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Effect of the transient energy input on thermodynamic performance of passive water-in-glass evacuated tube solar water heaters

机译:瞬态能量输入对被动玻璃管式真空管太阳能热水器热力学性能的影响

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In this work the effect of the energy input time distribution on thermodynamic performance of a Water in -glass Evacuated Tube Solar Water Heater (WGET-SWH) is studied, including thermo-hydratilic, first law and second law analysis. Geometrical model was based on a commercial WGET-SWH with nominal capacity of 40 L and 8 evacuated tubes. Simulations were carried out for four different transient energy inputs and 10 degrees, 20 degrees, 27 degrees and 45 degrees collector tilt angles. If tilt angle and total energy input are fixed, the energy input function with larger rates produced larger velocities and temperatures. Nevertheless this temperature increment is negligible for any practical purpose and the increment of kinetic energy is not large enough to affect stratification. Thus cumulated energy rather than energy input rate is significant for systems performance. Several second law indexes are proposed to assess stratification in the storage tank. The internal stratification number was used to compare the performance of WGET-SWH and active energy storage systems, showing that the former can achieve higher levels of stratification at low tilts, even comparable to those obtained in active systems with stratification promoters. The novelty of this work is to assess the influence of the transient energy input on the thermodynamic performance and stratification of a passive solar water heater. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究了能量输入时间分布对玻璃水真空管式太阳能热水器(WGET-SWH)的热力学性能的影响,包括热液,第一定律和第二定律分析。几何模型基于商用WGET-SWH,公称容量为40 L和8个抽空管。针对四个不同的瞬态能量输入以及10度,20度,27度和45度集热器倾斜角进行了仿真。如果倾斜角和总能量输入固定,则能量输入函数的速率越大,产生的速度和温度就越大。然而,该温度增量对于任何实际目的都是可以忽略的,并且动能的增量不足以影响分层。因此,累积能量而不是能量输入速率对于系统性能而言很重要。提出了一些第二定律指标来评估储罐中的分层。内部分层数用于比较WGET-SWH和主动储能系统的性能,表明前者在低倾斜度下可以实现更高的分层水平,甚至可以与在具有分层促进剂的主动系统中获得的分层相媲美。这项工作的新颖性在于评估瞬态能量输入对无源太阳能热水器的热力学性能和分层的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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