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Simulation of Legionella concentration in domestic hot water: comparison of pipe and boiler models

机译:国内热水中军团菌浓度的模拟:管道和锅炉模型的比较

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The energy needed for the production of domestic hot water (DHW) represents an important share in the total energy demand of well-insulated and airtight buildings. DHW is produced, stored and distributed above 60 degrees C to kill Legionella pneumophila. This elevated temperature is not necessary for DHW applications and has a negative effect on the efficiency of hot water production units.In this paper, system component models are developed/updated with L. pneumophila growth equations. For that purpose, different existing Modelica pipe and boiler models are investigated to select useful models that could be extended with equations for simulation of bacterial growth. In future research, HVAC designers will be able to investigate the contamination risk for L. pneumophila in the design phase of a hot water system, by implementing the customized pipe and boiler model in a hot water system model. Additionally it will be possible, with simulations, to optimize temperature regimes and estimate the energy saving potential without increasing contamination risk.
机译:生产国内热水所需的能量(DHW)代表了绝缘和密封建筑物总能源需求的重要份额。将DHW生产,储存和分布以上60摄氏度以杀死军团菌肺炎。这种升高的温度对于DHW应用不是必需的,并且对热水生产单元的效率产生负面影响。本文用L.Pneumophila生长方程式开发/更新系统组件模型。为此目的,研究了不同现有的ModelICA管和锅炉模型以选择可以用用于模拟细菌生长的方程延伸的有用模型。在未来的研究中,HVAC设计人员将能够通过在热水系统模型中实施定制管道和锅炉模型来研究热水系统的设计阶段L.PNEumophila的污染风险。另外,有仿真将可以优化温度制度并估计节能潜力而不会增加污染风险。

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