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Experimental evaluation of energy efficiency and velocity fields on a low-pressure axial flow fan (desktop type)

机译:低压轴流风机(台式型)的能效和速度场的实验评估

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摘要

Energy efficiency labeling programs are worldwide applied to provide energy savings (electrical, mechanical, thermal, etc.) in machines and equipment for residential and industrial use, and also a potential reduction in greenhouse gas emissions. Actual research and development indicate that low-pressure axial flow fans represent a significant amount of energy consumption (electricity) especially in developing countries with warm climates, as in Brazil. In this work, bench tests were performed at university facilities, taking into account Brazilian standards for energy efficiency (Brazilian Labeling Program) for residential fans. Equipment under test is a free blow fan (desktop type, residential use), three-bladed with 500 mm diameter and angular speed ranging from 500 up to 1500 s(-1). Experimental analysis and measurement employed hot-wire anemometry, tachometer, wattmeter, chronometer, and data acquisition system. The results are for performance evaluation of turbomachinery characteristic curves. It includes airflow (m(3) s(-1)), angular speed (s(-1)), the power supplied/received (W), efficacy eta (ENCE,n) [(m(3) s(-1) W) m], and non-dimensional parameters: efficiency eta (%) and design flow rate, as well as velocity field, among others. Main contributions indicate that (a) velocity and airflow in turbulent and fully developed conditions are consistent with energy efficiency and efficacy literature comparison, (b) power received by the fluid flow increases ten times more than supplied electrical energy (17/1.8), in the test range, (c) maximum energy conversion efficiency is eta(max) 33% at 1300 RPM and nominal flow rate phi 0.165, (d) efficacy is lower than 0.0030 {[(m(3) s(-1)) W)] m}, classified in "D" level, and (e) expected energy savings 30% by reaching "A" efficacy levels.
机译:能源效率标签计划已在世界范围内应用,旨在为住宅和工业用途的机器和设备节省能源(电,机械,热等),并可能减少温室气体的排放。实际的研究和开发表明,低压轴流风扇代表了大量的能源消耗(电),尤其是在气候温暖的发展中国家(如巴西)。在这项工作中,考虑到巴西住宅风扇的能效标准(巴西标签计划),在大学设施中进行了台架测试。被测设备为自由吹气风扇(台式型,家用),三叶直径为500 mm,角速度范围为500至1500 s(-1)。实验分析和测量使用了热线风速仪,转速表,功率计,天文钟和数据采集系统。结果用于涡轮机械特性曲线的性能评估。它包括气流(m(3)s(-1)),角速度(s(-1)),提供/接收的功率(W),功效eta(ENCE,n)[(m(3)s(- 1)W)m],以及无量纲参数:效率eta(%)和设计流量,以及速度场等。主要贡献表明:(a)在湍流和充分发展的条件下的速度和气流与能量效率和功效文献比较相符;(b)流体流接收的功率增加了所提供电能的17倍(17 / 1.8),在测试范围内,(c)在1300 RPM和额定流量phi 0.165时,最大能量转换效率为eta(max)33%,(d)功效低于0.0030 {[((m(3)s(-1))W )] m},分类为“ D”级,并且(e)通过达到“ A”级功效,预期节能30%。

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