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首页> 外文期刊>Journal of Energy Storage >A combination of fins-nanoparticle for enhancing the discharging of phase-change material used for liquid desiccant air conditioning unite
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A combination of fins-nanoparticle for enhancing the discharging of phase-change material used for liquid desiccant air conditioning unite

机译:用于增强用于液体干燥剂空调的相变材料放电的翅片纳米粒子的组合

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A combination of fins-nanoparticle is essential for enhancing the Thermal Energy Storage (TES) that reduces the mismatch between energy supply and energy demand and this employs for Liquid Desiccant Air Conditioning Unite. Major problem is that most Phase-Change Materials (PCMs) have low thermal conductivity (k = 0.2 W/m K), resulting in an incomplete charging and discharging processes. Triplex-Tube Heat Exchanger (TTHX) was numerically and experimentally designed, adopted and tested with Alumina nanoparticle (Al2O3) and Paraffin (RT82) that has a discharging temperature of 65 degrees C. The both-sides freezing was used as a major method and the experimental findings displayed the influence of mass flow rates on the PCM discharging basing on the change in these rates of 16.2, 29.4 and 37.5 kg/min, respectively. The solidification rate was minimized as the angle direction increased from. theta = 90 degrees to theta = 270 degrees. Other important findings were that with fins-nanoparticle, an enhancement for the cooling rate of the PCM, compared with these without nanoparticle. Furthermore, the PCM model was solved by the enthalpy-porosity and the finite-volume methods with the Software Ansys Fluent. The solidification time was reduced for TTHX with longitudinal fins and TTHX with triangular fins to 33% and 34% under the effect of 10% nanoparticle, compared with pure Paraffin, respectively. The total energy released for the PCM and nano-PCM was considered. Close agreement obtained between numerical and experimental findings.
机译:鳍片纳米粒子的组合对于增强能量储存(TES)来说是必不可少的,这减少了能量供应和能源需求之间的不匹配,并且这采用液体干燥剂空调联合。主要问题是大多数相变材料(PCM)具有低导热率(K <= 0.2W / m k),导致收费不完整和放电过程。用氧化铝纳米粒子(Al 2 O 3)和石蜡(RT82)在数值和实验设计,采用和测试,用氧化铝纳米粒子(Al 2 O 3)和石蜡(RT82),其具有65℃的排出温度。两侧冷冻用作主要方法和实验结果显示了质量流量率对PCM放电对基于这些速率的变化分别为16.2,29.4和37.5kg / min的变化。随着角度方向增加,凝固率最小化。 Theta = 90度到θ= 270度。与翅片纳米颗粒有翅片纳米颗粒,与这些不含纳米颗粒相比,与翅片纳米粒子相比,对PCM的冷却速率的增强。此外,PCM模型由焓 - 孔隙率和有限体积方法求解,软件ANSYS流畅。与纯石蜡的作用,纵向翅片的纵向翅片和三角形翅片的TTHX的凝固时间还原为33%和34%,与纯石蜡分别相比。考虑了PCM和纳米PCM释放的总能量。在数值和实验结果之间获得的密切协议。

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