TALK KEYWORD INDEX
This page contains an index consisting of author-provided keywords.
| ' | |
| 'Nanocomposit' | |
| 'Polyaniline' | |
| 'Supercapacitor' | |
| ( | |
| (Biodiesel*): | |
| (Characteristics*): | |
| (Economic*): | |
| (Transesterification*): | |
| (Used Temple oil*): | |
| 1 | |
| 1. solid-state reaction: The materials are synthesized using solid-state reaction method | |
| 1. Trigeneration Configurations | |
| 1D gratings | |
| 2 | |
| 2. Exergy Analysis | |
| 2D layered materials | |
| 2D layered perovskites | |
| 3 | |
| 3. Diesel Generator | |
| 3. ferromagnetic: The materials show ferromagnetic behaviour | |
| 4 | |
| 4. band gap | |
| 5 | |
| 5. photovoltaic: These materials may be use in solar cell application | |
| 7 | |
| 700 MWe | |
| A | |
| Absorbed Flux | |
| Absorber Integrated Heat Storage | |
| Absorber Tube | |
| Acid Catalysis | |
| Activated carbon | |
| active cooling | |
| Adaptive regressive smoothing models | |
| Additive | |
| ADMP | |
| Adsorption | |
| AEP | |
| Agri-voltaic system | |
| Agricultural Feeder | |
| Agriculture | |
| Air based Photovoltaic thermal systems | |
| air conditioners | |
| air cooled condenser | |
| Air heater | |
| air mixing device | |
| Airflow simulation | |
| alloy nanoparticles | |
| Alternate fuels | |
| alternative fuels | |
| Amine impregnation | |
| Ammonia decomposition | |
| ammonia-activated carbon | |
| Anaerobic Digestion | |
| Analysis of variance (ANOVA) | |
| annualized life cycle | |
| Anode | |
| ANOVA | |
| Antigel Additives | |
| Antimony sulphide | |
| Appropriate technology | |
| Artificial Neural Network | |
| Artificial Roughness | |
| Aspect ratio | |
| Atmospheric Water Harvesting | |
| Atomization | |
| Au-Pt-Pd | |
| autocatalytic | |
| axial fan | |
| Axial flow turbine | |
| B | |
| Ball Milling | |
| Band Shifting | |
| Bangladesh | |
| Base Catalysis | |
| batteries | |
| BC501 | |
| BEM theory | |
| Ber drying | |
| Bi2S3 NPs | |
| Binding Energy | |
| bio diesel | |
| Bio-Energy with Carbon Capture and Storage (BECCS) | |
| Biodiesel | |
| Bioelectricity | |
| BiofueL | |
| Biogas | |
| Biomass | |
| biomass characterization | |
| Biomass feedstocks | |
| biomass gasification | |
| Biomass potential | |
| Black Nickel Chrome Coating | |
| blade pitch angle | |
| Boiler | |
| Boost converter | |
| Boundary condition | |
| Brake Power | |
| Brake Specific Fuel Consumption | |
| Bridge-Linked | |
| Briquette | |
| Briquette properties | |
| Building energy | |
| Building Integrated Photovoltaics | |
| butanol | |
| BWR | |
| C | |
| C.I. engines | |
| C4mimCl | |
| Calorimeter | |
| Carbon Capture Utilization and Storage (CCUS) | |
| Carbon dioxide | |
| Carbon dioxide electroreduction | |
| carbon dioxide emissions | |
| Carbon Dioxide Plume Geothermal Energy (CPG) | |
| Carbon fabric | |
| Carbon nanofibre | |
| Carbon Sphere | |
| carbon supported catalyst | |
| Carbondioxide | |
| Carriage Repair Workshops | |
| Carrier-selective contacts | |
| Castor oil methyl ester | |
| Cavity receiver | |
| CCHP | |
| CdTe | |
| Central composite rotatable design(CCRD) | |
| CFB | |
| CFD | |
| CFD analysis | |
| Channel Power Peaking Factor | |
| Char conversion | |
| Char gasification | |
| Characterization | |
| Charging and discharging | |
| charging efficiency | |
| Chemical equilibrium | |
| Chicha oil | |
| CI engine | |
| Clathrate process | |
| Co-sputtering | |
| Co-Substrate | |
| CO2 absorption | |
| CO2 adsorption | |
| CO2 refrigeration | |
| Coal | |
| Coal consumption | |
| Coal Quality | |
| Coal-fired power plants | |
| Coconut shell | |
| Collector | |
