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HEAT EXCHANGER DEVELOPMENT FOR COMPACT WATER/LIBR SORPTION SYSTEMS

机译:紧凑型水/ LIBR吸附系统的热交换器开发

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For energy efficient tri-generation, solar cooling or residential heating compact sorption appliances using the working pair water/lithium bromide (LiBr) can be applied. Standard plant technology established in the field of large capacity chillers and heat pumps with conventional tube-and-shell configuration cannot be easily adapted to compact units for economic and operational reasons. For a successful marketing of compact sorption units, major effort is required to achieve tolerable plant dimensions and weight together with affordable first cost and reliable operation. In a research project, the design of all key components, I.e. main heat exchangers - evaporator, absorber, condenser and generator - and the liquid pumps for refrigerant and absorbent solution has been revised. In order to achieve uncomplicated manufacturing and improved vacuum tightness, concepts for standardized heat exchanger modules have been developed. A single effect absorption plant has been erected for the experimental investigation of the newly designed finned heat exchangers and plate heat exchanger configurations as main heat exchangers in an absorption cycle. Concepts for sizing these compact heat exchanger units in compliance with the given thermo-hydraulic conditions of a water/lithium bromide absorption cycle will be presented. Estimations of the wetting of the heat exchangers, the pressure drop in the vapor flow, as well as the achieved heat transfer per heat exchanger volume will be discussed. Experimental results for falling film absorption with compact heat exchangers will be presented.
机译:对于使用工作对水/溴化锂(LIBR)的节能三代,太阳能冷却或居住加热紧凑型吸附器具(LIBR)。在大容量冷却器和带有传统管和壳配置的热泵领域建立的标准植物技术不能轻易调整到紧凑的经济和运营原因的单元。为了成功营销紧凑型吸附装置,需要采取重大努力,以实现可容忍的工厂尺寸和重量,以及实惠的首次成本和可靠的操作。在研究项目中,所有关键组件的设计,即主换热器 - 蒸发器,吸收器,冷凝器和发电机 - 以及制冷剂和吸收剂溶液的液体泵已经修改。为了实现不复杂的制造和改进的真空密封,已经开发了标准化热交换器模块的概念。已经竖立了一种单一效果吸收装置,用于在吸收循环中作为主热交换器的新设计的翅片热交换器和板式热交换器配置的实验研究。呈现施加这些紧凑型热交换器单元的概念,符合水/锂溴吸收循环的给定热液压条件。探测热交换器的润湿,蒸汽流动的压降,以及每个热交换器体积的实现的热传递。将提出薄膜吸收与紧凑型热交换器的实验结果。

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