Bridge Tenders

Municipal Road and Bridge Administration Tender

Civil And Construction...+1Bridge Construction
Poland
Closing DateNA
Tender AmountRefer Documents 
Purchaser Name: Municipal Road and Bridge Administration | Description: Municipal Road and Bridge Authority

Municipality Of Streets And Bridges In The Pacific Tender

Civil And Construction...+1Road Construction
Poland
Closing DateNA
Tender AmountRefer Documents 
Description: Municipal Authority of Streets and Bridges in Tychy

Department Of Energy Tender

Energy, Oil and Gas
United States
Closing Date24 Mar 2026
Tender AmountRefer Documents 
Details: Inl Innovation Spotlight efficient Protonic Ceramic Power: Dual-mode Hydrogen And Electricity Generation breakthrough Solid Oxide Cell Technology Enables Reversible Hydrogen Production And Electricity Generation, Providing An Efficient, Low-temperature Solution For Sustainable Energy Conversion And Storage. overview: amidst A Global Shift Towards Renewable Energy Sources, The Challenge Of Efficient And Sustainable Energy Storage And Conversion Becomes Increasingly Critical. Developing The Reversible Solid Oxide Cell At Inl Directly Responds To This Challenge, Offering A High-performance Solution That Operates Effectively At Lower Temperatures. This Technology Bridges The Gap In Existing Energy Conversion And Storage Solutions And Aligns With Market Trends Favoring Sustainable, Carbon-neutral Technologies. Its Potential Applications Span Various Industries, From Power Generation To Hydrogen Fuel Production, Positioning It As A Critical Player In The Future Energy Market. description: at The Heart Of This Technology Is The Pnc Oxide, A Perovskite Material Designed For High Efficiency And Durability At Reduced Operating Temperatures. Pnc Oxide Excels In Fuel Cell And Electrolysis Modes, Unlike Traditional Electrodes, Thanks To Its Triple-phase Conductivity. This Innovative Material Composition Enables The Cell To Produce Hydrogen And Generate Electricity With Unprecedented Efficiency And Flexibility, Significantly Advancing Existing Solutions. benefits: enhanced Efficiency: Operates Effectively At Reduced Temperatures, Significantly Lowering Energy Costs. dual Functionality: Capable Of Reversible Operation Between Hydrogen Production And Electricity Generation, Offering Flexibility In Application. durability: Demonstrates High Durability And Stable Operation Under Practical High-water Pressure Conditions, Ensuring Long-term Reliability. sustainable Solution: Supports A Carbon-neutral Energy Cycle, Aligning With Global Sustainability Goals. versatile Applications: Potential For Use In Sensors, Permeation Membranes, And Other Energy Devices, Broadening Its Market Appeal. applications: renewable Energy Storage Systems hydrogen Production Facilities power Generation Companies environmental Sensing Devices industrial Gas Processing. development Status: trl 2 - Technology Concept And Application Formulated. ip Status: us Patent No. 11,557,781, “electrochemical Cells For Hydrogen Gas Production And Electricity Generation, And Related Systems, And Methods,” Bea Docket No. Ba-1049. inl Tech Partnerships: Your Gateway To Innovation inl Offers Strategic Access To Proprietary Technology, Enhancing Small Business Growth And Contributing To Economic And Public Advancement. We Cater Licensing Terms To Each Business We Work With, Ensuring Mutually Beneficial Agreements. Engage With Our Diverse Technology Offerings To Propel Your Company Forward. learn More About Our Licensing Opportunities And The Support We Provide At Https://inl.gov/technology-deployment/. For Specific Discussions On How Your Business Can Benefit, Please Contact Andrew Rankin At Td@inl.gov. inl’s Technology Deployment Department Focuses Exclusively On Licensing Intellectual Property And Partnering With Industry Collaborators Capable Of Commercializing Our Innovations. Our Goal Is To Commercialize The Technologies Developed By Inl Researchers. We Do Not Engage In Purchasing, Manufacturing, Procurement Decisions, Or Providing Funding. Additionally, This Is Not A Call For External Services To Assist In The Development Of This Technology.

