with upgrades to theroom security and climate control. A glovebox using argon as the internal inert environmentalgas, with ppm O2 and H2O monitoring capabilities was installed. Coin-cell electrode punchingdies, a precision balance, cell assembly tools, micro-pipetting, and cell crimping capabilitieswere set up for use in the lab. A multi-channel cell cycling station was installed in the earlyspring of 2022 and full assembly and cycle-testing operations began in the late spring of 2022. Four LTU engineering students (two undergraduate students, and two graduate students)were employed as research technicians for this project. Two LTU faculty members alsosupported this work. Li-ion materials handling, cell assembly, lab techniques, and
Paper ID #39511Board 91: Work-in-Progress: A Systematic Gap Analysis of the AustralianPower Engineering CurriculumMiss Nisaka Munasinghe, University of New South Wales Nisaka Munasinghe is an enthusiastic undergraduate student at the University of New South Wales. She will be graduating with a Bachelor of Electrical Engineering (Hons), 2023, with her thesis project present- ing research for improvements to the Australian Power Engineering Curriculum. Since 2020, she has been working in construction as a cadet engineer with Sydney Trains, helping deliver and commission railway signalling projects for the NSW transport
development within energy systems. Section 3details the methods and instruments for collecting and processing quantitative and qualitativedata. Section 4 presents the findings, projecting the insights from the stakeholders' responses.This section includes descriptive statistics from surveys and thematic interpretations frominterviews. Section 5 explores the transferability of the “3P” model and demonstrates itsapplicability beyond the specific context of this study to other engineering disciplines.Recommendations and future work are discussed in the conclusion section.2. Literature Review The scope of engineering education in energy systems has been evolving in response toglobal shifts towards sustainable energy sources. This evolution is
Paper ID #36796Identifying the Needs of Electric Power Industry through Online Job Ads:A Mixed-methods ApproachHuiye Yu, UNSW Sydney Huiye Yu received her Bachelor of Electrical Engineering from North China Electric Power University, China, in 2021. She is studying a Master of Electrical Engineering at UNSW Sydney. She is currently working as a student Electrical Engineer at Aurecon.Mr. Hua Chai, University of New South Wales Hua Chai received his dual Bachelor’s Degrees in both Electrical Engineering and Project Management from North China Electric Power University, China, in 2014. He received his Master’s degree (Master
guidance as to what training is necessary for future engineers to meet thisdemand. This study gathers data from literature, industry perspectives and current educationalpractice to help establish suitable learning objectives for training undergraduate engineers to beprepared for solar project development. In general, results suggest that students be trained tounderstand the complete workflow of concepts related to design of photovoltaic systemsincluding solar positioning, the solar resource and irradiance data sources, design of aphotovoltaic system from both a solar resource and an electrical perspective and performingcalculations to model or support validation of photovoltaic systems. Professionals alsohighlighted the importance of discussing
Paper ID #36718Enhancing job-readiness through short courses: A case study in powerengineeringMr. Hua Chai, University of New South Wales Hua Chai received his dual Bachelor’s Degrees in both Electrical Engineering and Project Management from North China Electric Power University, China, in 2014. He received his Master’s degree (Master of Philosophy) in Electrical Engineering at the University of New South Wales, Australia, in 2019. He is cur- rently a Ph.D. student in the Energy Systems, School of Electrical Engineering and Telecommunications, UNSW. His research interests include power engineering education, curriculum
buildings on 244 acres of sacred territory in Hempstead, NY housing 10 Schools offering 6 undergraduate degrees, 15 graduate degrees, and 3 professional degrees for a 62% female and 32% students of color student body.Sheridan College Experience 2011 to 2024Sheridan’s energy transition journey started in 2011, triggered by a growing recognition fromsenior financial and sustainability leadership that the college’s energy use, impacts, and costs couldbecome a much more strategic factor in the future than it had been in the past. Early on the decisionwas made to develop a comprehensive energy and climate master plan for the entire College.A multi-disciplinary Project Working Team (PWT) was formed comprised of all the disciplinesand
Energy Efficiency, and assesses operations focusing on environmental and P2 performance to provide recommendations for improvements and related cost savings. He has also been Co-PI of a Source Reduction Grant from EPA and PI for six projects funded by the Bureau of Reclamation (BOR). He has trained many undergrad and graduate students on energy and environmental assessments.Dr. Patricia A. Sullivan, New Mexico State University Patricia A. Sullivan serves as Associate Dean for Outreach and Recruitment in the College of Engineering at New Mexico State University. Throughout her career in higher education, Dr. Sullivan has successfully expanded access to NMSU-based services for communities and businesses across New
contentclarifications. Lab periods are used for online laboratory exercises and analysis, project check-ins, and periodic reflection. The labs contain pre-lab assignments and in-lab exercises. Pre-labshelp students prepare for in-the-lab brainstorming. The in-the-lab work includes watching avideo of the lab components, brainstorming the solutions, watching the lab video conducted bythe faculty, and doing a group analysis of the results. The learning outcomes intended for theonline labs are the same as in-person labs. Occasionally, a few minutes are allocated forreflection during lab periods aimed at increasing inclusion and a sense of belonging for allstudents.The one offering of the online labs is compared to two offerings of in-person labs, one precedingand
