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FROM SIZING AND HYDRAULIC BALANCING TO CONTROL USING THE SIMBAD TOOLBOX

机译:使用Simbad Toolbox的尺寸和液压平衡来控制

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This paper demonstrates one step forward in the development of virtual laboratories that can be used for the development and test of HVAC control systems. While predefined parameters are used for standard tests, individual tests of controllers on different building construction and types or for different boundary conditions need, for each test, new sizing of the components of the HVAC system. This means, that the emitter (HVAC terminal system), tubes, valves and pumps have to be sized and the controllers to be tuned when the test case is changed. An automatic sizing procedure has been developed that is called before each simulation or emulation. Starting from the emitters, tubes, valves, pumps and controllers are then sized, parametered or selected from a predefined list from catalogue data. The advantage of such a procedure is the reproducibility of the tests, independent from the user. It can be seen as a first step to quality assurance of building controller tests. Different laws, applied for the sizing, can be changed separately in the sizing procedure and their impact on the system performance can be studied. This extends the usability of the virtual laboratory to the study of sizing and balancing problems. If controllers shall be tested, the impact of sizing and balancing of the HVAC system on the control performance or the overall system performance can be analysed. Some first results are shown, using the SIMBAD Building and HVAC toolbox for a building with six zones equipped with hot water radiators in serial and parallel connection. The effect of flow balancing on the flow rates in the system is shown in order to compare a hydraulically balanced with an unbalanced system.
机译:本文展示了在透明实验室的开发中向前迈出的一步,可用于HVAC控制系统的开发和测试。虽然预定义的参数用于标准测试,但对于不同建筑物建筑和类型或不同的边界条件,每个测试的单独测试,用于HVAC系统的组件的新尺寸。这意味着,发射器(HVAC终端系统),管,阀门和泵必须大小,并且在测试案例改变时要调谐的控制器。已经开发了一种自动调整过程,在每个模拟或仿真之前被调用。从发射器开始,然后从目录数据中的预定列表中尺寸,参数化或选择,从发射器,管道,阀门,泵和控制器中选择。这种过程的优点是测试的再现性,独立于用户。它可以被视为质量保证建筑控制器测试的第一步。应用于尺寸的不同规律可以在大小的过程中单独改变,并且可以研究它们对系统性能的影响。这使得虚拟实验室的可用性扩展到大小写和平衡问题的研究。如果应对控制器进行测试,可以分析HVAC系统对控制性能或整体系统性能的尺寸和平衡的影响。显示了一些第一个结果,使用Simbad Building和HVAC工具箱,为六个区域配备有串联和并联连接的热水散热器。示出了流量平衡对系统流速的影响,以便与不平衡系统进行液压平衡。

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