PPI TN-27-2009 Frequently Asked Questions HDPE Pipe for Water Distribution and Transmission Applications《配水和水传输应用中使用的HDPE管的常见问题》.pdf
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1、 PPI TN-27/2009 Frequently Asked Questions HDPE Pipe for Water Distribution and Transmission Applications 2 PPI TN-27: Frequently Asked Questions HDPE Pipe for Water Distribution and Transmission Applications Foreword This report was developed and published with the technical help and financial supp
2、ort of the members of the PPI (Plastics Pipe Institute, Inc.). The members have shown their interest in quality products by assisting independent standards-making and user organizations in the development of standards, and also by developing reports on an industry-wide basis to help engineers, code
3、officials, specifying groups, and users. The purpose of this technical note is to provide answers to commonly asked questions about use of HDPE (high density polyethylene) piping systems for water applications. This report has been prepared by PPI as a service to the industry. The information in thi
4、s report is offered in good faith and believed to be accurate at the time of its preparation, but is offered without any warranty, expressed or implied, including WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. Any reference to or testing of a particular proprietary product shoul
5、d not be construed as an endorsement by PPI, which does not endorse the proprietary products or processes of any manufacturer. The information in this report is offered for consideration by industry members in fulfilling their own compliance responsibilities. PPI assumes no responsibility for compli
6、ance with applicable laws and regulations. PPI intends to revise this report from time to time, in response to comments and suggestions from users of the report. Please send suggestions of improvements to PPI. Information on other publications can be obtained by contacting PPI directly or visiting t
7、he web site. The Plastics Pipe Institute, Inc. http:/www.plasticpipe.org November 2009 3 PPI TN-27: Frequently Asked Questions HDPE Pipe for Water Distribution and Transmission Applications INDEX Page A. General 3 B. Engineering Properties similarly, the working pressure rating for PVC DR 18 is 120
8、psig per AWWA C900-07, Equation 4. As such, PE 4710 has a higher working pressure rating than PVC at these common conditions. A summary is shown below: Working Pressure Rating (WPR) for HDPE and PVC per answer to Q. 13 WPR for PVC DR 18 per C900-07 WPR for PE 4710 DR 17 per C901-08 120 psig 125 psig
9、 5 Also, based on AWWA C900-07, Example B.2 modified with 5 fps recurring surge velocity, the estimated number of cycles to failure for the DR18 PVC pipe is less than 1 million cycles and the Fatigue Life is about 20 years which is less than half of the 50 year Design Life that was required in the e
10、xample; in addition, the assumed 55 cycles per day may not be adequate; assuming 1 surge cycle every 15 minutes (96 cycles per day) and the 5 fps recurring surge velocity results in a Fatigue Life of about 11 years. On the other hand, IGN 4-37-02, “Design Against Surge and Fatigue Conditions for The
11、rmoplastic Pipes”, can be used to show that under the same conditions, an HDPE DR17 pipe has a fatigue life of 10,000,000 cycles or in excess of 100 years. This striking difference is due to HDPEs toughness and fatigue resistance. Q. 14 Where can I find engineering properties such as the modulus and
12、 tensile strength values for HDPE pipes? Engineering data for HDPE pipes may be found in Chapter 3 of the PPIs Handbook* of Polyethylene Pipe, 2nd ed. Q. 15 Do I have to be concerned with the long-term effects of creep? All plastic materials, including HDPE and PVC, are subject to creep. Proper desi
13、gn, such as using the long-term modulus of the material where appropriate, accounts for creep effects. Q. 16 Is there a flow loss in HDPE pipe due to the inner bead resulting from the butt fusion process? The fusion bead has very little effect on the flow as it is basically rounded and protrudes ver
14、y little on the inside surface of the pipe Secondly, the Hazen-Williams C-factor of 150 takes into account the inner bead. Field tests confirm that a 150 C- factor used in the Hazen- Williams equation properly calculates actual flow and that the bead is of no hydraulic significance for either pressu
15、re or flow. The Hazen-Williams Friction Factor, C, for PE pipe was determined in a hydraulics laboratory using heat fusion joined lengths of pipe with the inner bead present. Q. 17 Will sunlight adversely affect HDPE pipe? Sunlight is not a concern if black pipe is used. Carbon black, utilized in mo
16、st all HDPE pipe is the most effective ultraviolet stabilizer and therefore, black is the recommended pipe color for exposed long term service or storage. Pipe of this color will provide decades of outdoor use similar to that of black power-line cable jacketing. HDPE pipe produced in non-black color
17、s may also be supplied for outdoor exposure (storage and use) but its life expectancy is much less and is usually specified for a particular time period. Questions on this topic should be referred to the pipe manufacturer. Q. 18 What is the life expectancy of HDPE pipe in water applications? Many in
18、stallations of HDPE pipe in water applications are already reaching 50 years of successful service. The polyethylene pipe industry estimates a service life for HDPE pipe to conservatively be 50-100 years. This relates to savings in replacement costs for generations to come. Q. 19 Will HDPE pipe floa
19、t in water? Yes, HDPE pipe, due to its density being slightly less than water, will float even when full of water. When it is desired to ensure flotation of the line, various forms of collars, saddles, and strap-on flotation devices are available. For underwater anchored pipeline installations, it i
20、s important to specify the proper weights and spacing of the weights. Screw-anchors are a practical alternative. Whenever possible, an underwater pipeline should be installed in a trench with protective crushed rock cover. Refer to Chapter 10 of the PPI Handbook of Polyethylene Pipe, 2nd ed. Q. 20 W
21、hat is the max-min temperature range across which HDPE pipe for water pressure applications may be used? HDPE pipes typical operating temperature range is from -40oF (-400C) to 140oF (60oC) although some products may be pressure rated for service as high as 180oF (82oC). Since water freezes below 32
22、oF (00C) the practical lower temperature limit for water is 32oF (0oC). Consult with the pipe producer for information on applications. Q. 21 When using HDPE pipe, will the pipe deliver the same flow-rate as the modestly larger ID ductile-iron pipe with the same outside diameter? The inside surface
23、of HDPE pipe is devoid of any 6 roughness which places it in the “smooth pipe” category, a category that results in the lowest resistance to fluid flow. For water applications, HDPE pipes Hazen and Williams C factor for design is 150 and does not change over time. In contrast, the C factor for iron
24、pipe and other traditional piping products declines dramatically over time due to corrosion and tuberculation or biological build-up. In view of these advantages, it is often possible to utilize HDPE pipe of smaller inside diameter than Ductile Iron pipe, and still achieve or exceed the projects req
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