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Findings to improve the performance of a two-phase flat plate solar system, using acetone and methanol as working fluids

机译:使用丙酮和甲醇作为工作液来改善两相平板太阳能系统性能的发现

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摘要

An indirect two-phase water heating solar system was tested using acetone and methanol as working fluids. The working fluid circulates in a closed circuit that extends from the solar collector to a coil heat exchanger in the thermo tank. The working fluid evaporates in the solar collector and condensates in the thermo tank coil. This Phase Change System (PCS) prevents freezing, scaling, corrosion, and fouling; these advantages increase the lifetime of the system. The objective of this work is to characterise the performance of the PCS using different filled fractions of acetone and methanol, with two kind of initial pressures (atmospheric pressure, and partial vacuum), in order to find the appropriate conditions for a good performance of the system. For this purpose, the useful heat was determined, as well as the increment of temperature in the water of the thermo tank, and the experimental efficiency. Results are compared to a witness conventional Domestic Solar Water Heating System. The witness has the same characteristics (materials and dimensions) than the PCS, except for the coil heat exchanger presented in the PCS. The instrumentation set throughout the system includes temperature sensors, pressure transducers, a pyranometer and an anemometer, that permit to characterise and understand the performance of the system under different working conditions. By knowing the phenomenology of the working fluid in the closed circuit, the stratification profile of the water in the thermo tank, and the thermal performance of the solar collector, projections to improve the PCS can be formulated. The performance of the system is the result of several variables working together in combination: the working fluid, filled fraction, partial vacuum, coil length, as well as the working and ambient conditions. The appropriate combination of these variables is investigated to improve the performance of the PCS. Experimental results showed that the partial vacuum conditions at the beginning of the test led, as expected, to an improved performance of the PCS. Tests were carried out under the actual field conditions of Temixco, Mexico.
机译:使用丙酮和甲醇作为工作流体对间接两相水加热太阳能系统进行了测试。工作流体在闭合回路中循环,该闭合回路从太阳能收集器延伸到热罐中的盘管热交换器。工作流体在太阳能收集器中蒸发,并在热罐盘管中冷凝。该相变系统(PCS)可防止结冰,结垢,腐蚀和结垢;这些优点增加了系统的使用寿命。这项工作的目的是使用两种初始压力(大气压和部分真空)来表征使用不同填充比例的丙酮和甲醇的PCS的性能,以便找到合适的条件来获得良好的PCS性能。系统。为此,确定了有用的热量,以及热罐中水的温度增量和实验效率。将结果与见证的传统家用太阳能热水系统进行比较。见证人具有与PCS相同的特性(材料和尺寸),除了PCS中提供的盘管热交换器。整个系统中的仪器套件包括温度传感器,压力传感器,日射强度计和风速计,它们可以表征和了解在不同工作条件下系统的性能。通过了解封闭回路中工作流体的现象学,热罐中水的分层分布以及太阳能集热器的热性能,可以制定改善PCS的方案。系统的性能是多个变量共同作用的结果:工作流体,填充分数,部分真空,盘管长度以及工作和环境条件。研究了这些变量的适当组合,以提高PCS的性能。实验结果表明,如预期的那样,在测试开始时的部分真空条件导致PCS的性能得到改善。测试是在墨西哥Temixco的实际现场条件下进行的。

著录项

  • 来源
    《Solar Energy》 |2012年第4期|p.1089-1098|共10页
  • 作者单位

    Posgrado en Ingenieria (Energia), Universidad National Autonoma de Mexico, Privada Xochicalco SIN, Centra, C.P. 62580 Temi.xco, Morelos, Mexico;

    Centra de Investigation en Energia, Universidad National Autonoma de Mexico, Privada Xochicalco SIN, Centra, C.P. 62580 Temixco, Morelos, Mexico;

    Centra de Investigation en Energia, Universidad National Autonoma de Mexico, Privada Xochicalco SIN, Centra, C.P. 62580 Temixco, Morelos, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    phase change; heat transfer; indirect system; solar collector; thermosyphon; water heating;

    机译:相变传播热量;间接系统太阳能集热器热虹吸管水加热;

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