A new framework for software management was recognized for its potential impact on computation-based science, enabling the Ohio Supercomputer Center to efficiently install and test applications for a wide range of users. The framework leverages automated tools and continuous integration to streamline the process.
The NSF awards funding to further develop Open OnDemand, a platform providing web-based access to high-performance computing services. The project aims to simplify access to HPC resources, making it more accessible to new users and disciplines.
The Ohio Supercomputer Center has released Open OnDemand 1.0, an open-source web portal for accessing high-performance computing (HPC) services. This initiative aims to lower the barrier to HPC use by providing a user-friendly interface.
The Owens Cluster is the most powerful supercomputer in Ohio Supercomputer Center history, featuring a peak performance of 1.5 petaflops. It provides a massive increase in computing power and storage space for researchers, enabling them to make extraordinary discoveries and innovations.
Researchers at Ohio State University have confirmed and interpreted experimental findings using OSC services, showing that phonons have magnetic properties. A magnetic field reduced the amount of heat flowing through a semiconductor by 12 percent in simulations performed on the Oakley Cluster.
Researchers employ Surface Extraction for TIN-based Searchspace Minimization (SETSM) software to produce high-resolution digital surface maps for Nepal's relief effort. These maps will aid in mapping infrastructure, rescues, and slope stability assessments.
The Ohio Supercomputer Center has dedicated the Ruby Cluster, a high-performance computing system built with HP-Intel Xeon Phi technology, to honor Ruby Dee. The cluster boasts an estimated peak performance of 144 TeraFLOPS and will support research collaboration, commercialization, and workforce development across Ohio.
Jonathan Timcheck, an Ohio State Honors student, has been awarded a Churchill Scholarship to study applied math at the University of Cambridge. He will leverage his experience with GPUs on OSC's Oakley Cluster to explore cutting-edge mathematical methods for analyzing large datasets.
Researchers developed 3D models of an ant's neck anatomy to study its biomechanics and determine the relationship between mechanical function, structural design, and material properties. The results revealed that the ant's neck joint can withstand loads of up to 5,000 times its body weight.
The U.S. Department of Energy has awarded AltaSim Technologies nearly $150,000 to further develop additive manufacturing technologies through its Small Business Innovation Research program. The award boosts momentum for the AweSim initiative, a public-private partnership aiming to increase industrial use of modeling and simulation.
The study found that HPV disrupts host-cell genes and chromosomes at sites of viral insertion, leading to overexpression or disruption of cancer-causing genes. This damage promotes the development of cancer by increasing the expression of viral E6 and E7 proteins.
A field study and computer simulations show that forest corridors increase seed dispersal and alter wind dynamics. The research found that corridors accelerate the wind and provide conditions for long-distance seed dispersal.
Researchers used computer models to study the melanopsin pigment in the eye, finding it may be more sensitive to light than its counterpart rhodopsin. The study could lead to new technologies and a better understanding of diseases like seasonal affecting disorders.
A new study of vast weather data reveals hundreds of smaller storms that had previously escaped detection, increasing the number of Arctic cyclones by 40% to around 1,900 per year. This finding is important for understanding current weather patterns and potential climate change in the future.
New simulations uncover flaw in using hollow cones to guide energetic electrons to fuel pellets for laser-driven fusion. Researchers at Ohio State University found that thicker cones hinder the process due to neutralizing effect of free electrons in dense plasma.
A Cleveland Clinic research team has developed virtual models of human knee joints to study how tissues and cells respond to heavy loads. The simulations reveal that cartilage cells experience amplified deformations compared to larger scales, with a significant impact on their deformation patterns.
The Oakley Cluster, a new HP/Intel supercomputer, ranks 9th in the US and 2nd among US academic institutions when comparing benchmarked performances. It achieves 88 teraflops of performance with nearly twice the memory per core and three times the number of GPUs compared to its predecessor.
Researchers have restructured their virus-tracking software to allow for modular development and integration with other applications. The new implementation enables public health scientists to update maps on the evolution and spread of pathogens, facilitating better deployment of resources to protect citizens and forces in the field.
The Ohio Supercomputer Center will expand its ultra-fast broadband network to 33 higher education institutions, providing speeds of up to 1Gbps and enabling access to cutting-edge technology. This investment aims to advance research and job growth across various sectors, including medical research and manufacturing.
Karen Tomko, a senior researcher at the Ohio Supercomputer Center, has been designated a Campus Champion to empower researchers and educators in advancing scientific discovery through national high performance computing opportunities and resources. The XSEDE designation will provide direct access to XSEDE resources and support for rese...
The Ohio Supercomputer Center's new Oakley Cluster supercomputer system offers nearly twice the memory per core and three times the number of GPUs as its predecessor, with peak performance reaching 154 teraflops. The system is also more energy-efficient, consuming only 60% of the power of its previous flagship system.
Researchers used computer prediction models to test a new docking seal, verifying its performance and improving upon costly experimental evaluations. The study showed significant correlations between experimental values and computer-modeled results, with some discrepancies attributed to extrapolation errors.
Governor John R. Kasich joined medical researchers to discuss how the faster network speeds will help enhance innovation, collaboration and grant competitiveness. The new 100 Gbps network will enable remote evaluation and monitoring of patients' clinical status, facilitate research collaborations and transmit large data files efficiently.
