AASHTO TP 99-2018 Standard Method of Test for Determining the Influence of Road Surfaces on Traffic Noise Using the Continuous-Flow Traffic Time-Integrated Method (CTIM).pdf
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1、Standard Method of Test for Determining the Influence of Road Surfaces on Traffic Noise Using the Continuous-Flow Traffic Time-Integrated Method (CTIM) AASHTO Designation: TP 99-181Technical Section: 5a, Pavement Measurement Release: Group 1 (April) American Association of State Highway and Transpor
2、tation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-5a TP 99-1 AASHTO Standard Method of Test for Determining the Influence of Road Surfaces on Traffic Noise Using the Continuous-Flow Traffic Time-Integrated Method (CTIM) AASHTO Designation: TP 99-181Technical Section
3、: 5a, Pavement Measurement Release: Group 1 (April) 1. SCOPE 1.1. The Continuous-Flow Traffic Time-Integrated Method (CTIM) describes the procedures for measuring the influence of road surfaces on highway traffic noise at a specific site. It provides a quantitative measure of the sound pressure leve
4、l at locations adjacent to a roadway. Measurements capture the sound from existing traffic for all vehicles on all roadway lanes. Measurements also include propagation effects over the roadway pavement and adjacent terrain to the nearby measurement location. 1.2. CTIM is to be applied on roadways wh
5、ere measuring single-vehicle pass-by events would be difficult due to continuously flowing, relatively dense traffic (sound levels from single vehicles cannot be properly captured due to contamination from sound from other vehicles). 1.3. This standard is intended for use by acoustic professionals.
6、Competency with acoustical measurement, modeling, and analysis techniques is assumed. 1.4. This standard may involve hazardous materials, operations, and equipment. This standard does not purport to address all of the safety concerns associated with its use. It is the responsibility of the user of t
7、his standard to consult and establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: T 360, Measurement of Tire/Pavement Noise Using the On-Board Sound Intensity (OBSI) Method TP 98, Deter
8、mining the Influence of Road Surfaces on Vehicle Noise Using the Statistical Isolated Pass-By (SIP) Method 2.2. ASTM Standard: F2493, Standard Specification for P225/60R16 97S Radial Standard Reference Test Tire 2.3. FHWA Reports: FHWA-PD-96-008, Development of National Reference Energy Mean Emissio
9、n Levels for the FHWA Traffic Noise Model (FHWA TNM), Version 1.0 2018 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-5a TP 99-2 AASHTO FHWA-PD-96-009, FHWA Traffic Noise Model (FHWA TNM): Users Guide, T
10、NM Version 2.5 Addendum, April 2004 FHWA-PD-96-010, FHWA Traffic Noise Model (FHWA TNM), Version 1.0: Technical Manual, 2004, update sheets available from FHWA FHWA-PD-96-046, Measurement of Highway-Related Noise, Section 4: Existing-Noise Measurements in the Vicinity of Highways 2.4. IEC Standards:
11、 IEC 60942: 2003, ElectroacousticsSound Calibrators IEC 61260: 1995, ElectroacousticsOctave-Band and Fractional-Octave-Band Filters IEC 61672-1: 2002, ElectroacousticsSound Level MetersPart 1: Specifications 2.5. ANSI Standards: S1.42: 2001 (R2006), American National Standard Design Response of Weig
12、hting Networks for Acoustical Measurements S12.8: 1998 (R2008), American National Standard Methods for Determination of Insertion Loss of Outdoor Noise Barriers 3. TERMINOLOGY 3.1. Definitions: 3.1.1. analysis time blockthe shortest length time block for which all sound level, traffic, and meteorolo
13、gical data are analyzed. The analysis time block length shall range from 5 to 15 min. The length of the analysis time block should be long enough to minimize variation in sound levels from one analysis time block to the next, but short enough to facilitate the elimination of periods of time where th
14、e measurements were contaminated by nonhighway source noise. (For example, if measuring 15-min analysis time blocks, it would be undesirable to eliminate the entire 15 min because 5 min of the time period had noise contamination from jets flying overhead; in this case, shorter time blocks would mini
15、mize the amount of data lost to contamination.) 3.1.2. control blockthe calculated energy average, Leq, of all modeled analysis time blocks over the first measurement period that meets the data quality criteria specified in this standard. This control block is used for normalization of the remaining
16、 analysis data blocks for all data sets. 3.1.3. data setthe acoustical, traffic, and meteorological data collected over a measurement period during one site visit. 3.1.4. measurement perioda period of time selected to capture enough data to properly represent the site. A minimum of three reporting t
17、ime blocks or data points are required; additional data are desirable. 3.1.5. On-Board Sound Intensity (OBSI) methoda measurement procedure to evaluate the tire/pavement noise component resulting from the interaction of an ASTM F2493 Standard Reference Test Tire (SRTT) on a pavement surface. Sound i
18、ntensity measurements are taken at defined locations near the tire/pavement interface. 3.1.6. powertrain noisethe noise generated from the powertrain, including the vehicle engine, exhaust system, air intake, fans, transmission, differential, and axles. 3.1.7. reporting time blocka time block compri
19、sed of 15-min Leqsound levels for which sound level, traffic, and meteorological data shall be reported. The reporting time block shall be comprised of one or more analysis time blocks. 2018 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication i
20、s a violation of applicable law.TS-5a TP 99-3 AASHTO 3.1.8. sampling periodthe period of time over which data are collected during data acquisition. The sampling period must be shorter than or equal to the analysis time block. 3.1.9. Statistical Isolated Pass-By (SIP) methoda test method for measuri
21、ng the influence of road surfaces on highway traffic noise. The SIP method captures the sound pressure level from isolated vehicles in existing traffic and allows for the comparison of vehicle noise on roadways of varying surfaces and across studies by comparing measured sound levels to a reference
22、noise curve. 3.1.10. tire/pavement noisethe sound generated by the interaction of the tire with the pavement surface as it traverses the pavement. 3.1.11. traffic noisethe overall noise emitted by multiple vehicles running over the road being evaluated. 3.1.12. vehicle categoriesa vehicle category c
23、onsists of vehicles that have certain common features easy to identify in the traffic stream, such as the number of axles and the size. The common features are assumed to correspond to similarities in sound emission when driven under the same operating conditions. The following vehicle categories ar
24、e considered to be sufficient to describe the noise characteristics of road surfaces and are used in this part of the CTIM method: Table 1Vehicle Categories Vehicle Category Number of Axles, Number of Tires, Gross Vehicle Weight (examples) Automobiles 2 axles, 4 tires, and generally 9,900 lb (4,500
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