首页> 外文OA文献 >NET ZERO ENERGY BUILDINGS: AN ITALIAN CASE STUDY.udANALYSIS OF THE ENERGY BALANCE AND RETROFIT HYPOTHESIS IN ORDER TO REACH THE NET ZERO ENERGY TARGET.
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NET ZERO ENERGY BUILDINGS: AN ITALIAN CASE STUDY.udANALYSIS OF THE ENERGY BALANCE AND RETROFIT HYPOTHESIS IN ORDER TO REACH THE NET ZERO ENERGY TARGET.

机译:净零能耗建筑:意大利案例研究。 ud达到净零能量目标的能量平衡和提质假设分析。

摘要

In the last years the concept of Net Zero Energy Building (NZEB) has been developing and spreading in the scientific community. The work presented in this thesis has been largely developed in the context of the International Energy Agency (IEA) joint Programme Solar Heating and Cooling (SHC) Task40 and Energy Conservation in Buildings and Community Systems (ECBCS) Annex52: Towards Net Zero Energy Solar Buildings. It is known that the energy consumption in Europe for residential and commercial buildings is around 40 % of the total production. It is then extremely important to optimize both the implementation of energy efficiency measures and the usage of renewable resources that can be harvested on site. When energy efficiency measures are successfully combined with on-site renewable energy sources, and the energy consumption is equal (or nearly) to the energy production, then the output achieved can be referred to as ―near net zero energy ―or ―net zero-energy building‖. In Chapter 2 a description of the main typologies of NZEB is carried out, revealing that the most important ones are the following: site-ZEB and source-ZEB depending on where the energy balance is calculated. After a brief description of the NZEB most common definitions and classifications many examples have been examined, analyzing their features in relation to the climate in which they are, in order to show different solutions and approaches to the problem of reaching net zero energy balances (Chapter 3). In this thesis an Italian case-study has been examined: the Leaf House (LH) located in Ancona, Italy. The Leaf House is one of the best case studies of the IEA/SHC/ECBS/Task 40 Programme, in terms of thermo-physical characteristics of the building envelope, thermal plant, building automation system and energy monitoring. In Chapter 5 the Leaf House case-study is described in detail as well as the model implemented into the TRNSYS software (Chapter 6), reproducing the energy production system, the thermal features of the building and comparing simulated with monitored data. Particular attention has to be paid to the Leaf House monitoring system, which allows the assessment of the building energy balance.A careful analysis of monitored data brings to search some improving strategies to reach the zero energy target. After the simulation of the real building systems (through the software TRNSYS-Chapter 6), several scenarios have been investigated to improve energy performances of the building. Moreover the implemented model has been properly calibrated. The study proposes a detailed analysis of the case-study in order to show the possible energy savings that an NZEB can achieve in comparison with a non-net zero energy building. The re-design options are then proposed and the results evaluated by TRNSYS are described in detail. The monitored situation shows an energy consumption of 37 MWh for the year 2009; although around 6 MWh are wasted in the monitoring equipment the energy production is lower than this value. A simple solution, to reach the NZEB status is moving towards a higher production: e.g. the substitution of the PV panels with higher efficient others. In this way the energy balance reaches ―zero‖ during the year. Nevertheless the problem can be solved otherwise, reducing the energy needs. In this direction, the Geothermal Heat Pump and its energy needs have been analyzed in detail. It has been verified that the COP of the machine is way lower than the declared 4.6 and that an effective 4.6 COP could lead to significant energy savings. The idea of reaching higher efficiencies led to the proposal of a different plant scheme with the exclusion of a heat exchanger to reduce as much as possible energy losses. While it is possible to obtain the NZEB status simply making a substitution of the PV panels, the investigation on further energy savings has been continued. Finally the Italian case study allow to identify the strategies to improve the energy performances of the a Near Net Zero Energy building to reach the NZEB target. It represents also an Italian reference for others who wish to build NZEBs in the Italian context. At last two annexes to this work are shown, the first shows objectives and activities of the Task 40 ECBS Programme while the second shows the Building description file created into TRNBUILD environment, in order to describe the Leaf House building envelope features.
机译:在过去的几年中,净零能耗建筑(NZEB)的概念一直在科学界得到发展和传播。本论文介绍的工作主要是在国际能源机构(IEA)的联合计划太阳能采暖和制冷(SHC)任务40和建筑物和社区系统节能(ECBCS)附件52:迈向净零能耗太阳能建筑物的背景下开展的。众所周知,欧洲住宅和商业建筑的能耗约占总产量的40%。因此,最优化能源效率措施的实施和可现场采收的可再生资源的使用都非常重要。如果将能效措施与现场可再生能源成功结合,并且能耗等于(或接近)能源生产,则所实现的输出可称为“接近净零能耗”或“净零能耗”。能源建筑”。在第2章中,对NZEB的主要类型进行了描述,揭示了最重要的类型:site-ZEB和source-ZEB,具体取决于计算能量平衡的位置。在简要介绍了NZEB最常见的定义和分类之后,我们检查了许多示例,分析了它们与气候相关的特征,以显示达到净零能量平衡问题的不同解决方案和方法(本章) 3)。在这篇论文中,对意大利的案例研究进行了研究:位于意大利安科纳的Leaf House(LH)。就建筑物围护结构,热力工厂,建筑物自动化系统和能源监控的热物理特性而言,叶屋是IEA / SHC / ECBS /任务40计划的最佳案例研究之一。在第5章中,将详细描述Leaf House案例研究,以及在TRNSYS软件中实现的模型(第6章),该模型将重现能源生产系统,建筑物的热特性并将模拟数据与监视数据进行比较。叶子屋监控系统必须特别注意,该系统可以评估建筑物的能源平衡。对监控数据的仔细分析带来了一些寻求实现零能耗目标的改进策略。在对实际建筑系统进行仿真之后(通过软件TRNSYS-第6章),已研究了几种方案来改善建筑物的能源性能。此外,已实现的模型已正确校准。该研究建议对案例研究进行详细分析,以显示NZEB与非净零能耗建筑相比可能实现的节能。然后提出重新设计的选项,并详细描述TRNSYS评估的结果。监测的情况显示,2009年的能源消耗为37兆瓦时;尽管在监视设备中浪费了大约6兆瓦时,但能源生产低于该值。为了达到NZEB的状态,一种简单的解决方案正在朝着更高的产量方向发展:例如用其他效率更高的面板替代光伏面板。通过这种方式,一年中的能量平衡达到“零”。然而,该问题可以通过其他方式解决,从而减少了能源需求。在这个方向上,详细分析了地热热泵及其能源需求。已验证机器的COP远低于声明的4.6,并且有效的4.6 COP可以节省大量能源。达到更高效率的想法导致提出了另一种工厂方案的提议,其中排除了热交换器,以尽可能减少能源损失。尽管可以简单地替换光伏面板就可以获得NZEB的地位,但继续进行进一步节能研究。最后,意大利的案例研究可以确定提高近零净能耗建筑物的能源性能以达到NZEB目标的策略。它也为希望在意大利范围内构建NZEB的其他人提供了意大利语参考。最后显示了该工作的两个附件,第一个显示了Task 40 ECBS计划的目标和活动,第二个显示了在TRNBUILD环境中创建的建筑物描述文件,以描述Leaf House建筑物的围护结构特征。

著录项

  • 作者

    Campanella .;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-20 19:42:05

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