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USING HYDRATE SLURRIES TO INCREASE THE SOLAR FRACTION OF SOLAR HEATING AND COOLING SYSTEMS

机译:采用水合物浆料增加太阳能加热和冷却系统的太阳能分数

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The contribution of solar thermal energy to the final energy consumption has significantly increased in recent years. However the use of solar thermal energy to drive sorption heating/cooling systems is still less than 2% of the total installed solar thermal technology capacity. Reason for this low penetration are costs and complexity associated with limited solar fractions. The IEA expects that by 2050 solar thermal energy will have a major share in the CO_2 emissions reduction associated with the built environment. Thermal storage can significantly increase the solar fraction of solar driven sorption heating/cooling systems. This paper discusses the aspects that should be considered when selecting the latent heat storage for a specific solar heating and cooling application. It positions latent heat storage in relation to solar heating and cooling systems helping determine the storage temperature level. It quantifies temperature losses and indicates how the major sources of irreversibilities can be quantified. It distinguishes between stationary phase change materials and pumpable slurries of phase change materials and illustrates the advantages of pumpable PCM slurries.
机译:近年来,太阳能热能对最终能源消耗的贡献显着增加。然而,使用太阳能热能驱动吸附加热/冷却系统的使用仍然不到总安装太阳能热技术容量的2%。这种低渗透的原因是与有限的太阳能分数相关的成本和复杂性。 IEA预计,到2050年的太阳能热能将在与建筑环境相关的CO_2排放中具有主要份额。热存储可以显着增加太阳能驱动吸附加热/冷却系统的太阳能分数。本文讨论了选择特定太阳能加热和冷却应用的潜热存储时应考虑的方面。它在太阳能加热和冷却系统方面呈现潜热存储,帮助确定储存温度水平。它量化了温度损失,并指示了如何量化不缩探的主要来源。它区分了静止相变材料和相变材料的可泵送浆料,并说明了泵送PCM浆料的优点。

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