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Méthodes de mesure in situ des performances annuelles des pompes à chaleur air/air résidentielles

机译:住宅空气/空气热泵年度性能的原位测量方法

摘要

Today, heat pumps (HP) are widely used as heating systems in building thanks to their high energy efficiency. They are even considered as a source of renewable energy and, according to the EU Directive 2009/28/EC, the amount of renewable energy has to be calculated from the annual performance. Therefore, it is important to be able to measure the annual performance. However, concerning the air-to-air HP there is no reliable and simple method which allows measuring the performance in situ during at least a season.In this context, the thesis proposes two in situ methods that could fill this gap. The first one is based on non-intrusive measurements on refrigerant side. It uses a compressor energy balance to determine the flow rate. The second one, based on air measurements, uses a distribution of hot-wire sensors to determine the air flow rate and temperatures.The thesis also develops an intrusive refrigerant method, which is not necessarily adapted for in situ conditions but can be used as a reference to validate the in situ methods. The experimental results show that the reference method is accurate both in stationary conditions and in dynamic operations (including during defrosting period).The validation of the in situ methods was performed by a specific test campaign in laboratory. As a perspective, the thesis makes it possible to develop on-board measurement methods using non-intrusive refrigerant sensors, providing an opportunity for manufacturers to display the in situ performance in real time.
机译:如今,热泵​​(HP)具有高能效,已被广泛用作建筑供暖系统。它们甚至被视为可再生能源,根据欧盟指令2009/28 / EC,可再生能源的数量必须根据年度绩效来计算。因此,能够衡量年度绩效很重要。但是,对于空对空高压,尚没有可靠且简单的方法可以在至少一个季节内对性能进行现场测量。在此背景下,本文提出了两种可以弥补这一空白的现场方法。第一个基于制冷剂侧的非侵入式测量。它使用压缩机能量平衡来确定流量。第二种方法基于空气测量,使用热线传感器分布来确定空气流速和温度。本文还开发了一种侵入式制冷剂方法,该方法不一定适用于现场条件,但可以用作制冷剂。参考以验证原位方法。实验结果表明,该参考方法在固定条件下和动态操作中(包括除霜期间)均是准确的。原位方法的验证是通过实验室的特定测试活动进行的。从一个角度来看,本文使使用非侵入式制冷剂传感器开发车载测量方法成为可能,为制造商提供了实时显示现场性能的机会。

著录项

  • 作者

    Tran Cong-Toan;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 fr
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