ECMA TR 99-2010 Constant Sound Power Fan Curves for Small Air-moving Devices《小型空气驱动装置的恒定声功率扇曲线(第2版)》.pdf
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1、 Reference number ECMA TR/12:2009 Ecma International 2009 ECMA TR/99 2nd Edition / December 2010 Constant Sound Power Fan Curves for Small Air-moving Devices COPYRIGHT PROTECTED DOCUMENT Ecma International 2010 Ecma International 2010 i Contents Page 1 Scope 1 2 References . 1 3 Terms and definition
2、s . 1 4 Abbreviations . 1 5 Iso-acoustic fan curves . 2 5.1 Overview . 2 5.2 Airflow chamber testing 2 5.3 Acoustic plenum testing . 2 5.4 Flow rate determination 3 5.5 Iso-acoustic fan curve determination 7 5.6 Comparison to manual iso-acoustic data . 9 5.7 Iso-acoustic fan curve test report 10 6 I
3、nlet restriction fixture . 11 6.1 Overview . 11 6.2 Notebook inlet restriction fixture . 11 6.3 Comparison to in-system noise . 13 6.4 Iso-acoustic fan curve test report with inlet restriction fixture 14 Annex A (informative) Sample Data 15 ii Ecma International 2010 Ecma International 2010 iii Intr
4、oduction Fan performance in terms of flow and pressure can be measured using an airflow chamber in accordance with AMCA 210, and such a fan curve is normally provided in a manufacturers datasheet. The datasheet may also contain a measured sound pressure level, typically at 1 m from the fan inlet, wi
5、th the fan in free space. Sound power level in a loaded condition, as a function of static pressure, may be measured in accordance with ISO 10302-1 by using an acoustic fan plenum. Such data is much more indicative of the noise the fan will make when installed in a device, but is difficult to compar
6、e to the fan curve without cross-plotting between multiple data sets. A simpler way to comprehensively state fan performance is with a constant sound power, or iso-acoustic, fan curve. Using this iso-acoustic fan curve, fan performance may be easily compared in terms of flow, pressure, and noise. Fo
7、r example, iso-acoustic fan curves for two fans at the same sound power level may be compared to the impedance curve of a system to determine which fan will provide more airflow in that system for a fixed acoustic limit. Alternately, if a sound power level is chosen for the iso-acoustic fan curve th
8、at is acceptable from an ergonomics perspective, the system designer can be confident that the acoustic limit will automatically be satisfied no matter what the system impedance turns out to be in the final design. Inlet effects can have a large impact on fan flow rate and noise generation. For exam
9、ple, an axial fan commonly has a finger guard or grille, while a blower used in a notebook computer operates within a very constrained space. Since these effects cannot be accounted for by a simple pressure drop due to the complicated flow physics, it is desirable that the fan curve for a specific a
10、pplication include such inlet losses directly. A fixture to approximate the inlet restriction in a notebook computer is described that has been shown to correlate closely with the noise of actual systems. This Ecma Technical Report has been adopted by the General Assembly of December 2010. iv Ecma I
11、nternational 2010 “DISCLAIMER This document and possible translations of it may be copied and furnished to others, and derivative works that comment on or otherwise explain it or assist in its implementation may be prepared, copied, published, and distributed, in whole or in part, without restrictio
12、n of any kind, provided that the above copyright notice and this section are included on all such copies and derivative works. However, this document itself may not be modified in any way, including by removing the copyright notice or references to Ecma International, except as needed for the purpos
13、e of developing any document or deliverable produced by Ecma International (in which case the rules applied to copyrights must be followed) or as required to translate it into languages other than English. The limited permissions granted above are perpetual and will not be revoked by Ecma Internatio
14、nal or its successors or assigns. This document and the information contained herein is provided on an “AS IS“ basis and ECMA INTERNATIONAL DISCLAIMS ALL WARRANTIES, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE INFORMATION HEREIN WILL NOT INFRINGE ANY OWNERSHIP R
15、IGHTS OR ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.“ Ecma International 2010 1 Constant Sound Power Fan Curves for Small Air-moving Devices 1 Scope This Ecma Technical Report specifies a method to generate iso-acoustic fan curves for small air-moving devices, with
16、 or without the presence of a fixture to provide a specific inlet condition to the unit under test. A fixture to provide inlet restriction applicable to blowers used in cooling of notebook computers is also described. It is assumed that users are familiar with aerodynamic fan performance measurement
17、s and the use of the acoustic fan plenum to measure sound power of a fan under load. 2 References For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. ISO 10302-1, Acoustics - Measurement of No
18、ise and Vibration of Small Air-Moving Devices, Part 1: Airborne Noise Emission AMCA 210, Laboratory Methods of Testing Fans for Aerodynamic Performance Rating 3 Terms and definitions For the purposes of this document, the following terms and definitions apply. 3.1 iso-acoustic fan curve relation bet
19、ween pressure and flow performance of a fan along an isobel 3.2 isobel contour of constant sound power level 3.3 airflow chamber device used to measure the flow and pressure performance of an air-moving device 4 Abbreviations AFC Airflow Chamber RPM Revolutions Per Minute 2 Ecma International 2010 5
20、 Iso-acoustic fan curves 5.1 Overview The iso-acoustic fan curve procedure applies to any air-moving device measured on the acoustic plenum. The term “fan” will be used generically to describe the air-moving device. Two measurements must be combined to generate the iso-acoustic curve, one data set f
21、rom an airflow chamber (AFC) and one data set from an acoustic plenum. The AFC data comprises at least one constant voltage fan curve. The acoustic plenum data comprises a set of measurements spanning a wide range of operating points. The AFC data is used to determine the flow rate for each acoustic
22、 plenum measurement by an interpolation technique. The flow, pressure, and noise data is then scaled, using a chosen exponent, to a desired sound power target and a final fitting function generated to describe the iso-acoustic curve. NOTE If an inlet restriction fixture is used (see Clause 6), it sh
23、ould be used for both the AFC and acoustic plenum testing. 5.2 Airflow chamber testing The minimum requirement is to measure at least one constant voltage fan curve, recording at least flow, pressure, and fan speed data. The recommended procedure is to measure at two voltages (60% and 100% of the ra
24、ted voltage) with at least eight points on each fan curve. An example data set is shown in Figure 1. Once installed on the AFC, it is estimated that each data point should take one minute to collect. 0204060801001201401601802000 1 2 3 4 5 6 7 8Flo w (m3/h)Pressure (Pa)5 V3 VFigure 1 Constant voltage
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