Advanced Gas Turbine Program
GPTKB entity
Properties (116)
Predicate | Object |
---|---|
gptkbp:instanceOf |
program
|
gptkbp:addresses |
energy transition
renewable energy integration |
gptkbp:aimsTo |
efficiency
reliability emissions lower lifecycle costs |
gptkbp:analyzes |
performance data
|
gptkbp:collaboratesWith |
industry partners
|
gptkbp:conducts |
field tests
|
gptkbp:contributedTo |
clean energy initiatives
|
gptkbp:developedBy |
gptkb:United_States_Department_of_Energy
|
gptkbp:develops |
next-generation turbines
|
gptkbp:focusesOn |
gas turbine technology
|
gptkbp:hasClient |
job creation
climate change mitigation |
gptkbp:hasCollaboratedWith |
universities
government agencies public-private partnership |
gptkbp:hasFunding |
federal government
|
gptkbp:hasGoals |
reducing fuel consumption
|
gptkbp:hasImpactOn |
job creation
|
gptkbp:hasRelatedPatent |
power plants
aviation marine propulsion |
gptkbp:hasResearchInterest |
noise reduction technologies
|
https://www.w3.org/2000/01/rdf-schema#label |
Advanced Gas Turbine Program
|
gptkbp:includes |
testing facilities
|
gptkbp:involves |
research and development
computer modeling |
gptkbp:isAssignedTo |
climate goals
|
gptkbp:isAttendedBy |
performance data
energy technologies fuel diversity |
gptkbp:isConnectedTo |
energy efficiency programs
renewable energy sources energy efficiency technologies energy storage solutions grid modernization |
gptkbp:isEngagedIn |
stakeholders
|
gptkbp:isEnhancedBy |
energy efficiency
grid stability energy resilience |
gptkbp:isEvaluatedBy |
performance metrics
regulatory compliance environmental impact safety standards sustainability metrics cost-effectiveness economic viability independent reviewers market readiness technological feasibility life cycle costs |
gptkbp:isExemplifiedBy |
alternative fuels
|
gptkbp:isFacilitatedBy |
technology transfer
|
gptkbp:isFocusedOn |
sustainability
operational excellence advanced combustion techniques system integration digital technologies advanced diagnostics carbon capture technology fuel flexibility high-temperature operation next-generation turbines |
gptkbp:isFundedBy |
federal grants
|
gptkbp:isIncorporatedIn |
machine learning
|
gptkbp:isInformedBy |
market trends
|
gptkbp:isInvolvedIn |
community engagement
knowledge sharing policy development public outreach stakeholder engagement international collaborations collaborative research projects best practices development |
gptkbp:isLocatedIn |
STEM education
digital technologies innovation ecosystems advanced control systems |
gptkbp:isPartOf |
energy transition strategies
national energy strategy energy transition efforts energy research initiatives global energy landscape energy innovation ecosystem national energy policy. |
gptkbp:isPromotedBy |
sustainable practices
research institutions public-private partnerships workforce development industry associations energy advocates energy policy makers |
gptkbp:isRated |
technological advancements
|
gptkbp:isRelatedTo |
thermodynamics
aerodynamics research combined cycle power plants combustion technology |
gptkbp:isSubjectTo |
regulatory oversight
|
gptkbp:isSupportedBy |
economic growth
academic institutions government grants research funding research institutions technical workshops technical publications national security. |
gptkbp:isTargetedAt |
new combustion techniques
|
gptkbp:isUtilizedFor |
emission control technologies
|
gptkbp:isVisitedBy |
hybrid systems
|
gptkbp:promotes |
innovation in power generation
|
gptkbp:provides |
technical expertise
|
gptkbp:supports |
energy security
|
gptkbp:utilizes |
advanced materials
|