ANSI American Society of Sanitary Engineering 1060-2017 Performance Requirements for Outdoor Enclosures for Fluid Conveying Components.pdf
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1、ASSE Standard #1060-2017 ASSE Board Approved: March 2017ANSI Approved: February 2017 An American National StandardPerformance Requirements for Outdoor Enclosures for Fluid Conveying ComponentsASSE InternationalOutdoor Enclosures for Fluid Conveying Components iASSE 1060-2017General InformationNeithe
2、r this standard, nor any portion thereof, may be reproduced without the written consent of ASSE International.No product may be said to be listed by ASSE International unless the manufacturer has applied to ASSE International, has had its product tested according to the applicable standards, and whe
3、n the product has passed the tests, displays the ASSE Seal on the product.Instructions for receiving the authorization to display the seal are available from the ASSE International Office. Organizations wishing to adopt or list any ASSE International standard should print the ASSE International stan
4、dard number on the cover page first and in equal or larger type to that of the adopting or listing organization.ASSE InternationalMokena, IllinoisCopyright 2017, 2006, 1996All rights reserved.ii Outdoor Enclosures for Fluid Conveying Components ASSE 1060-2017Outdoor Enclosures for Fluid Conveying Co
5、mponents iiiASSE 1060-2017ForewordThis foreword shall not be considered a part of the standard; however, it is offered to provide background information.ASSE International standards are developed in the interest of consumer safety.This standard focuses on devices that provide a range of protection f
6、or fluid conveying components that are mounted outside and above ground so that they may avoid damage from freezing, vandalism, and tampering.The title and scope of this standard was changed during the 2005 revision to, Performance Requirements for Outdoor Enclosures for Fluid Conveying Components.
7、Fluid conveying components include backflow prevention assemblies and devices, water meters, control valves, pressure reducing valves, air release valves, pumps, and other components installed outdoors and above ground that require protection from freezing, or require system security protection.Clas
8、s I and I-V enclosures provide equal or greater protection than Class II or II-V enclosures, or Class III or III-V enclosures. Class II and II-V enclosures provide an equal or greater protection than Class III or III-V enclosures. Recognition is made of the time volunteered by members of this workin
9、g group and of the support of manufacturers, who also participated in developing this standard.This standard does not imply ASSE Internationals endorsement of a product that conforms to these requirements.Compliance with this standard does not imply acceptance by any code body.It is recommended that
10、 enclosures be installed consistent with local codes by qualified and trained professionals.This standard was promulgated in accordance with procedures developed by ASSE International and approved by the American National Standards Institute (ANSI).iv Outdoor Enclosures for Fluid Conveying Component
11、s ASSE 1060-2017Edward J. Lyczko, ChairpersonCleveland Clinic Retiree Cleveland, OHWilliam Briggs, Jr.MGJ AssociatesNew York, NYTerry BurgerNSF InternationalYpsilanti, MIWilliam ChapinProfessional Code Consulting, LLCCullman, ALMark FishZurn Industries, LLCCary, NCRon GeorgePlumb-Tech Design otherwi
12、se, the heater shall have the same wattage to be considered as part of the same design type.NOTE 1: For each design type, the manufacturer has the option of submitting a custom enclosure for testing encompassing the manufacturers longest width, longest height, and longest length.NOTE 2: The manufact
13、urer may submit Class I-V, Class II-V, or Class III-V for testing and receive certification on Class I, Class II, or Class III provided they have the same design type, have shorter or equal interior lengths, widths, and heights, have the same design type and proportionate drain area of the tested en
14、closure, and use the same heat source design as the tested enclosure.NOTE 3: A second enclosure of each structural design type shall also be submitted for the structural test of Section 3.2.1, item 2 only.2.2 Drawings and Technical Data (All Classes)2.2.1 Assembly DrawingsAssembly and installation d
15、rawings, drain opening dimensions, and other information that is required to enable a testing agency to determine compliance with this standard shall be submitted. 2.2.2 Other data, such as manufacturers literature on the insulation, wall and roof material, and the Thermal Resistance (R) Value calcu
16、lations shall be submitted to the testing laboratory.2.2.3 Heat loss calculations shall be determined by the heat loss formula in Appendix A for the largest enclosure of each design type submitted for testing to Section 3.6.The first heat loss calculation submitted shall be solving for the overall h
17、eat transfer coefficient, Utotal, for the tested enclosure per equation (1), where:Outdoor Enclosures for Fluid Conveying Components 5ASSE 1060-2017Qheateris the capacity of the heater expressed as BTU/hr;dTlabis the difference in temperature between the external temperature in Section 3.6 and the i
18、nternal equilibrium temperature within the enclosure;Areatotalis the total internal surface area of the enclosure for the roof and walls;R is the R-value of the insulation for the combined material and construction of the roof or the walls;U is the heat transfer coefficient and is equal to the inver
19、se of the R-valueQheater= Utotalx Areatotalx dTlabUtotal = QheaterFor a smaller enclosure of the same design type, the necessary heater output, Qheater2, is found by equation (2), where:dTlocis the ASHRAE 99% design temperature, per the ASHRAE Handbook Fundamentals, of the location where the enclosu
20、re can be installed.Areatotal2is the total internal surface area of the second, smaller enclosure for the roof and walls.Qheater2= Utotalx Areatotal2x dTlocNote that heat loss due to convection or radiation is not covered by this method.An example of the method is outlined in Appendix A.2.2.4 Draina
21、ge CapacityDrainage capacity calculations for each enclosure size of each design type shall be submitted by the manufacturer and verified by the testing laboratory or an independent registered professional engineer.Areatotalx dTlab6 Outdoor Enclosures for Fluid Conveying Components ASSE 1060-2017Sec
22、tion III3.0 Performance Requirements and Compliance Testing3.1 Air Vent Requirement (Class I-V, II-V, and III-V) 3.1.1 PurposeThe purpose of this test is to determine that the total air opening is capable of providing a sufficient volume of air as per the manufacturer to ensure proper function of th
23、e component located inside of the enclosure.3.1.2 ProcedureReview the drawings of each enclosure submitted by the manufacturer to determine the area of the air inlet. Verify that the enclosure meets the design criteria. The manufacturer shall submit a schedule of air inlet areas for all enclosure si
24、zes for verification.The manufacturer shall size the vent of any enclosure requiring a venting means by using the known venting capacity (Vc) in ft3/min (m3/min) of the largest piece of equipment that can be housed in the enclosure and a maximum velocity (Vm) of 500 ft/min (152 m/min) through the ve
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