City Of Diseases City Administration Of Streets And Bridges In Diseases Tender

Civil And Construction...+1Road Construction
Poland
Closing DateNA
Tender AmountRefer Documents 
Description: City of Chorzów - Municipal Authority of Streets and Bridges in Chorzów

Municipal Road and Bridge Administration Tender

Civil And Construction...+1Bridge Construction
Poland
Closing DateNA
Tender AmountRefer Documents 
Purchaser Name: Municipal Road and Bridge Administration | Description: Municipal Road and Bridge Authority

Municipal Road and Bridge Administration Tender

Civil And Construction...+1Bridge Construction
Poland
Closing DateNA
Tender AmountRefer Documents 
Purchaser Name: Municipal Road and Bridge Administration | Description: Municipal Road and Bridge Authority

Municipality Of Streets And Bridges In The Pacific Tender

Civil And Construction...+1Road Construction
Poland
Closing DateNA
Tender AmountRefer Documents 
Description: Municipal Authority of Streets and Bridges in Tychy

City Hall Of Roads And Bridges In Bytomi Tender

Civil And Construction...+1Bridge Construction
Poland
Closing DateNA
Tender AmountRefer Documents 
Description: Municipal Road and Bridge Authority in Bytom

Department Of Energy Tender

Software and IT Solutions
United States
Closing Date15 Mar 2026
Tender AmountRefer Documents 
Details: Open Source Software: Emrald: Pioneering Dynamic Risk Assessment For Enhanced Reliability And Safety in An Era Where Risk Management Is Paramount, The Event-modeled Risk Assessment Using Linked Diagrams (emrald) Software Emerges As A Revolutionary Tool. Developed By The Idaho National Laboratory (inl), Emrald Sets A New Standard In Dynamic Probabilistic Risk Assessment (pra), Offering Unparalleled Capabilities To Model And Analyze Complex System Interactions In Real-time. traditional Pra Methods, While Effective, Often Fall Short Of Capturing The Intricate Dynamics And Interdependencies Within Complex Systems, Particularly In High-stakes Environments Such As Nuclear Power Plants. Recognizing This Gap, Emrald Was Conceived To Bridge Traditional Pra With Dynamic Modeling, Leveraging State-of-the-art Graphical Interfaces And Simulation Integration To Offer A More Intuitive And Comprehensive Risk Assessment Process. emrald Stands Out With Its Intuitive Graphical User Interface (gui) And Object-oriented Modeling Approach, Facilitating The Creation Of Detailed, Dynamic Simulations Of Complex Systems. This Software Is Designed To Mirror Real-world Scenarios Closely, Allowing Users To Incorporate Physical Components, Operator Actions, And Environmental Conditions Into Their Models. By Providing A Dynamic Framework That Includes Fault Trees, Event Trees, And State Diagrams, Emrald Enables A Seamless Transition From Static To Dynamic Pra, Enhancing The Accuracy And Utility Of Risk Assessments. advantages user-friendly Interface: Simplifies The Modeling Process, Making It Accessible To A Broader Range Of Professionals. dynamic Integration Allows Easy Coupling With Other Simulation Applications, Enhancing Model Realism And Depth. comprehensive Modeling: Captures The Sequence And Timing Of Events In Detail, Offering Insights Into Potential Failure Paths And Critical Timings. flexible Application: Supports Nuclear And Non-nuclear Industries, Enabling A Wide Range Of Real-world Use Cases. research To Industry Transition: Designed To Make Dynamic Pra Practical And Sustainable Across Various Sectors. applications nuclear Safety Analysis: Enhances The Reliability And Safety Of Nuclear Power Facilities Through Detailed Risk Modeling. industrial Risk Management: Offers Industries Outside Of Nuclear Power The Ability To Integrate Dynamic Risk Assessment Into Their Safety Protocols. simulation Enhancement: Allows For Adding Real-world Scenarios To Existing Simulation Tools, Identifying Weak Points And Critical Timings In Complex Systems. operational Decision Making: Supports More Informed Decision-making By Providing Detailed Insights Into System Reliability And Potential Failure Modes. discover How Emrald Can Elevate Your Risk Management Strategy To New Heights. Visit Our Github Page To Explore The Software Further, Download It, And Join The Forefront Of Dynamic Probabilistic Risk Assessment. inl’s Technology Deployment Department Focuses Exclusively On Licensing Intellectual Property And Partnering With Industry Collaborators Capable Of Commercializing Our Innovations. Our Goal Is To Commercialize The Technologies Developed By Inl Researchers. We Do Not Engage In Purchasing, Manufacturing, Procurement Decisions, Or Providing Funding. Additionally, This Is Not A Call For External Services To Assist In The Development Of This Technology.