Governor Kasich announces a 10-fold boost to Ohio's broadband network speeds, expected to advance cutting-edge research and job growth. The new 100 Gbps network will connect major metropolitan areas to national advanced networking consortiums, enabling rapid data transmission for medical research, innovation, and business.
Using computer simulations at the Ohio Supercomputer Center, researchers aim to engineer cyanobacteria to thrive in diverse illumination conditions. By understanding light sensing and harvesting in Anabaena sensory rhodopsin bacteria, they hope to develop new properties for alternative energy via microbial conversion of light energy.
Dr. Chen's TURBO simulation software is being refined using Ohio Supercomputer Center resources to improve turbomachinery component design. The goal is to develop a reliable prediction technology to enhance engine performance and reduce costs.
A $7.5 million NIH grant will fund a Center of Excellence at Ohio State University to develop novel enzyme-based antidotes for nerve agents and pesticides. The team aims to create efficient enzymes that can neutralize multiple toxic agents, paving the way for new treatments and preventive measures.
Carbon nanotubes have exceptional thermal, mechanical, and electrical properties, but agglomerate formation hinders their full potential. Simulations using the Ohio Supercomputer Center unveil the effectiveness of tie molecules in improving CNTs' stability and performance.
College students with mobility impairments will explore a computer-generated simulation of Mammoth Cave, allowing them to meet degree requirements for field-based learning experiences. The project aims to create an interactive, virtual environment that is tailored to their abilities and provides a sense of realism.
Researchers can now search for models that best explain complex data using an evolutionary computation approach, allowing for flexibility and insights. This method enables the simultaneous evaluation of many candidate solutions, speeding up the work and providing additional insights.
The Buckeye Bullet team, with the Ohio Supercomputer Center, is developing a new electric land speed vehicle to surpass 400 mph. They're using computational fluid dynamics and large-scale simulations to optimize the aerodynamic design and minimize shock waves.
Researchers leverage supercomputers to investigate dark energy, a mysterious force driving the universe's expansion. They develop new models that allow for more accurate analysis of subtle dark matter clustering features, such as Baryon Acoustic Oscillations (BAO), crucial for constraining cosmological parameters.
Amar leverages OSC supercomputers to test a new mathematical approach that accelerates complex computer calculations for simulating micro-thin material formation. The first-passage time approach speeds up KMC simulations by a factor of 36 to 100 times, improving efficiency in modeling and growth of materials.
A team of scientists used genetic sequencing and supercomputing to determine that Xyloplax is not a new class of animals but rather a rare example of natural selection shaping its life cycle. The study found that Xyloplax has a truncated life cycle, retaining juvenile features into adulthood.
A biophysicist is developing a drug that targets Interleukin-6 (IL-6) to combat breast and prostate cancer. By blocking the protein's signaling pathway, researchers aim to prevent cellular inflammation and tumor growth.
Researchers are developing a new antidote to regenerate an enzyme that ages after exposure to deadly chemical warfare agents. Dr. Christopher Hadad is using supercomputers to test reagents for this treatment, which could provide complete recovery from severe muscle spasms and death.
Researchers analyzed evolutionary history of poly(ADP-ribose)polymerase (PARP) superfamily in eukaryotes, finding ancestral proteins with diverse functions. The study suggests that the PARP superfamily is larger than previously documented and will grow as more eukaryotic genomes become available.
The Ohio Supercomputer Center is receiving $2 million from a federal grant to support small- and medium-sized manufacturers in adopting advanced manufacturing technologies. The initiative aims to promote job retention, supply-chain growth, and new exports by providing access to modeling, simulation, and analysis tools.
The Ohio Supercomputer Center (OSC) has signed a collaboration agreement with Procter & Gamble (P&G) to work on modeling and simulation projects. This partnership aims to accelerate innovation collaboration between industry and academia, driving economic competitiveness and fostering industry-academic partnerships.
Researchers developed computer-assisted diagnosis tools to grade Follicular Lymphoma samples more accurately and efficiently. The tools use high-resolution images and machine learning algorithms to identify malignant regions and classify disease grades, promising faster and more accurate diagnoses.
The Journal of Computational Science Education (JOCSE) promotes the use of computation in education, disseminating unique uses of computation in the classroom. The journal utilizes internet technology to allow for enhanced interactivity and provides an outlet for high-quality papers describing successful computational science instructi...
Hendrik Heinz, a University of Akron researcher, is using advanced simulations to understand organic-inorganic bonding. His work aims to develop new composite materials and devices, such as bone replacement and sensing systems, by harnessing nature's biomineralization process.
The Ohio State University and Ohio Supercomputer Center have received a four-year, $1.675 million federal grant to develop a computer tool called the Integrated Computational System for Energy Pricing and Policy (ICS-EPP). This model will enable analysis of various scenarios, including the cost of adding electric vehicles to the grid a...
Researcher Stelios Kazantzidis uses Ohio Supercomputer Center's powerful systems to model galaxy mergers and simulate the formation of massive black holes. His work has potential to shed light on astrophysical phenomena and verify general relativity.
Vakalis receives award for his contributions to developing and implementing educational materials for Computational Engineering and Sciences. He aims to make students aware of the beauty and practical use of computational science, highlighting its intersection with mathematics and science.