ANSI American Society of Sanitary Engineering 1030-2016 Performance Requirements for Positive Pressure Reduction Devices for Sanitary Drainage Systems.pdf
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1、Performance Requirements for Positive Pressure Reduction Devices for Sanitary Drainage Systems ASSE International ASSE Standard #1030-2016 ASSE Board Approved: April 25, 2016 ANSI Approved: May 30, 2016 An American National StandardPositive Pressure Reduction Devices for Sanitary Drainage Systems i
2、ASSE Standard #1030-2016 ASSE International Mokena, Illinois Copyright 2016, 2013, 2009 All rights reserved. Neither 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 unless the manufacturer has ap
3、plied to ASSE International, has had its product tested according to the applicable standards and, when the product has passed the test, displays the ASSE Seal on the product. Instructions for receiving the authorization to display the seal are available from the ASSE International office. Organizat
4、ions wishing to adopt or list any ASSE standard should print the ASSE standard number on the cover page first and in equal or larger type to that of the adopting or listing organization. General Informationii Positive Pressure Reduction Devices for Sanitary Drainage Systems ASSE Standard #1030-2016P
5、ositive Pressure Reduction Devices for Sanitary Drainage Systems iii ASSE Standard #1030-2016 This foreword shall not be considered a part of the standard; however, it is offered to provide background information. ASSE International considers product performance standards to be of great value in the
6、 development of improved plumbing systems. ASSE standards are developed in the interest of consumer safety. A positive air pressure reduction device for sanitary drainage systems is a device specifically designed to protect water trap seals against unwanted positive pressure transients in sanitary d
7、rainage systems. The ASSE 1030 working group, which developed this standard, was set up within the framework of the ASSE International Product Standards Committee. Recognition is made of the time volunteered by members of the working group and of the support of manufacturers, who also participated i
8、n meetings for 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 these devices be installed consistent with local codes by qual
9、ified and trained professionals. This standard was promulgated in accordance with procedures developed by the American National Standards Institute (ANSI). Forewordiv Positive Pressure Reduction Devices for Sanitary Drainage Systems ASSE Standard #1030-2016 Edward J. Lyczko, ChairpersonCleveland Cli
10、nic Retiree Cleveland, OH William Briggs, Jr.MGJ AssociatesNew York, NY Terry BurgerNSF InternationalYpsilanti, MI William ChapinProfessional Code Consulting, LLCCullman, AL Mark FishZurn Industries, LLCCary, NCRon GeorgePlumb-Tech Design & Consulting Services, LLCNewport, MI Daniel GleibermanSloan
11、Los Angeles, CA John F. Higdon, PEApollo Valves / Conbraco Industries, Inc.Matthews, NC Gary HowardIllinois Plumbing Inspector RetireeLaGrange, IL 2016 Product Standards Committee Conrad L. Jahrling (non-voting)ASSE InternationalChicago, IL Chuck LottPrecision Plumbing ProductsPortland, OR Peter Mar
12、zecUnited Association of Plumbers and PipefittersPearl River, NY Thomas PitcherelloState of New JerseyBordentown, NJ Daniel RademacherPlumbing Code and Design ConsultingButte, MT Shabbir RawalpindiwalaKohler CompanyKohler, WI Billy SmithAmerican Society of Plumbing Engineers (ASPE)Montgomery, AL Tsa
13、n-Liang Su, PhDStevens Institute of TechnologyHoboken, NJPositive Pressure Reduction Devices for Sanitary Drainage Systems v ASSE Standard #1030-2016 Steven Cole, ChairpersonIPS CorporationCollierville, TN Conrad L. Jahrling (non-voting)ASSE InternationalChicago, IL 1030 Working Group Steven WhiteSt
14、udor IncorporatedEast Essex United Kingdomvi Positive Pressure Reduction Devices for Sanitary Drainage Systems ASSE Standard #1030-2016 Table of Contents Section I . 11.0 General . 11.1 Application 11.2 Scope . 1Figure 1 11.3 Requirements . 21.4 Reference Standards . 2 Section II 42.0 Test Specimens
15、 42.1 Samples Submitted for Test . 42.2 Samples Tested 42.3 Drawings 42.4 Rejection 4 Section III . 53.0 Performance Requirements and Compliance Testing 53.1 Air Tightness Test . 53.2 Rating Test . 53.3 Endurance Test 5Figure 2 63.4 Test Fixture Description, Calculations and Setup . 63.5 Device Char
16、acteristic Performance Test 83.6 Device Opening Time Test . 93.7 Device Filling Time Test 9Figure 3 10Figure 4 10Figure 5 . 11Section IV 124.0 Detailed Requirements . 124.1 Materials . 124.2 Documentation . 124.3 Markings . 12 Section V . 135.0 Definitions . 13Positive Pressure Reduction Devices for
17、 Sanitary Drainage Systems 1 ASSE Standard #1030-2016 Performance Requirements for Positive Pressure Reduction Devices for Sanitary Drainage Systems Section I 1.0 General 1.1 Application Positive pressure reduction devices (herein referred to as “device”) are to be used in building drainage waste an
18、d vent (DWV) systems. They are intended to reduce the impact of short duration air pressure transients that arise in DWV networks through use. They are not intended to have any effect on long duration or steady-state offsets in air pressure. 1.2 Scope 1.2.1 Description See Figure 1 for a simple arra
19、ngement of components. The device consists of a variable volume reservoir contained within a ventilated rigid outer casing with an inlet connection by which the reservoir inflates when subjected to positive pressure. In its inactive state, the flexible reservoir is deflated. Expansion only occurs in
20、 response to an increase in line pressure at the entrance to the device. This expansion provides a variable volume reservoir for air. The device connects to the drainage network via an airtight seal to prevent the diversion of airflow from entering the reservoir. As a result, the reservoir becomes a
21、n integral part of the drainage network. Figure 1 Components Expansion of any surface of reservoir in any direction Rigid ventilated outer casing Variable volume reservoir Connection to DWV system2 Positive Pressure Reduction Devices for Sanitary Drainage Systems ASSE Standard #1030-2016 1.3 Require
22、ments 1.3.1 Temperature The device shall function at temperatures from -40.0 F to 150.0 F (-40.0 C to 65.6 C). 1.3.2 Pressure The device shall remain air tight up to an applied pressure differential of 5.0 psi (34 kPa). 1.3.3 Device Opening Time When subjected to a Standardized Test Positive Pressur
23、e Wave, the device shall open within 10 milliseconds (see Figure 5). The opening time of the device is defined as the time difference between the initial wave identification traveling toward the device on test, and the first subsequent pressure reduction wave arriving at the transducer, as a reflect
24、ion of the opening reservoir volume minus the pipe period of 62.5 msec. These times are determined from the graph of data recorded from Transducer #2. Opening time may be determined from time “A,” 62.5 msec, as shown on Figure 5. (Note that volumes already open due to defective construction will hav
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