ASTM E2872-2014 Standard Guide for Determining Cross-Section Averaged Characteristics of a Spray Using Laser-Diffraction Instruments in a Wind Tunnel Apparatus《采用激光衍射仪测定风道装置中喷雾横截面平.pdf
《ASTM E2872-2014 Standard Guide for Determining Cross-Section Averaged Characteristics of a Spray Using Laser-Diffraction Instruments in a Wind Tunnel Apparatus《采用激光衍射仪测定风道装置中喷雾横截面平.pdf》由会员分享,可在线阅读,更多相关《ASTM E2872-2014 Standard Guide for Determining Cross-Section Averaged Characteristics of a Spray Using Laser-Diffraction Instruments in a Wind Tunnel Apparatus《采用激光衍射仪测定风道装置中喷雾横截面平.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E2872 14Standard Guide forDetermining Cross-Section Averaged Characteristics of aSpray Using Laser-Diffraction Instruments in a Wind TunnelApparatus1This standard is issued under the fixed designation E2872; the number immediately following the designation indicates the year oforiginal
2、adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.INTRODUCTIONIn this guide, test methodologies are described specifically relatin
3、g to the use of laser diffraction(LD) instrumentation to estimate the droplet-size distribution for liquid sprays released into movingair streams. This guide presented is primarily applicable to aerial agricultural spraying, aerial forestsprays, or air-blast spraying. Cases in which the spray is eje
4、cted into a quiescent gas environment thatlacks the unifying effect of a well-defined gas co-flow may require different techniques orinstrumentation or both. In this guide, an average droplet size distribution for the entire spray isdetermined. It requires that the spray be statistically steady in t
5、ime, but it may be polydisperse andspatially non-uniform.The droplet-size distribution used for characterization of a moving spray source must be determinedfrom a “flux-sensitive sample” or equivalent. This is because a flux-sensitive sample provides thefraction of the total liquid flow rate contrib
6、uted by each size class of droplets and, therefore, is directlyrelated to the spray coverage. In contrast, the LD instrument derives its droplet-size distribution froma “spatial sample,” and therefore, its use for spray characterization is limited to test conditions underwhich equivalence between fl
7、ux-sensitive samples and spatial samples can be established. Suchequivalence exists when the velocity of all droplets of the spray is equal and creating these conditionsis the basis of this guide.All tests relating to this guide require a wind tunnel with a test section of sufficient size that itcon
8、tains the entire spray plume up to the plane of measurement without droplets impacting the testsection walls under the prescribed operating conditions. The unobstructed wind tunnel air stream shallbe uniform and free of turbulence. The test air speed shall be chosen to match the relative speed ofthe
9、 sprayer to the ambient conditions.1. Scope1.1 The purpose of this guide is to define a test procedurefor applying the laser diffraction (LD) method to estimate anaverage droplet size distribution that characterizes the flux ofliquid droplets produced by a specified spray generation deviceunder spec
10、ified gas co-flow conditions using a specified liquid.The intended scope is limited to artificially generated sprayswith high speed co-flow. The droplets are assumed to be in thesize range of 1 to 2000 m in diameter and occur in sprays thatare contained within a volume as small as a few cubiccentime
11、tres or as large as a cubic metre. The droplet sizes areassumed to be distributed non-uniformly within the sprayvolume.1.2 This guide is intended primarily to guide measurementof performance of nozzles and atomizers using LD instru-ments.1.3 Non-uniform sprays require measurements across theentire s
12、pray cross section or through several chords providinga representative sample of the overall spray cross section. Theaim of multiple-chord measurements is to obtain a singledroplet size distribution that characterizes the whole sprayrather than values from a single chordal measurement.1This guide is
13、 under the jurisdiction of ASTM Committee E29 on Particle andSpray Characterization and is the direct responsibility of Subcommittee E29.02 onNon-Sieving Methods.Current edition approved April 1, 2014. Published May 2014. DOI: 10.1520/E2872-14.Copyright ASTM International, 100 Barr Harbor Drive, PO
14、Box C700, West Conshohocken, PA 19428-2959. United States11.4 Use of this guide requires that the instrument does notinterfere with spray production and does not significantlyimpinge upon or disturb the co-flow of gas and the spray. Thistechnique is, therefore, considered non-intrusive.1.5 The compu
15、tation of droplet size distributions from thelight-scattering distributions is done using Mie scatteringtheory or Fraunhofer diffraction approximation. The use of Mietheory accounts for light refracted through the droplet and thereis a specific requirement for knowledge of both real (refractive)and
16、imaginary (absorptive) components of the complex indexof refraction. Mie theory also relies on an assumption ofdroplet homogeneity. The Fraunhofer diffraction approxima-tion does not account for light refracted through the droplet anddoes not require knowledge of the index of refraction.1.6 The inst
17、ruments shall include data-processing capabili-ties to convert the LD scattering intensities into droplet sizedistribution parameters in accordance with Practice E799 andTest Method E1260.1.7 The spray is visible and accessible to the collimatedbeam produced by the transmitter optics of the LD instr
18、ument.The shape and size of the spray shall be contained within theworking distance of the LD system optics as specified by theinstrument manufacturer.1.8 The size range of the LD optic should be appropriate tothe spray generation device under study. For example, theupper bound of the smallest dropl
19、et size class reported by theinstrument shall be not more than14 the size of DV0.1.1.9 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.10 This standard may involve hazardous materials,operations, and equipment. This standard d
20、oes not purport toaddress all of the safety problems associated with its use. It isthe responsibility of the user of this standard to establishappropriate safety and health practices and determine theapplicability of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E799
21、 Practice for Determining Data Criteria and Processingfor Liquid Drop Size AnalysisE1260 Test Method for Determining Liquid Drop SizeCharacteristics in a Spray Using Optical NonimagingLight-Scattering InstrumentsE1620 Terminology Relating to Liquid Particles and Atomi-zation2.2 ISO Standards:3ISO 13
22、320:2009 Particle Size AnalysisLaser DiffractionMethods, General Principles3. Terminology3.1 DefinitionsFor definitions of terms used in thisstandard, refer to Terminology E1620 and ISO 13320:2009.3.2 Definitions of Terms Specific to This Standard:3.2.1 aerial spraying, npractice of delivering spray
23、 via anairborne vehicle such as a fixed-wing aircraft or helicopter.3.2.2 atomizer, nspray generation apparatus.3.2.2.1 DiscussionVarious definitions for “atomizer” aredefined in Terminology E1620 by construction and atomizationmethod.3.2.3 co-flow, ncoherent, moving gas phase surrounding aplume of
24、spray droplets that significantly influences the direc-tion of movement of droplets in a spray plume.3.2.4 co-flow generation device, nwind tunnel or otherdevice that creates a steady, uniform air stream in the plane ofmeasurement.3.2.5 concentration sensitive, adjstatistical quantity de-rived from
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