load. In the heat points, water temperature regulators for the hot water supply and ventilation and flow regulators for the heating system, as well as to the inlet as a whole, are possible. According to the accepted decomposition, the model of the heat point is an integral part of the overall heat-hydraulic model of the heat-supplying system having intermediate control stages (CHP and IHP), which allows to consider the operating modes of the heat networks of different levels connected with each other through CHP as well as connected through IHP of consumers with various connecting circuits of local systems of heat consumption: heating, ventilation and hot water supply. The model is implemented in the Angara data-processing complex. An example of the multilevel calculation of the heat-hydraulic modes of main heat networks and those connected to them through central heat point distribution networks in Petropavlovsk-Kamchatskii is examined.
机译:提出了基于Melentiev能源系统研究所正在开发的液压回路理论的热点热工模式的数学模型和计算方法。开发了加热点的冗余回路,在其中插入了热工程设备的所有可能的连接回路(CC)和可能安装控制阀的位置。它允许模拟中央加热点(CHP)和单个加热点(IHP)的运行模式。通过删除不必要的链接,可以自动执行所需电路的配置。考虑了连接加热系统(HS)的以下电路:相关电路(直接和通过混合升降机)和独立电路(通过加热器)。考虑了以下热水供应(HWS)负载的连接电路:开放式CC(从热网管道直接抽水)和封闭式CC,将HWS加热器连接在单层(串行和并行)上,并且两个电平(顺序和组合)电路。还考虑了通风系统(VS)的以下连接回路:独立回路和通过具有HS负载的普通热交换器独立的回路。在加热点,可以使用用于热水供应和通风的水温调节器以及用于加热系统以及整个入口的水流调节器。根据公认的分解,加热点模型是具有中间控制级(CHP和IHP)的供热系统整体热工液压模型的组成部分,该模型可以考虑热网的运行模式通过CHP相互连接的不同层级,以及通过消费者的IHP与局部供热系统的各种连接电路连接的供热系统:供暖,通风和热水供应。该模型在Angara数据处理中心中实现。在彼得罗巴甫洛夫斯克-堪察加半岛,研究了一个主要热网络和通过中央热点分布网络与之连接的热工水力模式的多级计算示例。

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