Paper ID #11226USACE’S COASTAL ENGINEERING CERTIFICATE PROGRAMMr. Jose E. Sanchez P.E., Coastal and Hydraulics Laboratory Mr. Jos´e E. S´anchez is the Director of the Coastal and Hydraulics Laboratory (CHL) at the U.S. Army Engineer Research and Development Center (ERDC) in Vicksburg, MS. ERDC R&D supports the Depart- ment of Defense and other federal agencies in military and civilian projects. Principal research mission areas include Warfighter support, installations, environment, water resources, and information technology. CHL is the national laboratory for the specialized professional field of coastal and
that our newly developed laboratory made contributions in enhancingstudent intelligent control design skills on the soft side, which is highly demanded for a 21stcentury and future engineer.I. IntroductionControl course is a classic but also a difficult course in engineering education. With the energysaving revolution in progress, it is playing a more important role in engineering curriculum.Since a control course mainly focuses on theoretical and abstract subjects, it is very challengingfor an instructor to attract and keep our students’ interest when teaching it. Active learning is aneffective pedagogy to support student learning. It involves providing opportunities for studentsto meaningfully talk and listen, write, read, and reflect on the
Paper ID #10174A Laboratory Exercise - Unmanned Vehicle Control and Wireless Sensor Net-worksDr. Lifford McLauchlan, Texas A&M University, Kingsville Dr. Lifford McLauchlan completed his Ph.D. at Texas A&M University, College Station. After spending time in industry, he has returned to academia. He is an associate professor at Texas A&M University -Kingsville in the Electrical Engineering and Computer Science Department. His main research interests include controls, robotics, education, adaptive systems, intelligent systems, signal and image process- ing, biometrics and watermarking. He is the current chair of
mental models with others’, noticing differences and explicitly spelling outassumptions [16, 17, 18].In understanding previous work, the goal of the instructors was to bring previously documentedsuccessful pedagogies to use in teaching hydrodynamics concepts to first year engineeringstudents with the intention of improving students’ ability to grasp the high level concepts over thecourse of one lecture before moving on to a laboratory environment to experiment and reinforcethe concept knowledge.MethodsThe collaborative lectures are taught with students working in small groups. We use a flexibleclassroom that has movable tables and chairs, and we have the students help us rearrange thefurniture (if needed) according to the diagram in Fig. 1. This
Paper ID #32302Teaching in the Era of COVID-19: A Reinvented Course Project for anOcean Engineering CourseDr. Maija A Benitz, Roger Williams University Dr. Maija Benitz is an Assistant Professor of Engineering at Roger Williams University, where she has taught since 2017. Prior to joining RWU, Benitz taught at the Evergreen State College in Olympia, WA, after completing her doctoral work jointly in the Multiphase Flow Simulation Lab and the Wind Energy Center at UMass Amherst. She teaches in the first-year curriculum, as well as thermodynamics, sustain- able energy, fluid mechanics, and ocean engineering. Benitz is a
-Capacitor (RLC) circuit to the standard 2nd order system transfer function incontrol course. This laboratory also teaches students about an application of standard 2nd ordertransfer function that they would see in their career. Students determine the 2nd order modelingfor a linear time invariant system. They exercise how the location of poles can be changed basedon the variation of damping ratio and natural frequency parameters. These responses illustrate asover damped, under damped, undamped, and critically damped. They learn about the impact ofdamping ratio and natural frequency responses on the step and the frequency responseperformances. In the second part of this laboratory students estimate the system parameters froma given time domain
undergraduate students [6-8, 12].A natural and efficient way of teaching renewable energy into curriculum is the project-basedapproach, shaping the course content to local industry fields. Course content and deliverymethods should be structured to meet the demands and challenges of such a dynamic,interdisciplinary and complex applied science field. Laboratory work is a critical component ofthe engineering education, and a core component of technical programs. Unfortunately, in therenewable energy case, the equipment is expensive, in terms of acquisition and maintenance,requiring adequate space and utility access. To cope with such challenges we are proposing inthe next academic year to develop a virtual renewable energy laboratory, consisting of