| Combustion | |
| combustion characteristics | |
| compact heat exchanger | |
| composite | |
| composite blades | |
| Composite phase change material | |
| Compositional ratio | |
| Compound Parabolic Concentrator | |
| compound parabolic concentrator (CPC) concentration ratio (C) | |
| Compression ratio | |
| Computational Fluid Dynamics | |
| Concentrated photovoltaic (CPV) | |
| concentrated solar thermal | |
| concentrating solar power | |
| Concentrating Solar Technology | |
| Concentration ratio | |
| concentric heat exchanger | |
| Concrete Bricks | |
| Condensation | |
| conical protrusion rib | |
| conical receiver | |
| Control | |
| cooling load | |
| COP | |
| core@shell | |
| Cost optimization | |
| Coupled heat and mass transfer | |
| Crop production | |
| Crop Water Requirement | |
| Cropping Pattern | |
| Crown ether | |
| crude glycerol | |
| Crude oil scheduling | |
| Cryostat | |
| Cu2O reduction | |
| CuO | |
| cuprous oxide | |
| Cyanobacteria | |
| cycle-life | |
| Cyclic variations | |
| Cyclic voltammetry | |
| cyclone separator | |
| Cylindrical cavity receiver | |
| Cylindrical element | |
| CZTS | |
| D | |
| D-STATCOM | |
| Dairy washed milk scum (DWMS) | |
| Darcy Approximation | |
| DC electric springs | |
| DC Link | |
| DC loads | |
| DDSRF PLL | |
| Debt | |
| DEEA | |
| Deep eutectic solvent | |
| Dehumidification | |
| Delignification | |
| Demand fluctuation | |
| Desalination | |
| Desalination System | |
| Design | |
| designing of receiver reactor | |
| desorption | |
| DETA | |
| Developing countries | |
| Di ethyl ether | |
| Dielectric coated metal | |
| Diesel Engine | |
| Diesel Pilot Injection | |
| Diesel replacement | |
| Diethyl ether | |
| diffusion mechanism | |
| Discount Rate | |
| Discounted Cash Flow Analysis | |
| Discrete particle model | |
| Distributed generation (DG) | |
| distribution coefficient | |
| Domestic | |
| Double Print | |
| Downshifting | |
| Downsizing | |
| DRHR | |
| Drivers and Barriers | |
| Drying chamber | |
| DSRF-PLL | |
| Dual fuel | |
| Dual Purpose Solar Collector | |
| dust deposition | |
| Dye Sensitized Solar Cells (DSSCs) | |
| E | |
| E3 impacts | |
| Economic Analysis | |
| Economics of Nuclear Energy | |
| Effect of Blade Design on Performance | |
| effective efficiency | |
| Efficiency | |
| Efficiency of cookstove | |
| efficiency standards | |
| EGR | |
| EIO LCA model | |
| Electrical energy | |
| Electricity | |
| Electricity access | |
| Electricity and development | |
| Electricity consumption | |
| Electricity generation planning | |
| ELECTROCATALYST | |
| electrochemical study | |
| Electrolyte | |
| Eleusine indica | |
| Emission | |
| Emission Control Technologies | |
| Emissions | |
| emittance | |
| emulsion | |
| Encapsulated | |
| Encapsulation | |
| Energy access | |
| Energy analysis | |
| Energy balance | |
| Energy conservation | |
| energy conservation building code | |
| Energy demand model | |
| Energy density | |
| Energy economics | |
| energy efficiency | |
| Energy efficient appliances | |
| energy efficient building design | |
| Energy inequality | |
| Energy mainstreaming | |
| Energy management | |
| Energy performance | |
| Energy poverty | |
| Energy Response | |
| Energy saving | |
| energy storage | |
| Energy System | |
| Energy transition | |
| Energy use | |
| Energy yield | |
| Energy-water nexus | |
| Engine emission | |
| Engine exhausts gas | |
| Engine performance | |
| Enthalpy of formation | |
| environment impact | |
| Equity | |
| equivalent diameter | |
| equivalent series resistance | |
| Erythritol | |
| ethanol | |
