ASTM E2249-2002 Standard Test Method for Laboratory Measurement of Airborne Transmission Loss of Building Partitions and Elements Using Sound Intensity《用声音强度进行建筑物分区和单元空气传播损耗实验室测量的标.pdf
《ASTM E2249-2002 Standard Test Method for Laboratory Measurement of Airborne Transmission Loss of Building Partitions and Elements Using Sound Intensity《用声音强度进行建筑物分区和单元空气传播损耗实验室测量的标.pdf》由会员分享,可在线阅读,更多相关《ASTM E2249-2002 Standard Test Method for Laboratory Measurement of Airborne Transmission Loss of Building Partitions and Elements Using Sound Intensity《用声音强度进行建筑物分区和单元空气传播损耗实验室测量的标.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 2249 02Standard Test Method forLaboratory Measurement of Airborne Transmission Loss ofBuilding Partitions and Elements Using Sound Intensity1This standard is issued under the fixed designation E 2249; the number immediately following the designation indicates the year oforiginal adopt
2、ion or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.INTRODUCTIONThis standard test method is part of a set for evaluating the sound tran
3、smission loss of a partitionor partition element under laboratory conditions. It differs from Test Method E90in that the soundpower radiated by the element under test is measured directly using an intensity probe rather thanindirectly from the space averaged receiver room sound pressure and the room
4、 reverberation time.This test method is especially useful when the receiver room requirements of Test Method E90cannot be achieved, or flanking sound involving the receiver room surfaces is present but its influence isto be circumvented (1)2, as discussed in Annex A3.Others test methods to evaluate
5、sound insulation of building elements include: Test Method E90,airborne transmission loss of an isolated partition element in a controlled laboratory environment, TestMethod E 492, laboratory measurement of impact sound transmission through floors, Test MethodE 336, measurement of sound isolation in
6、 buildings, Test Method E 1007, measurement of impactsound transmission in buildings, Guide E 966, measurement of sound transmission through buildingfacades and facade elements.1. Scope1.1 This test method covers the measurement of airbornesound transmission loss of building partitions such as walls
7、 ofall kinds, operable partitions, floor-ceiling assemblies, doors,windows, roofs, panels and other space-dividing buildingelements. It may also be have applications in sectors other thanthe building industry, although these are beyond the scope.1.2 The primary quantity reported by this standard is
8、Inten-sity Transmission Loss (ITL) and shall not be given anothername. Similarly, the single-number rating Intensity SoundTransmission Class (ISTC) derived from the measured ITLshall not be given any other name.1.3 This test method may be used to reveal the soundradiation characteristics of a partit
9、ion or portion thereof.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior
10、 to use.NOTE 1The method for measuring the sound intensity radiated by thebuilding element under test defined by this ASTM standard meets orexceeds those of ISO 15186-1. Special consideration will have to be givento requirements for the source room and specimen mounting if compliancewith ISO 15186-1
11、 is also desired as they differ from those of this standard.2. Referenced Documents2.1 ASTM Standards:C 634 Terminology Relating to Environmental Acoustics3E90 Test Method for Laboratory Measurement of AirborneSound Transmission Loss of Building Partitions and Ele-ments3E 336 Test Method for Measure
12、ment of Airborne SoundInsulation in Buildings3E 413 Classification for Rating Sound Insulation32.2 ANSI Standards:4S1.9 Instruments for the Measurement of Sound IntensityS1.11 Specification for Octave-Band and Fractional Octave-Band Analogue and Digital Filters2.3 ISO Standards:4ISO 140-3 AcousticsM
13、easurement of Sound Insulation inBuildings and of Building ElementsPart 3: LaboratoryMeasurements of Sound Insulation of Building ElementsISO 9614-1 AcousticsDetermination of Sound Power1This test method is under the jurisdiction of ASTM Committee E33 onEnvironmentalAcoustics and is the direct respo
14、nsibility of Subcommittee E33.03 onSound Transmission.Current edition approved Nov. 10, 2002. Published June 2003.2The boldface numbers in parentheses refer to the list of references at the end ofthis standard.3Annual Book of ASTM Standards, Vol 04.06.4Available from American National Standards Inst
15、itute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.Levels of Noise Sources Using Sound IntensityPart 1:Measurement at Discrete PointsISO 9614-2 AcousticsDetermination of Sound P
16、owerLevels of Noise Sources Using Sound IntensityPart 2:Measurement by ScanningISO 15186-1 AcousticsMeasurement of Sound Insulationin Buildings and of Building Elements Using SoundIntensityPart 1: Laboratory ConditionsISO 15186-2 AcousticsMeasurement of Sound Insulationin Buildings and of Building E
17、lements Using SoundIntensityPart 2: In-Situ Conditions2.4 IEC Standard:5IEC 1043 Instruments for the Measurement of Sound Inten-sity3. Terminology3.1 The acoustical terminology used in this method isintended to be consistent with the definitions in TerminologyC 634 and Test Method E90. Unique defini
18、tions of relevanceto this test method are presented here:3.1.1 sound intensity, Itime averaged rate of flow ofsound energy per unit area in the direction of the local particlevelocity. This is a vector quantity which is equal to:I51T*0Tpt! ut! dtWm2(1)where:p(t) = instantaneous sound pressure at a p
19、oint, Pascals,u(t)= instantaneous particle velocity at the same point, m/s,andT = averaging time, s.3.1.2 normal sound intensity, Incomponent of the soundintensity in the direction normal to a measurement surfacedefined by the unit normal vector n:In5 I nWm2(2)where:n= unit normal vector directed ou
20、t of the volume enclosedby the measurement surface.3.1.3 normal unsigned sound intensity level, L|In|ten timesthe common logarithm of the ratio of the unsigned value of thenormal sound intensity to the reference intensity Ioas given by:L|In|5 10 log|In|IodB (3)where:Io5 10212Wm2(4)3.1.4 normal signe
21、d sound intensity level, LInten times thecommon logarithm of the ratio of the signed value of thenormal sound intensity to the reference intensity Ioas given by:LIn5 sgnIn! 10 log|In|IodB (5)where:sgn(In) = takes the value of negative unity if the soundintensity is directed into the measurement vol-
22、ume, otherwise it is unity.3.1.5 pressure-residual intensity index, dpIothe differencebetween the sound pressure level, Lp, and the unsigned normalsound intensity level when the intensity probe is placed andoriented in a sound field where the sound intensity is zero,expressed in decibels,dpIo5 Lp2 L
23、|In|(6)Additional details can be found in IEC 61043.3.1.6 measurement surfacesurface totally enclosing thebuilding element under test on the receiving side, scanned orsampled by the probe during the measurements. This surfacehas an area Smexpressed in m2.3.1.7 measurement distance, dmdistance betwee
24、n themeasurement surface and the building element under test in adirection normal to the element.3.1.8 measurement subareapart of the measurement sur-face being measured with the intensity probe using onecontinuous scan or a series of discrete positions. The kthmeasurement subarea has an area Smkexp
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