Hemoglobin (protein within the red blood cells that carries oxygen to organs and tissues, and carbon dioxide back to the lungs) Platelets (the substances that control the clotting of the blood) White blood cells (immune system cells in the blood) Michael has relied on searching out appropriate technical literature and finding solutions to apply in solving practical groundwater problems, especially related to well hydraulics.Red blood cells (cells responsible for carrying oxygen throughout the body) This has led to a keen interest in understanding and solving the nuances of pumping tests and well testing in particular, where observation wells may be limited or unavailable, forcing more of a focus on analysis of the drawdown and recovery occurring in pumping wells and injection wells. Understanding well hydraulics has been a passion for Michael since being asked as a young engineer to run his first pumping test and develop a dewatering approach for a new nuclear power station in the UK. He gained experience in the UK, Europe, Africa and Asia before moving to Seattle in 1985 where he has been able to hone the application of hydrogeologic methods to groundwater issues in the Pacific Northwest and within the Americas. Michael Kenrick, PE, PhD is trained as a civil engineer and hydrogeologist who has developed his practical skills and applied knowledge over a long career in a number of market areas including groundwater resources, water supply, stormwater infiltration, dewatering for the mining and construction industries, and environmental work. Bring your questions to the webinar and present them to the instructor and other participants for exploring the best solution. Discussion is planned following the webinar for those who want to continue the session. * This webinar is eligible for the 'BUY THREE, GET THREE' discount however ANY webinar series discount shown above cannot be combined with it.Īttendees will be invited to actively participate during this live and interactive on-line web seminar. Instructions for ordering certificates are given during the webinar. The Certificate is optional and may be ordered separately following the webinar to confirm your attendance and showcase the certificate on your office wall. We ask your on-site coordinator to return the completed and signed copy of the Form to us following the webinar for (1) maintaining a separate copy as a service to attendees and (2) forwarding to NIU confirming attendance for those who order certificates.Īttendees may also order an official a Course Completion Certificate from Northern Illinois University for a small administrative fee. (no restrictions on time limit for extra Q&A!)Įarn 1.5 Professional Development Hours (1.5 PDH)Ī Record of Attendance Form is included free with each webinar for your record keeping and individual PDH verification. When Members register for Two-or-more modules, When Members register for the Entire Series, Whether you want to apply aquifer pumping tests to hydrogeologic characterization, water supply development or remediation design, this Online-Offline Course will provide attendees with information that is not available elsewhere on the web. That presents key insights about aquifer pumping tests Register now for this unique online-offline course Choosing the flow device that's right for the projectĬonfirm your knowledge after the course module with a self-test.Strategies for controlling the flow rate.The aquifer storage coefficient can also be estimated. Field analysis of step drawdown tests are discussed and evaluated in order to produce an optimum constant-rate test program and a comprehensive pumping test approach.Īlthough step drawdown tests are commonly used for optimizing the constant-rate testing program, step drawdown tests can also be used to determine the aquifer transmissivity and the well loss component of the drawdown in the pumped well. This specialized testing strategy is a pumping test in which the drawdown in the pumping well is observed while the discharge rate from the well is increased in a step-wise manner. MODULE TWO introduces the fundamentals of step drawdown testing.
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