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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2017. Interpreting the Results of Airport Water Monitoring. Washington, DC: The National Academies Press. doi: 10.17226/24752.
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Page 121
Page 122
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2017. Interpreting the Results of Airport Water Monitoring. Washington, DC: The National Academies Press. doi: 10.17226/24752.
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Page 122

Below is the uncorrected machine-read text of this chapter, intended to provide our own search engines and external engines with highly rich, chapter-representative searchable text of each book. Because it is UNCORRECTED material, please consider the following text as a useful but insufficient proxy for the authoritative book pages.

121 Bureau of Reclamation and U.S. Department of Agriculture (2001). Water Measurement Manual. Burton, A. and R. Pitt (2001). Stormwater Effects Handbook: A Toolbox for Watershed Managers, Scientists, and Engineers. Lewis Publishers. Retrieved from www.epa.gov/ednnrmrl/publications/books/handbook/ index.htm. Canadian Council of Ministers of the Environment (2007). Canadian Environmental Quality Guidelines. Canada. Chernick, M. (1999). Bootstrap Methods: A Practitioner’s Guide. New York: John Wiley & Sons, Inc. Chow, V. T., D. R. Maidment, and L. W. Mays (1988). Applied Hydrology. New York: McGraw-Hill, Inc. Cohn, T. (1988). Adjusted Maximum Likelihood Estimation of the Moments of Lognormal Populations from Type I Censored Samples. Open-File Report 88-350. U.S. Geological Survey. Devore, J. (1995). Probability and Statistics for Engineering and the Sciences. Fourth Edition. Pacific Grove, CA: Brooks/Cole Publishing Co. Efron, B. and R. Tibishirani (1993). An Introduction to the Bootstrap. New York: Chapman & Hall. Frenzel, F., H. Grothey, C. Habersetzer, M. Hiatt, W. Hogrefe, M. Kirchner, G. Lütkepohl, W. Marchewka, U. Mecke, M. Ohm, F. Otto, et al. (2011). Industrial Flow Measurement Basics and Practice. ABB Automation Products GmbH. Geosyntec Consultants and Wright Water Engineers (2013). International Stormwater Best Management Practices (BMP) Database Advanced Analysis: Influence of Design Parameters on Achievable Effluent Concentrations. Gilbert, R. (1987). Statistical Methods for Environmental Pollution Monitoring. New York, NY: Van Nostrand Reinhold Company. Granato, G. E. (2006). Kendall-Theil Robust Line (KTRLine—version 1.0): A Visual Basic Program for Calculating and Graphing Robust Nonparametric Estimates of Linear-Regression Coefficients Between Two Continuous Variables. Techniques of Water-Resources Investigations Reports, Book 4 (Chapter A7). U.S. Geological Survey. Retrieved from pubs.usgs.gov/tm/2006/tm4a7/. Helsel, D. R. (2005). Nondetects and Data Analysis: Statistics for Censored Environmental Data. Hoboken, NJ: John Wiley and Sons, Inc. Helsel, D. R. and T. A. Cohn (1988). Estimation of Descriptive Statistics for Multiply Censored Water Quality Data. Water Resources Research, 24(12), 1997–2004. Helsel, D. R. and R. M. Hirsch (2002). Statistical Methods in Water Resources. Techniques of Water-Resources Investigations Reports, Book 4 (Chapter A3). U.S. Geological Survey. Retrieved from pubs.usgs.gov/ twri/twri4a3/. Hirsch, R. M. and J. R. Stedinger (1987). Plotting Positions for Historical Floods and Their Precision. Water Resources Research, 23(4), 715–727. Interstate Technology and Regulatory Council (2013). Groundwater Statistics and Monitoring Compliance, Sta- tistical Tools for the Project Life Cycle. GSMC-1. Washington, D.C. Retrieved from www.itrcweb.org/gsmc-1/. Kroll, C. N. and J. R. Stedinger (1996). Estimation of Moments and Quantiles Using Censored Data. Water Resources Research, 32(4), 1005–1012. Maestre, A., R. Pitt, S. Durrans, and S. Chakraborti (2005). Stormwater Quality Descriptions Using the Three Parameter Lognormal Distribution. Models and More for Urban Water Systems, Monograph 13. W. James, K. N. Irvine, E. A. McBean, and R. E. Pitt (eds.). Guelph, Ontario: CHI. McGill, R., J. Tukey, and W. Larsen (1978). Variations of Box Plots. The American Statistician, 32(1), 12–16. Nolan, K. and R. Shields (2000). Measurement of Stream Discharge by Wading. USGS Water-Resources Investigations Report 2000-4036, presentation. Sauer, V. B. and R. W. Meyer (1992). Determination of Error in Individual Discharge Measurements. V. B. Sauer and R. W. Meyer. Open-File Report 92-144. U.S. Geological Survey. References

122 Interpreting the Results of Airport Water Monitoring Sharma, M., E. McBean, and N. Thomson (1995). Maximum Likelihood Method for Parameter Estimation in Linear Model with Below-Detection Data. Journal of Environmental Engineering, 121(11), 776–784. Shumway, R., R. Azari, and M. Kayhanian (2002). Statistical Approaches to Estimating Mean Water Quality Concentrations with Detection Limits. Environmental Science & Technology, 36(15), 3345–3353. Singh, A., and J. Nocerino (2001). Robust Estimation of Mean and Variance Using Environmental Data Sets with Below Detection Limit Observations. U.S. EPA, Clearance No. 01-062. Spitzer, D. W. and R. Furness (2008). Field Report: New Aspects of Flow Measurement Errors in Large-Diameter Pipes. Journal (American Water Works Association), 100(7), 54–59. U.S. EPA (1994). The Water Quality Standards Handbook, Second Edition. U.S. EPA (1998). EPA Guidance for Quality Assurance Project Plans. EPA QA/G-5. Washington D.C., February. U.S. EPA (2010). NPDES Permit Writers’ Manual. September. U.S. EPA (2014). National Functional Guidelines for Inorganic Superfund Data Review. Office of Superfund Remediation and Technology Innovation. August. U.S. EPA (2015). NPDES Multi-sector General Permit for Stormwater Discharges Associated with Industrial Activity. June. Van Buren, M. A., W. E. Watt, and J. Marsalek (1997). Application of the Log-normal and Normal Distributions to Stormwater Quality Parameters. Water Research, 31(1), 95–104.

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TRB's Airport Cooperative Research Program (ACRP) Research Report 166: Interpreting the Results of Airport Water Monitoring provides comprehensive guidance and a set of tools that operators of airports of varying sizes can use to understand, diagnose, and interpret airport water quality. This guidebook addresses water leaving the airport that does not go to an off-site treatment facility. Accompanying the report are the following tools to assist practitioners in diagnosing root causes and possible sources of specific problems that may require attention or mitigation:

Disclaimer - This software is offered as is, without warranty or promise of support of any kind either expressed or implied. Under no circumstance will the National Academy of Sciences, Engineering, and Medicine or the Transportation Research Board (collectively "TRB") be liable for any loss or damage caused by the installation or operation of this product. TRB makes no representation or warranty of any kind, expressed or implied, in fact or in law, including without limitation, the warranty of merchantability or the warranty of fitness for a particular purpose, and shall not in any case be liable for any consequential or special damages.

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