Paper ID #12157A New Coastal Engineering Graduate ProgramDr. Robert W. Whalin, Jackson State University Dr. Robert W. Whalin, Professor of Civil and Environmental Engineering, and Director, Coastal Hazards Center, Jackson State University. He is Director Emeritus of the Engineer Research and Development Center, Vicksburg, MS. He received his PhD in Oceanography from Texas A&M University in 1971 and is a Registered Professional Engineer. Dr. Whalin was Director of Army Research Laboratory (1998- 2003; Adelphi, MD), and Technical Director /Director of Waterways Experiment Station (1985-1998; Vicksburg, MS). He has
one decade ago. However, itwas the rise of mobile devices what pushed new dynamics at the classroom which werepreviously inconceivable, modifying the way of both teaching and learning, especially at K12level. Actual mobile devices give the flexibility and the easy-to-use requirements one-to-oneand group interactions always dreamed by teaching innovators. Authors like Murray andOlcese18 link the collaborative possibilities offered by the iPad with the competences neededby students this century, emphasizing the need to use modern learning models. By contrast,technological tools have usually been used in simulation environments, laboratory practicesor as basic tools for creating either work or reports in higher education, regardless the
Paper ID #33040A Curriculum on Naval Science & Technology for a Midwestern UniversityDr. James Buchholz, University of Iowa James Buchholz is an Associate Professor of Mechanical Engineering at the University of Iowa. He received the Bachelors and Masters degrees in Mechanical Engineering from the University of Alberta, and the Ph.D. degree in Mechanical and Aerospace Engineering from Princeton University. He teaches courses in fluid mechanics and conducts research in unsteady aerodynamics and hydrodynamics.Dr. Jae-Eun Russell, University of Iowa Dr. Russell serves as the Director of Research & Analytics Office of
has been a licensed professional engineer for over twenty years and worked primarily in the aerospace and biomedical engineering fields. He has utilized the capabilities of additive manufacturing for over a decade, originally applying it to space suit and helicopter centered projects. At the Academy, he teaches design courses that include lessons on solid modeling, and additive manufacturing as well as classic subtractive methods such as accomplished with a mill or lathe. He earned his B.E. and M.E. at The Cooper Union, and his Ph.D. at Rutgers University. All are in mechanical engineering.Mary Shalane Regan, U.S. Coast Guard Academy Shalane Regan is a native of Massachusetts and currently resides in Connecticut
space to support the minor. Will additional space be needed or can the existing spaces be scheduled to accommodate the new class offerings ● Flexibility of teaching assignments allowing faculty to conduct classes with very low enrollment, especially in the first few program years. ● Financial support for laboratory equipment, supplies, and transportation for field tripsIn our case, most of the initial costs were absorbed by creative scheduling of classroom space,strategic faculty hiring, and supplementary (adjunct) teaching contracts for new courses withsmall enrollments. The remainder of the program initiation costs were covered throughcollaboration with supporting industry and institutions. For example, the cost
Paper ID #26161Assessment of Concept Mapping Models and Structured Content ModelsDr. Mysore Narayanan, Miami University DR. MYSORE NARAYANAN obtained his Ph.D. from the University of Liverpool, England in the area of Electrical and Electronic Engineering. He joined Miami University in 1980 and teaches a wide variety of electrical, electronic and mechanical engineering courses. He has been invited to contribute articles to several encyclopedias and has published and presented dozens of papers at local, regional , national and international conferences. He has also designed, developed, organized and chaired several
Paper ID #25088Problem-based Learning As A Pedagogy For Individual Students - Quanti-fying The Long-term Effects of Land Subsidence and Rising Sea Levels InCoastal Areas For Greater Student EngagementDr. Sanjay Tewari, Missouri University of Science & Technology Dr. Tewari is Assistant Teaching Professor of Civil Engineering at the Missouri University of Science & Technology, Rolla, MO. Prior to joining Missouri S&T, he worked as Assistant Professor at Louisiana Tech University. He earned his Bachelor of Engineering (Civil Engineering) and Master of Technology (Chemical Engineering) in India. He later joined Texas
observation from these responses is that while the students might have learned an adequate level of math and science at school they have not yet gathered enough insights and intuition into how they can apply their knowledge to solving real-world problems. This suggests that teaching the students very complex math and science concepts alone in an isolated framework does not appear to adequately promote their interests in math and science. Rather, it is the application of science in terms of interesting, problem-solving projects that captures the students’ interests in math and science. We believe that once we have captured their interests, the effect is perpetuating. In terms of teaching, the effectiveness of the