Department Of Energy Tender

Civil And Construction...+2Consultancy Services, Civil And Architectural Services
United States
Closing Date15 Mar 2026
Tender AmountRefer Documents 
Details: Open Source Software: Mastodon: Pioneering Multi-hazard Analysis For Critical Infrastructure in An Era Where The Resilience Of Critical Infrastructure Against Natural Disasters Is Paramount, Mastodon Stands Out As A Beacon Of Innovation. This Cutting-edge Software Tool Offers A Comprehensive Solution For Modeling Stochastic Nonlinear Soil-structure Interactions (nlssi), Bringing A New Level Of Sophistication To Dynamic Probabilistic Risk Assessments. the Increasing Frequency And Intensity Of Natural Disasters, Coupled With The Critical Need To Safeguard Infrastructure, Necessitated The Development Of A Robust Modeling Tool. Mastodon Was Conceived To Meet This Challenge, Offering Detailed Simulations Of How Structures Like Nuclear Facilities, Dams, And Bridges Respond To External Hazards, Including Seismic Events. mastodon, Built Upon The Powerful Moose Framework, Excels In The Numerical Modeling Of Seismic Soil-structure Interaction. It Uniquely Combines Structural Dynamics, Time Integration, Dynamic Porous Media Flow, Nonlinear Hysteretic Soil Constitutive Models, And Geometric Nonlinearities (such As Gapping, Sliding, And Uplift). Mastodon's Capability To Simulate Nonlinear Seismic Wave Propagation From Earthquake Fault Rupture To A Structure's Response—and The Soil Surrounding It—sets A New Benchmark In Risk Assessment Tools. advantages: advanced Nlssi Modeling: Offers Comprehensive Simulations Incorporating Dynamic Probabilistic Risk Assessments. multi-hazard Risk Calculations: Enables Precise Risk Analysis For Critical Infrastructure Against Multiple Hazards. nonlinear Seismic Wave Propagation: Simulates The Entire Process From Earthquake Fault Rupture To Structural Response With High Fidelity. quantification Of Uncertainty: Enhances The Reliability Of Risk Assessments By Accurately Quantifying Uncertainties. moose-based Master Application: Leverages The Moose Framework For Unparalleled Computational Efficiency And Flexibility. applications: nuclear Facilities: Ensures The Safety And Resilience Of Nuclear Power Plants And Related Facilities. critical Infrastructure: Protects Vital Structures Such As Dams And Bridges From Catastrophic Failure Due To External Hazards. dynamic Pra Of External Hazards: Facilitates Dynamic Probabilistic Risk Assessments For Various External Threats. discover How Mastodon Can Transform The Safety And Resilience Of Your Critical Infrastructure. Visit Our Github To Learn More About Its Groundbreaking Capabilities And To Download The Software For A Comprehensive Evaluation. inl’s Technology Deployment Department Focuses Exclusively On Licensing Intellectual Property And Partnering With Industry Collaborators Capable Of Commercializing Our Innovations. Our Goal Is To Commercialize The Technologies Developed By Inl Researchers. We Do Not Engage In Purchasing, Manufacturing, Procurement Decisions, Or Providing Funding. Additionally, This Is Not A Call For External Services To Assist In The Development Of This Technology.
2291-2300 of 2434 active Tenders