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Dynamic equation-based thermo-hydraulic pipe model for district heating and cooling systems

机译:基于动态方程的区域供热和制冷系统热工水管模型

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摘要

Simulation and optimisation of district heating and cooling networks requires efficient and realistic models of the individual network elements in order to correctly represent heat losses or gains, temperature propagation and pressure drops. Due to more recent thermal networks incorporating meshing decentralised heat and cold sources, the system often has to deal with variable temperatures and mass flow rates, with flow reversal occurring more frequently. This paper presents the mathematical derivation and software implementation in Modelica of a thermo-hydraulic model for thermal networks that meets the above requirements and compares it to both experimental data and a commonly used model. Good correspondence between experimental data from a controlled test set-up and simulations using the presented model was found. Compared to measurement data from a real district heating network, the simulation results led to a larger error than in the controlled test set-up, but the general trend is still approximated closely and the model yields results similar to a pipe model from the Modelica Standard Library. However, the presented model simulates 1.7 (for low number of volumes) to 68 (for highly discretized pipes) times faster than a conventional model for a realistic test case. A working implementation of the presented model is made openly available within the IBPSA Modelica Library. The model is robust in the sense that grid size and time step do not need to be adapted to the flow rate, as is the case in finite volume models.
机译:区域供热和制冷网络的仿真和优化需要有效且逼真的单个网络元素模型,以便正确表示热量的损失或增加,温度的传播和压降。由于更新的热网络结合了网格状分散的热源和冷源,因此该系统通常必须处理可变的温度和质量流率,并且更频繁地发生逆流。本文介绍了满足上述要求的热网热工水力模型在Modelica中的数学推导和软件实现,并将其与实验数据和常用模型进行了比较。发现来自受控测试设置的实验数据与使用提出的模型进行的仿真之间具有良好的对应关系。与真实区域供热网络的测量数据相比,模拟结果导致的误差比受控测试设置大,但总体趋势仍很接近,并且模型得出的结果类似于Modelica Standard的管道模型图书馆。但是,对于实际的测试案例,该模型的仿真速度比传统模型快了1.7(对于少量的体积)到68(对于高度离散的管道)。在IBPSA Modelica库中可以公开获得该模型的有效实现。该模型具有一定的鲁棒性,因为网格大小和时间步长不需要像有限体积模型中那样适合流速。

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