Condition assessment for wastewater pipelines : synthesis report / by Sunil K. Sinha [and six others].

The research results presented in this report were compiled to provide a clearer understanding of the state of the technology for wastewater pipeline condition assessment methodologies and technologies, focusing primarily on the geographic regions of the U.S.A. An extensive literature review was per...

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Bibliographic Details
Main Author: Sinha, Sunil K., 1962- (Author)
Other Authors: Thuruty, Nisha, Hadden, Kevin
Format: eBook
Language:English
Published: Alexandria, VA : London : WERF ; IWA Publishing, 2013.
Subjects:
Online Access:Click for online access

MARC

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072 7 |a TQSW  |2 thema 
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100 1 |a Sinha, Sunil K.,  |d 1962-  |e author. 
245 1 0 |a Condition assessment for wastewater pipelines :  |b synthesis report /  |c by Sunil K. Sinha [and six others]. 
264 1 |a Alexandria, VA :  |b WERF ;  |a London :  |b IWA Publishing,  |c 2013. 
300 |a 1 online resource 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
500 |a "INFR9SG09caww, INFR10SG09caww." 
500 |a "Final Report"--Cover 
500 |a Electronic book text. 
520 |a The research results presented in this report were compiled to provide a clearer understanding of the state of the technology for wastewater pipeline condition assessment methodologies and technologies, focusing primarily on the geographic regions of the U.S.A. An extensive literature review was performed, covering conference papers, journal articles, vendor literature, and major reports. Additionally, approximately 50 detailed case studies describing utility wastewater pipeline condition assessment practices were created using information data mined directly from participating utilities. The information gathered through literature review and data mining was compiled and synthesized, regarding the state of condition assessment of domestic wastewater pipelines, recommendations for further research and industry needs, and a description of trends found. Trends in technology use and practices were summarized, cost issues were discussed, and the gaps between needs and available technologies were presented. Additionally, this report proposes a standard data structure for utilities to use for reporting purposes when conducting condition assessment of wastewater pipes. The collection of the information presented in the proposed standard data structure for utility reporting would provide the data needed to greatly improve utility operating processes and to more easily direct research toward industry needs. 
588 0 |a Online resource; title from digital title page (viewed on September 11, 2019). 
505 0 |a Cover; Copyright; Acknowledgments; Abstract and Benefits; Table of Contents; List of Tables; List of Figures; List of Abbreviations and Acronyms; Executive Summary; Chapter 1.0: Introduction; 1.1 Introduction; 1.2 Water Infrastructure Database (WATERiD); 1.3 Condition Assessment of Wastewater Pipelines; 1.4 Methodology Overview; 1.5 Synthesis Report Objectives; Chapter 2.0: Analysis and Synthesis of Literature and Practice; 2.1 Analysis and Synthesis; 2.2 Definition of Condition Assessment; 2.3 Technology Use; 2.3.1 Analysis of Pipe Characteristics 
505 8 |a 2.3.2 Analysis of Condition Assessment Techniques Used2.3.3 QA/QC; 2.3.4 Geographical Trends; 2.4 Practices Related to Condition Assessment; 2.4.1 Drivers for Condition Assessment Technique Selection; 2.4.2 Data Management; 2.5 Cost; 2.6 Gaps Between Needs and Available Technologies; 2.7 Key Lessons and Tips for Success; Chapter 3.0: Recommendations and Standard Data Structure; 3.1 Proposed Standard Data Structure; 3.2 Need for Standard Data Structure; 3.3 Proposed Data Structure Parameters; 3.3.1 Utility Name; 3.3.2 Utility Location; 3.3.3 Utility Population Served 
505 8 |a 3.3.4 Project Location Description3.3.5 Project Start Date and Project End Date; 3.3.6 Total Project Cost; 3.3.7 Pipeline Material; 3.3.8 Pipeline Internal Diameter; 3.3.9 Pipeline Installation Year; 3.3.10 Pipeline Length; 3.3.11 Pipeline Type; 3.3.12 Consultant; 3.3.13 Contractor; 3.3.14 Technology Vendor; 3.3.15 Technology Used; 3.3.16 Product Used; 3.3.17 Defects Found; 3.3.18 Known Environmental Characteristics; 3.3.19 Success of Project; 3.3.20 Comments; 3.4 Benefits of Use of the Standard Data Structure; 3.4.1 Usefulness at Different Managerial Levels within a Utility 
505 8 |a 3.4.2 Usefulness for Detecting Broad TrendsChapter 4.0: Conclusions and Recommendations; 4.1 Conclusions; 4.2 Recommendations and Future Work; Appendix A: Pipeline Condition Assessment; Appendix B: State-of-the-Art Literature Review; Appendix C: State-of-the-Art Practice Review; Appendix D: Technological and Geographical Utility Practice Data Gap Analysis; Appendix E: Example of a Technology Profile in WATERiD; Appendix F: Example Technology Data Sheet; Appendix G: Example Case Study; Appendix H: Table of Reports and Literature Sources Reviewed; References 
650 0 |a Sewerage. 
650 0 |a Pipelines. 
650 0 |a Sanitary engineering. 
650 7 |a sewers (drainage structures)  |2 aat 
650 7 |a sanitary engineering.  |2 aat 
650 7 |a Pipelines  |2 fast 
650 7 |a Sanitary engineering  |2 fast 
650 7 |a Sewerage  |2 fast 
700 1 |a Thuruty, Nisha. 
700 1 |a Hadden, Kevin. 
758 |i has work:  |a Condition assessment for wastewater pipelines (Text)  |1 https://id.oclc.org/worldcat/entity/E39PCFvGvwj4fRrx3BjW6jKRPP  |4 https://id.oclc.org/worldcat/ontology/hasWork 
856 4 0 |u https://ebookcentral.proquest.com/lib/holycrosscollege-ebooks/detail.action?docID=3121252  |y Click for online access 
903 |a EBC-AC 
994 |a 92  |b HCD