| ethanol oxidation | |
| Evacuated Glass Tube | |
| Evaporation | |
| Evolutionary optimization | |
| exergy analysis | |
| Exergy and Energy Analysis | |
| Exergy Destruction | |
| Expansion valve | |
| Experiments | |
| ExternalQuantum Efficiency(EQE) | |
| F | |
| FDTD | |
| FDTD Simulations | |
| feed water heating | |
| Feeder analysis | |
| Fill Factor (FF) | |
| Finite Difference Time Domain | |
| Five Level Diode Clamped Multilevel Converter Hysteresis Control | |
| Flash gas | |
| flat plate collector | |
| Flocculation | |
| Flow Forming | |
| flow measurement | |
| flow measuring device | |
| fluidized bed gasifier | |
| Flux Mapping System | |
| forced convection | |
| Forced/Free convection | |
| Formic acid | |
| Fossil power plants | |
| FPC | |
| Free fatty acids | |
| FTIR | |
| Fuel additives | |
| Fuel Cycle Cost | |
| Fuel reforming | |
| Full scope simulator | |
| Fusion Energy | |
| Fuzzy | |
| Fuzzy Logic | |
| G | |
| Galvonostatic charge discharge | |
| gap filling techniques | |
| Gas hydrate | |
| Gas Hydrates | |
| Gasification | |
| Gasoline | |
| GC | |
| GC MS analysis | |
| Geant4 | |
| Generator Temperature | |
| Glycerol | |
| GRA | |
| Gravimetric approach | |
| green building | |
| Greenhouse gas | |
| Grid connected operation | |
| Grid integration | |
| Grid Management | |
| H | |
| Hall measurement | |
| HCCI engine | |
| HDI | |
| header shape | |
| Heat exchanger | |
| heat loss | |
| Heat pump | |
| Heat transfer | |
| Heat-exchanger network | |
| HeatPipe | |
| helical coil receiver | |
| Hemispherical Transmittance | |
| Heterojunction | |
| heterojunction solar cell | |
| HFU | |
| High ash Indian coal | |
| High Contrast Gratings | |
| High efficiency solar cells | |
| high potential cathode material | |
| High voltage gain FIBC | |
| High-efficiency photovoltaics modules | |
| High-resolution | |
| high-temperature | |
| Highways | |
| HMT | |
| Honey-Comb | |
| Hot Spot | |
| household energy use | |
| human behaviour | |
| Hybrid | |
| Hybrid Drying | |
| Hybrid geothermal system | |
| hybrid perovskites | |
| Hydro energy | |
| hydrogen | |
| Hydrogen adsorption-desorption | |
| hydrogen bond donor | |
| Hydrogen Evaluation | |
| HYDROGEN EVOLUTION REACTION | |
| Hydrogen fuel | |
| Hydrogen storage | |
| hydrogen yield | |
| Hydrokinetic turbine | |
| Hydrolysis | |
| I | |
| IHDS | |
| illuminance | |
| Illumination Transition Conditions (ITCs) | |
| In-cylinder Pressure | |
| In-cylinder Temperature | |
| In-situ | |
| INDC | |
| India | |
| Indian Coal Power Plants | |
| Indian Energy Sector | |
| Indian Geothermal Provinces | |
| Indian Railways | |
| Indoor Air Pollution | |
| Inductive charging | |
| Infrared thermography | |
| Injection Pressure | |
| inline inlet | |
| Input switch charging | |
| intentional islanding algorithm | |
| Interleaved boost converter | |
| internal quantum efficiency(IQE) | |
| inverter | |
| Ionic conductivity | |
| Ionic liquid | |
| IR images | |
| Irrigation Energy | |
| Irrigation water pumping | |
| islanding/isolating operation | |
| Isotherm model | |
| isothermal phase transition | |
| ITER | |
| ITO | |
| K | |
| Kinetic study | |
| Kinetic/diffusion rate | |
| kinetics | |
| Knurling | |
| Kubas-Niu Interaction | |
| Kusum seed | |
| L | |
| Lambda Modes | |
| Latent heat | |
| Latent heat storage | |
| Latent heat thermal energy storage (LHTES) | |
| Latent thermal energy storage | |
| LBLOCA | |
| LCOE | |
| Levelised Unit Energy Cost | |
| LiBr-H2O | |
| Light intensity | |
| lignin | |
| Lignite | |
| linear programming | |
| Linear Regression Model | |
| Liquefied Natural Gas | |
