首页> 外文会议> >EXPERIMENTAL BENCH DESIGN FOR HEAT PUMP USING CO_2 BASED MIXTURES DEVELOPPEMENT D’UN BANC EXPERIMENTAL POUR POMPE A CHALEUR UTILISANT DES MELANGES A BASE DE CO_2
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EXPERIMENTAL BENCH DESIGN FOR HEAT PUMP USING CO_2 BASED MIXTURES DEVELOPPEMENT D’UN BANC EXPERIMENTAL POUR POMPE A CHALEUR UTILISANT DES MELANGES A BASE DE CO_2

机译:基于CO_2混合物的热泵实验台设计基于CO_2混合物的热泵实验台开发。

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Efficiency of CO_2 (R-744) heat pumps for domestic hot water production is well known, but this technology shows rather low performances when applied to central heating of buildings. Indeed, efficiency of CO_2 cycles is, among other parameters, linked to the gas cooler outlet temperature: the coldest it is, the higher is the coefficient of performance (COP). The return temperature of central heating circuits (30 to 60℃ depending of the heat emitters) is not cold enough to fit usual conditions for good performances of CO_2 transcritical cycles.This study is about modifying characteristics of CO_2 cycles, using CO_2 based mixtures. The main objective is to obtain higher efficiency for central heating production, without degrading performances of domestic hot water generation. Adding other chemicals to CO_2 refrigerant moves up critical point of the fluid, and generally equilibrium lines. This leads to modifications of the cycle which can be used in order to improve the efficiency of central heating as well as domestic hot water generation.This article presents the facility established to study the thermodynamic cycles using CO_2 based mixtures. The experimental bench has the particularity of analysing in-line fluid composition in several points of the cycle using infra-red spectrometry. First results are planned for mid 2015.
机译:众所周知,CO_2(R-744)热泵在生活热水生产中的效率很高,但是在将其应用于建筑物的集中供热时,该技术的性能却很低。实际上,除其他参数外,CO_2循环的效率与气体冷却器的出口温度有关:最冷的时候,性能系数(COP)越高。中央加热回路的返回温度(30至60℃,取决于散热装置)还不够冷,无法满足通常条件下CO_2跨临界循环的良好性能。本研究旨在使用基于CO_2的混合物来改变CO_2循环的特性。主要目标是在不降低生活热水性能的情况下提高集中供热生产的效率。向CO_2制冷剂中添加其他化学物质会使流体的临界点(通常是平衡线)上升。这导致了循环的修改,可用于提高集中供热和生活热水的效率。本文介绍了建立用于研究基于CO_2的混合物的热力学循环的设施。实验台具有使用红外光谱法分析循环中几个点的在线流体成分的特殊性。计划于2015年中期取得首个结果。

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  • 来源
    《》|2015年|1-8|共8页
  • 会议地点 Yokohama(JP)
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    CNAM Laboratory CMGPCE 292 rue Saint Martin – Accès 23 Paris 75003 FRANCE Pascal.tobaly@cnam.fr;

    CNAM Laboratory CMGPCE 292 rue Saint Martin – Accès 23 Paris 75003 FRANCE;

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