teaching classes in the area of mechatronics and computer aided engineering. Her research Interests are: mechatronics, marine mechatronics systems education, product lifecycle management, manufactur- ing systems, engineering education.Dr. Petros J Katsioloudis, Old Dominion University Petros J. Katsioloudis is an Associate Professor, Department Co-Chair and the Industrial Technology Program Leader, Department of STEM Education and Professional Studies, Old Dominion University, Norfolk, VA. His research focuses on improving teacher and student performance in STEM education, and enhancing the development of a national STEM-educated workforce.Dr. Mileta Tomovic, Old Dominion University Dr. Tomovic received BS in Mechanical
-inventor on 3 US patents related to control systems. Dr. McLauchlan is a member of ASEE and was previously the Chair of the Ocean and Marine Engineering Division and is now the Past Chair. He is also a member of IEEE (senior member), SPIE, Eta Kappa Nu, ACES and Tau Beta Pi, and has served on the IEEE Corpus Christi Section Board from 2004-2010 as Chair, Vice Chair, Secretary and Director. Dr. McLauchlan has received the Dean’s Distinguished Service Award twice and the Dean’s Outstanding Teaching Award once for the College of Engineering at Texas A&M University-Kingsville.Dr. Mehrube Mehrubeoglu, Texas A&M University, Corpus Christi Dr. Mehrubeoglu received her B.S. degree in Electrical Engineering from The
AC 2011-2555: THE MATE CENTER: ADDRESSING THE NEED FOR AQUALIFIED OCEAN WORKFORCEDeidre Sullivan, Marine Advanced Technology Education Center Deidre Sullivan Director Marine Advanced Technology Education (MATE) Center Biography Deidre Sullivan is the PI and Director of the Marine Advanced Technology Education (MATE) Center at Monterey Peninsula College (MPC) in Monterey, CA. Deidre conducts workforce research related to marine and geospatial technologies. Deidre is also the department chair for the Marine Science and Technology program at Monterey Peninsula College and teaches courses in seaflooring mapping, GIS, and the Earth and marine sciences. Deidre received her undergraduate degree in Aquatic Biology and
. degree in aeronautical engineering. Her research interest is in thermo-fluid sciences with applications in micro-combustion, fuel cells, green fuels and plasma assisted combustion. Dr. Husanu has prior industrial experience in aerospace engineering that encompasses both theoretical analysis and experimental inves- tigations such as designing and testing of propulsion systems including design and development of pilot testing facility, mechanical instrumentation, and industrial applications of aircraft engines. Also, in the past 8 years she gained experience in teaching ME and ET courses in both quality control and quality assurance areas as well as in thermal-fluid, energy conversion and mechanical areas from various
Paper ID #22450A Naval Hydrodynamics Undergraduate Curriculum for the Midwestern UnitedStatesProf. James Buchholz, University of Iowa James Buchholz is an Associate Professor of Mechanical Engineering at the University of Iowa. He received the Bachelors and Masters degrees in Mechanical Engineering from the University of Alberta, and the Ph.D. degree in Mechanical and Aerospace Engineering from Princeton University. He teaches courses in fluid mechanics and conducts research in unsteady aerodynamics and hydrodynamics.Prof. Pablo M. Carrica, University of Iowa P. M. Carrica is a professor with the Department of Mechanical
EDUCATION AND TRAININGAbstractCombining teaching, research, and engagement has always been a goal of EngineeringTechnology faculty. Finding “real world” applications which can be implemented at theundergraduate level has always proved challenging as well. One method of achieving thisis to define an application area which can be managed by responsible faculty and whichcan be broken into small enough tasks to be suitable for completion by succeeding yearsof undergraduate students in their capstone design activity.At Western Carolina University and Florida Institute of Technology, a project has beenundertaken which is achieving many of these goals. The Kamikaze AutonomousUnderwater Vehicle (AUV) is currently under continuous
institute at OU. He earned his bachelors degree in Mechanical Engineering at University of Maryland Eastern Shore where he worked on several academical and research projects.Dr. Abhijit Nagchaudhuri, University of Maryland, Eastern Shore Abhijit Nagchaudhuri is a Professor in the Department of Engineering and Aviation Sciences at Univer- sity of Maryland Eastern Shore. Dr. Nagchaudhuri is a member of ASME and ASEE professional so- cieties and is actively involved in teaching and research in the fields of engineering mechanics, robotics, and control systems; precision agriculture and remote sensing; and biofuels and renewable energy. Dr. Nagchaudhuri received his bachelors degree from Jadavpur University in Calcutta
