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A Lumped Parameter Model For Dynamic Simulation Of Energy Control Policies Applied To Small Public Buildings

机译:用于小型公共建筑的能量控制政策动态模拟的集总参数模型

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As public buildings are responsible for considerable amounts of fuel consumption, public administrations are encouraged to adopt interventions for energy requalification of their real estates. In particular, low-cost energy requalification with high return on investments is a good opportunity when resource shortage hampers the adoption of expensive refurbishment. However, in order to properly plan such a process, a detailed energy audit must be carried out. In addition, a reliable model of the audited building is needed to breakdown the whole energy consumption and to simulate prospective energy savings from candidate requalification strategies. To that purpose, this paper will describe a new-generation DymolaTM based simulation approach, that is reliable enough for assessing the dynamic behaviour of public buildings, even when non-standard systems and heat transfer phenomena are involved. This model provides users with two main advantages: on one hand it facilitates the simulation of interacting physical phenomena (e.g. fluiddynamics, thermal exchange etc…), on the other hand it allows to simulate even advanced control of existing HVAC systems. This last feature is not typical of standard energy simulation software programs. In addition, it is needed when we deal with low-cost energy requalification, because it is usually aimed at the enhancement of existing regulation devices, so that their behaviour must be simulated in order to find out the best customized control policy. Finally, the paper will assess energy savings which can be obtained through the improvement of the HVAC system's control policy for a case study relative to a small public building, that is used as a community clinic.
机译:由于公共建筑负责相当大量的燃料消耗,鼓励公共部门采用其实际估计能源的干预措施。特别是,当资源短缺妨碍采用昂贵的翻新时,较高的投资能源需求的低成本能量需求是一个很好的机会。但是,为了正确计划这样的过程,必须进行详细的能量审计。此外,需要审计建筑的可靠型号来分解整个能源消耗,并从候选保存策略模拟潜在能源节省。为此目的,本文将描述一种基于新一代的多元型模拟方法,这对于评估公共建筑的动态行为,即使涉及非标准系统和传热现象,也可靠。该型号为用户提供了两个主要优点:一方面,它有助于仿真交互物理现象(例如流体动力学,热交换等),另一方面它允许模拟现有HVAC系统的甚至高级控制。最后一个功能不是标准能量模拟软件程序的典型。此外,我们需要在处理低成本的能源需求时,因为它通常旨在增强现有监管设备,因此必须模拟其行为,以便找出最佳的定制控制策略。最后,本文将评估能源节省,通过改善HVAC系统的控制政策,以获得相对于一个小型公共建筑的案例研究,该诊所被用作社区诊所。

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