| Liquid Desiccant | |
| liquid fuels | |
| Liquid Sodium Flow | |
| Lithium | |
| lithium ion battery | |
| Lithium Sulfur batteries | |
| Lithium-ion battery | |
| Loss Of Coolant Accident | |
| Low-Cost | |
| Low-income settlements | |
| LTC | |
| LTO-TiO2 | |
| Luminescent Solar Concentrators | |
| M | |
| Machine Losses | |
| Maharashtra | |
| Main grid | |
| maldistribution | |
| mandatory labelling | |
| manifold induction | |
| MAPA | |
| Mass flow rate | |
| Mass fraction | |
| Mass Yield | |
| Matte Black | |
| Maximum Power (MPP) | |
| Maximum power point tracking | |
| MEA | |
| Mechanochemical | |
| Mehsana cookstove | |
| Melt fraction | |
| Membrane Distillation | |
| Metal alloys | |
| metal functionalization | |
| Metal hydride | |
| Metal Nanoparticles | |
| Metal sulfide nanoparticles | |
| Metal-BN-framework | |
| Metal-solvent interactions | |
| Methane storage | |
| Methanol | |
| Micro grid | |
| Microalgae | |
| microchannel heat sink | |
| microemulsions | |
| Micromorph | |
| Microreactor | |
| Microwave | |
| mini grid | |
| Mixed hydrates | |
| Mixed Phase | |
| Modal expansion | |
| MOF | |
| Moisture harvest index | |
| Molecular dynamics | |
| molten salt | |
| Molybdenum Trioxide | |
| monolayer | |
| Monte Carlo | |
| MoS2 | |
| MoTe2 | |
| Multiphase | |
| Mushroom | |
| MWCNT (multiwall carbon nanotube) | |
| N | |
| Nano fluid | |
| Nano-enhancement | |
| Nanocomposite | |
| Nanofluid | |
| nanofluids | |
| Nanomaterials | |
| nanoparticles | |
| Nanorods/Nanoparticles | |
| Nanostructure | |
| Natural Convection | |
| Natural Pigments | |
| neem biodiesel | |
| negative electrode | |
| NH3-H2O | |
| Nickeloxide | |
| nitromethane | |
| Non-critical loads | |
| Non-uniform cooling | |
| NOx | |
| NOx emission | |
| NPP | |
| Nuclear Power Plant | |
| Number of perforation | |
| Numerical analysis | |
| Numerical modeling | |
| Nusselt number | |
| Nusselt number correlation | |
| nyquist plot | |
| O | |
| Obstacles (Fins) | |
| Odisha | |
| off grid | |
| Off-grid | |
| Ohnesorge jet classification | |
| Once Through Water Heating | |
| one dimensional nanorod | |
| onset potential | |
| Open top gasifier | |
| Open volumetric air receivers | |
| operating temperature | |
| optical enhancement layer | |
| Optical properties | |
| Optimization | |
| Optimized design | |
| Organic Rankine cycle | |
| Organic-inorganic membrane | |
| Overload Capacity | |
| Oxidative interfacial polymerization | |
| P | |
| P&O algorithm | |
| Packed bed | |
| parabolic dish | |
| Parabolic dish collector | |
| Parabolic trough collector | |
| Parabolic Trough Collectors | |
| paracyclophanes | |
| Paraffin wax | |
| Parallel compression | |
| Partial Oxidation Catalyst | |
| Particulate Matter | |
| passivation | |
| Passive solar still | |
| PCCI | |
| PCIs | |
| PCM in Building | |
| Peak firing pressure | |
| PEM fuel cell | |
| perceived thermal comfort | |
| Percolation | |
| Perforation ratio | |
| Performance | |
| Performance Evaluation | |
| Phase Change Material | |
| Phase change material (PCM) | |
| Phase Change Materials | |
| photo current | |
| Photo Thermal Efficiency | |
| photo-electrochemical cell (PEC) | |
| Photo-voltaic | |
| Photoluminescence | |
| Photovoltaic | |
| Photovoltaic (PV) | |
| photovoltaic application | |
| Photovoltaic array configurations | |
| photovoltaic efficiency | |
| photovoltaic performance | |
| photovoltaic thermal (PVT) | |
| Photovoltaic thermal system | |
| Photovoltaic/thermal system | |
| Photovoltaicthermal | |
| PHWR | |
| PI Controller | |
| PID | |
| Pinch analysis | |
