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Adiabatic Absorption by Absorbent Atomization for Improving Absorption Heat Transformer Performance

机译:吸收雾化改善吸收热变压器性能的绝热吸收

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摘要

Absorption heat transformers (AHTs) are a type of absorption heat pumps that are primarily driven by low-grade (typically waste) heat and produce higher temperature (high-grade) heat. Under the Indus3Es project, a 10 kW LiBr-H_2O "Lab Scale" absorption heat transformer was built as a first experimental step toward larger scales. The focus was on the high-pressure vessel (HPV) (absorber and evaporator) design. To enhance performance, the aim was to obtain complete adiabatic absorption prior to the main absorption process accompanied by heat transfer. This maximizes the temperature within the absorber. This is particularly beneficial for absorption heat transformers, compared to chillers, because obtaining an elevated temperature is the objective. To obtain adiabatic absorption, atomizing spray nozzles were used as the liquid absorbent distribution system. This method proved successful; complete adiabatic absorption was obtained before the droplets contacted the absorber heat exchange surfaces. However, the spray nozzles must be supplied with pressurized liquid and are potentially more delicate than alternative liquid distribution systems. Therefore, future work may focus on determining the required atomization level to avoid excessive pressures and nozzle requirements.
机译:吸收热变压器(AHTS)是一种吸收热泵,主要由低等级(通常是废物)热量驱动,并产生更高的温度(高档)热量。在Indus3ES项目下,10 kW Libl-H_2O“实验室比例”吸收热变压器是朝向更大尺寸的第一个实验步骤。重点是高压容器(HPV)(吸收器和蒸发器)设计。为了提高性能,目的是在主要吸收过程中获得完全的绝热吸收,伴随着传热。这使吸收器内的温度最大化。与冷却器相比,这对于吸收热变压器特别有益,因为获得升高的温度是目标。为了获得绝热吸收,使用雾化喷嘴作为液体吸收性分配系统。这种方法证明是成功的;在液滴接触吸收剂热交换表面之前获得完全的绝热吸收。然而,必须向喷嘴提供加压液体,并且可能比替代液体分配系统更细腻。因此,未来的工作可以专注于确定所需的雾化水平,以避免过度压力和喷嘴要求。

著录项

  • 来源
    《Journal of Heat Transfer》 |2020年第5期|052906.1-052906.9|共9页
  • 作者单位

    Faculty of Mechanical Engineering Technion-Israel Institute of Technology Haifa 32000 Israel;

    Faculty of Mechanical Engineering Technion-Israel Institute of Technology Haifa 32000 Israel;

    Faculty of Mechanical Engineering Technion-Israel Institute of Technology Haifa 32000 Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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