标题: | 大管径波浪型鳍管式热交换器空气侧性能研究 Airside Performance of Wavy Fin-and-Tube Heat Exchanger Having Larger Doameter Tube |
作者: | 王启川 WANG CHI-CHUAN 国立交通大学机械工程学系(所) |
关键字: | 波浪鳍片;冷冻空调;大管径;鳍管式气冷式热交换器;wavy fin;HVAC&R;large diameter;fin-and-tube heat exchanger |
公开日期: | 2010 |
摘要: | 热交换器(蒸发器或冷凝器)是冷冻系统中最重要的热量传送元件,其主要 工作是将室内侧的热负荷排放至室外侧环境中。热交换器热传效率的好坏, 对整个系统设备整体性能会有大的影响。过去以來,学术界及工业界一直致 力于研究如何增强热交换器的热传性能,提高整个系统设备的能源效率;另 外也要求热交换器的尺寸缩小,以降低成本,增加竞争力。空调系统的基本 原理作用包括了四个基本元件,冷媒压缩机、冷凝器、膨胀设备、蒸发器等。 而其中蒸发与冷凝的过程,都必须使用热交换器,因此鳍管式热交换器性能 的好与坏,与整个空调系统有着密切关系。以气冷式热交换器而言,其热交 换的主要目的在于对空气的冷却或加热,而由于空气的热传导系數相当的 小,因此要达到较好的热传效果,经常要增加热交换器的鳍片面积,來解决 热传问题,因此热交换器鳍片依其形狀大致可分成,平板型(plain fin)、百 葉窗型(louver fin)、波浪型(wavy fin)、及裂口型(slit fin)等,这些型 态的鳍片均可用于蒸发器(湿盘管)或冷凝器(干盘管),在中大型热交换 器中,由于考量长期运转的信赖性,几乎都不会选用有开孔的百葉窗与裂口 型鳍片,平板型与波浪是最常使用的鳍片,而且由于较大的能力需求,最常 使用横向间距为38.1 mm、纵向间距为33 mm、管俓为5/8”(俗称5 分管) 的鳍管式热交换器。虽然此類热交换器使用量相当的大,文献上对于此類热 交换器的性能研究却是非常的少,应用上多藉由经验设计,然而如果操作条 件有改变时,经常会出现设计过大或不足的现象,造成能源与材料的双重浪 费。因此本计画预期进行大管径波浪鳍片的测试分析,让设计者得以设计此 類热交换器,本计画第一年将进行干盘管(如冷凝器、加热盘管)的测试资料库 的建立与相关分析,第二年则进行湿盘管(如蒸发器、送风盘管)的热交换器的 测试资料库的建立与相关分析(含高湿度85%与正常湿度50%)。 Heat exchanger is the major heat transport device applicable to heating/ventilation/air-conditioning and refrigeration systems (HVAC&R). Performance of heat exchanger is directly in connection to the overall performance of the whole system. Efforts were made in either academic or in industry to improve the performance of the system, especially in improving the energy efficiency and in reducing the material cost. There are four major components in HVAC&R system, namely compressor, condenser, evaporator, and expansion device. The process of condensing or evaporating requires heat exchanger. Hence, better design heat exchanger gives rise to higher system performance. One of the major types of heat exchangers uses air-cooling and normally in the form of fin-and-tube type. For practical application, the air side resistance plays the essential role and enhanced surface like wavy, louver, and slit were used to reduce the airside resistance. However, for commercial and industrious applications, louver or slit are generally not applicable due to concerns of reliability and fouling. Yet larger diameter tube such as 5/8” with Pt = 38 mm and Pl = 33 mm were often exploited due to needs of higher capacity. Unfortunately, the existing database for the performance of this kind of heat exchanger is simply unavailable. This is true for both dry coil (condenser) and wet coil (evaporator). In this regard, it is the objective of this project to provide sufficient information for this kind of heat exchanger using wind tunnel testing. The first year’s project aims to obtain the dry coil performance whereas the second year will conduct wet coil experiments with a normal humidity 50% and with a high humidity conditions (85%). |
官方说明文件#: | NSC99-2218-E009-012-MY2 |
URI: | http://hdl.handle.net/11536/100725 https://www.grb.gov.tw/search/planDetail?id=2054716&docId=331029 |
显示于类别: | Research Plans |
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