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A novel device for the optical investigation of phase transition in micro channel array evaporators

机译:一种用于光学研究微通道阵列蒸发器中相变的新型装置

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摘要

Evaporation is one of the most important unit operations in thermal and chemical process engineering. Microstructure devices are especially well-suited to act as evaporators. Due to the extraordinary heat exchange performance, electrically powered micro heat exchangers are predestinated to act as evaporators in order to provide sufficient thermal energy for evaporation. Phase transition in micro channels, especially in micro channel arrays, is accompanied by phenomena like vapor clogging, vapor slugging or pressure drop, mass flow and temperature fluctuations. These arrays consist of a multitude of micro channels, which are connected to a collective fluid inlet and outlet. The main objective of this research is to investigate phase transition in micro channel arrays through identify the dependence of phase transition on microstructure geometry. In this publication, a novel electrically heated device which enables the optical investigation of processes inside micro channels is presented and compared to a previous design. The device generates a nearly homogeneous temperature distribution in micro channel arrays and additionally provides various degrees of freedom concerning the microstructure geometry. Methods of investigation as well as equipment required for characterization are presented. The optical investigation of multiphase flow composed of water and steam is performed by an optical microscope and a CCD-based digital high-speed camera with recording frequencies in the range of several 1000 up to a few 100,000 pictures per second.
机译:蒸发是热化学工艺工程中最重要的单元操作之一。微结构器件特别适合用作蒸发器。由于非凡的热交换性能,电动微型热交换器预定用作蒸发器,以便为蒸发提供足够的热能。在微通道中,特别是在微通道阵列中,相变会伴随着诸如蒸汽阻塞,蒸汽流塞或压降,质量流量和温度波动等现象。这些阵列由多个微通道组成,这些微通道连接到集中的流体入口和出口。这项研究的主要目的是通过确定相变对微观结构几何形状的依赖性来研究微通道阵列中的相变。在该出版物中,提出了一种新颖的电加热设备,该设备能够对微通道内部的过程进行光学检查,并与以前的设计进行比较。该装置在微通道阵列中产生近乎均匀的温度分布,并另外提供有关微结构几何形状的各种自由度。介绍了研究方法以及表征所需的设备。由水和蒸汽组成的多相流的光学研究是通过光学显微镜和基于CCD的数字高速相机进行的,其记录频率范围为每秒几千到十万张图片。

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