with creating a research project from inception.When completed, this water tunnel will serve as a tool for classroom and laboratorydemonstrations in undergraduate-level courses related to fluid mechanics, as well as a resource inperforming undergraduate research on a small scale. One of the capabilities of this device will beinterchangeable test section models. This will allow for a variety of applications to differentcourse topics and research ideas. The portability of the device will allow for use in a typicalclassroom setting rather than requiring a separate laboratory space, which should facilitate morefrequent use in demonstrations.This paper provides an overview of the primary aims of this senior design project, detailing theways in
error detection in patient radiation therapy treatment plans. In his spare time, Dr. Kump works to combine his research with his love of electronic music performance and production by teaching machines the craft of songwriting. With extensive course and curriculum design experience, including Maritime College courses Signals and Systems, Machine Learning, and Programming for Engineers, Dr. Kump is continuously committed to developing an electrical engineering program that best prepares students for the ever-changing demands of industry leaders. Dr. Kump’s teaching interests include alternative methods of content delivery, for example, with online education and classroom flipping. He has been recognized by Open
Management (2010). In 2002, he becomes Dr. Eng. (Ph.D degree) of Pet- rosani University, Romania and now he is professor at ”Lucian Blaga” University of Sibiu - Romania, Faculty of Engineering, Department of Industrial Engineering and Management, Romania. His teaching subjects are Ergonomics, Management, Human Resources Management, Occupational Health and Safety Management, Production Systems Engineering. His research fields of interest are linked with the impact of the knowledge based society upon the social / human dynamics / evolution and the production systems. He regularly publishes and participates on international scientific conferences. Lucian Cioca is the Ad- ministrator of the LBUS Department of Consulting
engineering students, university faculty and staff in principles ofresilience for both built and natural coastal infrastructure through formal education. The project alsohelps educate members of the community by teaching first responders and other professionals throughinformal education through conferences, workshops, seminars, lectures and short courses in resilientcoastal infrastructure. Educators also work with partners who focus on resilience of coastal andisland communities. All the island of Puerto Rico is considered coastal environment. Over 400,000people live within 1 km of coasts and 44 municipalities with over 60% of the island population areat the coast. A tremendous amount of the critical civil infrastructure like airports, seaports
a system; however,they do not teach the tools that are needed to know how to integrate these concepts togetherduring the system development process. The downfall reflects in the student when theycannot develop a successful senior design project.As a solution, a state-of-the-art education is being presented as a project-based learningexperience. This type of educational method has been designed to push motivated studentsinto a fast pace, learn as you “build” environment in which students need to integrateeducational theory with applications. While not being a requirement by the university, adirected independent study was performed by a junior level student in the summer of 2010.The objective of the study was to apply compartmentalized
Technological University DR. JEAN KAMPE is currently department chair of Engineering Fundamentals at Michigan Technolog- ical University, where she also holds an associate professorship in the Department of Materials Science and Engineering. She received her Ph.D. in metallurgical engineering from Michigan Tech, an M.Ch.E. in chemical engineering from the University of Delaware, and a B.S. degree in chemical engineering from Michigan Tech. She was employed as a research engineer for five years at the Naval Research Laboratory in Washington, DC, and she held an associate professorship in the Department of Engineering Education at Virginia Polytechnic Institute and State University, working there for ten years in first-year
Paper ID #12215A Student Design, Develop, Test & Deploy Project: Perseus II - Developmentof an Unmanned Marine System for an Underwater Unexploded OrdnanceMissionMr. Michael DeLorme, Stevens Institute of Technology (SES) Mr. Michael DeLorme Mr. DeLorme has 11 years of professional experience as a Research Asso- ciate/Engineer at Stevens; Davidson Laboratory, DHS National Center for Secure and Resilient Maritime Commerce (CSR), and Systems Engineering Research Center. Research concentrations include exper- imental marine hydrodynamics, unmanned marine vehicles, the implementation of hydro-acoustics for the detection of