. Oursection is called “Socially Engaged Design of Nuclear Energy Technologies.” In its first offeringin Fall 2023, the course had 38 students. Students from any engineering major can take thiscourse, meaning that some were nuclear-interested but many were planning to major in otherdisciplines. As is typical of many schools right now, we had a significant number of studentsinterested in computer science and engineering. But a wide range of engineering fields wererepresented in our course.All Introduction to Engineering courses in the College of Engineering are design-build-testcourses, as is ours. The project with which students in our course are tasked is the design of ahypothetical fusion energy facility in collaboration with community members from
networked geothermal pilot system that will heat andcool 37 residential and commercial buildings in Framingham, MA [18]. These types of projects bygas and utility companies are spread all over the country and will provide future jobs and projectsfor students that are enrolled in engineering programs.3. General TopicsIn addition to decarbonization of buildings, other general topics need to be considered to achieveenergy sustainability. Some of these topics will be addressed in this section, including renewableenergy, energy storage, hydrogen technology, small modular nuclear reactors and additionalinnovative technologies.3.1 Renewable EnergyExisting renewable energy technologies, such as solar, wind, hydroelectric, geothermal, andbiomass have
, whether through workplace programs or staying abreast of industry advancements, ensures the team remains competitive and innovative. Additionally, promoting staff professional development through training programs and expert advice helps set high standards for worker training. These efforts not only contribute to the successful delivery of research project outcomes but also ensure that valuable knowledge and expertise are captured and effectively transferred within the organization.4 Professional This cluster
of miscellaneous computer programs that are available to the public. As aforum for discussion on these programs and to champion further development, the NEA alsorecently started hosting the International School on Simulation of Nuclear Reactor Systems(SINUS). This new annual program seeks to develop modeling/simulation tools in conjunctionwith validation/verification methodologies. Participants in the program “engage in a dynamic,hands-on learning experience through self-paced project assignments that introduce them to thecutting-edge single- and multi-physics software packages” [1]. Furthermore, the InternationalAtomic Energy Agency (IAEA) has been committed to developing and distributing itscomprehensive power plant simulation software
Paper ID #37977Design of a Massively Open Online Course on Electrical Microgrids withReal DatasetsDr. Roxana Maria Melendez-Norona, Florida Atlantic University Dr. Roxana M. Melendez-Norona is an electrical engineer and engineering project management special- ist with a Master’s and Doctoral degree in electrical engineering from Florida Atlantic University (Boca Raton, Florida, United States). As a professional Dr. Melendez-Norona continues being an engineering patroness and advocate since her energy and dedication towards engineering education are her best ref- erence. She has been working in the engineering industry since
conscious consideration that can be used in research methods toopen our views and processes to consider underserved minorities. In contrast, educational theoriesinform the selection of a pedagogy to determine how the training and curriculum may bedelivered most effectively. The crafting and analysis of questions use both transformative andacademic theories.II. Research DesignThe mixed methods approach is modeled after Mertens's Cyclical Model for TransformativeResearch [13]. The project used a combination of qualitative and quantitative research practices.A mixed methods approach allows sociopolitical factors and practical elements of CE educationto be analyzed and compared. The research design of Figure 4 is called the Convergent ParallelDesign
. Even with optimumconditions the power produced was not enough to power a single household. That does not meanthis could not be used as an emergency power supply in the case that standard power productionfrom national grid fails that was seen the kind of damage that caused recently with the recentcold snap in 2021 that caused massive failures in the power grid. Although, the power producedby this method would not fully fulfill the need of people, however there is much that can beexpanded on this method. This work was performed in partial fulfillment of the requirements of the project in theModern Methods of Engineering Analysis course at the Engineering Technology (ET)department in the University of Houston – Downtown (UHD). The work was
Paper ID #42436Development of an Interactive, Game-Based Nuclear Science Museum Exhibiton Probabilistic Risk AssessmentCamille S. Levine, University of Maryland Camille Levine is a graduate student in the SyRRA Lab pursuing her Ph.D. in Reliability Engineering. She graduated from the University of Maryland in 2021 with a bachelor’s in Mechanical Engineering with a minor in Project Management. Her research focuses on enhancing the causal basis behind current human reliability analysis methods. She has also worked on human reliability analysis for external hazard probabilistic risk assessment, particularly in nuclear power
a practical engineeringcourse that involves the simulation of interdisciplinary industrial projects using VR. Halabi. [11]showed that the implementation of VR with project-based learning (PBL) could improvecommunication, problem-solving skills and effective learning. Bogusevschi et al. [12] presenteda case study where VR was used to teach the physics of water cycle. Overall, these studies showthe relevance of VR at every level of engineering education. As we prepare the engineers of tomorrow, it is crucial to instill a holistic understanding ofsustainability and the economic and environmental implications of their designs. Subsurfacehydrogen production serves as a practical and sustainable teaching tool, allowing students toexplore
. Future efforts will focus onthe refinement of holistic energy materials and development of an elective course that exploresthe societal impacts of nuclear technology.Adaptability for Different Institutions and DisciplinesRecognizing the diversity in resources, demographics, and disciplines at various institutions, theholistic energy education framework is designed to be adaptable. Resource-rich institutionsmight include laboratory experiences, interdisciplinary projects, and industry partnerships.Conversely, institutions with limited resources could emphasize case studies and guest lectures toeffectively convey holistic energy concepts. The modular structure allows for incrementalimplementation, enabling institutions to integrate holistic energy