| Pine oil | |
| Plant microbial fuel cell | |
| Plasmonic Resonance | |
| Polarization curve | |
| policy | |
| Policy barriers | |
| Polyaniline | |
| Polyaniline (PANI) | |
| Polygeneration | |
| pongamia pinnata | |
| Porosity | |
| Porous Blockage | |
| Porous medium | |
| Post-Combustion CO2 Capture | |
| Potassium | |
| power | |
| power and turbine blade | |
| Power consumption | |
| power converter | |
| Power Generation | |
| Power generation curve | |
| power losses and | |
| Power output | |
| Pre-Combustion CO2 Capture | |
| Preheating | |
| Premixing Ratio | |
| Pressure | |
| Pressure drop | |
| pressure-drop | |
| price premium | |
| Process Integration | |
| Producer gas | |
| Propeller turbine | |
| Proportional EGR | |
| Protection | |
| protective over layer | |
| PSMP | |
| pulse laser deposition | |
| PV array configurations | |
| PV module | |
| PV modules | |
| PV/T hybrid solar dryer | |
| PVT | |
| PWR | |
| Pyrolysis | |
| Q | |
| Quality Analysis | |
| Quality measures | |
| Quantum dots | |
| quasi Switched Boost Inverter | |
| Quasi-dimensional simulation | |
| R | |
| Radiation model | |
| Raman Spectroscopy | |
| RBFN | |
| RCWA | |
| re-closure algorithm | |
| Reactive absorption | |
| reactive power control | |
| Reactive scheduling | |
| Receiver inclination | |
| Rectangular plate fin | |
| redox flow battery | |
| REDUCED GRAPHENE OXIDE | |
| reduced order | |
| Refueling | |
| Regeneration | |
| Regressive smoothing models | |
| Regulation | |
| RELAP/SCADAPSIM | |
| reliability | |
| Reliability of electricity | |
| Renewable Energy | |
| Renewable Hybrid Energy System (RHES) | |
| renewable sources | |
| Renewables | |
| Residence time | |
| Residential sector | |
| Resistance charging | |
| Response Surface Methodology | |
| Rhizodeposition | |
| Rice bran oil | |
| RPS | |
| RRS | |
| RSM | |
| Rural Application | |
| Rural electricity access | |
| Rural electrification | |
| S | |
| Salt hydrate | |
| Saponification | |
| Saturation pressure | |
| scandia stabilized zirconia | |
| SCE | |
| Scilab | |
| Scintillation detectors | |
| Scroll expander | |
| Seasonally Tracked | |
| Seawater | |
| Secondary Concentrators | |
| segregation | |
| semi-arid zone | |
| Semi-empirical model | |
| Semiconductors | |
| Sensible Heat Storage | |
| Separation zone | |
| Seperator | |
| Series-Parallel | |
| Shade tolerant crops | |
| shading | |
| shading devices | |
| shoot-through | |
| Short Term Load Forecasting | |
| Short-Circuit Current | |
| Silicon | |
| Silicon carbide | |
| Silicon nanoclusters | |
| simple boost control | |
| size of cells | |
| Sliding Mode Control | |
| small wind turbine blade | |
| SMD | |
| Smoke | |
| smoke density | |
| SMR | |
| Soapnut | |
| Sodium ion batteries | |
| Sodium ion battery | |
| Sodium vanadium phosphate | |
| Soiling | |
| Solar | |
| Solar Absorber | |
| solar absorptance | |
| Solar air heater | |
| Solar assisted heat pump | |
| Solar Cell | |
| Solar collector | |
| Solar Cooling | |
| Solar Distillation | |
| Solar Dryer | |
| Solar drying | |
| Solar energy | |
| solar energy storage system | |
| Solar farming | |
| solar gain | |
| Solar insolation | |
| Solar parabolic trough | |
| Solar Photovoltaics | |
| Solar pumps | |
| Solar PV | |
| Solar radiation | |
| solar resource assessment | |
| Solar thermal | |
| solar thermal hybrid technologies | |
| Solar thermophotovoltaics | |
| Solar tree | |
| solar updraft tower | |
| Solar water heater | |
| Solar Water Heating | |
| solid electrolyte | |
| solid oxide fuel cells | |
| Solid polymer electrolyte | |
| solid-liquid interface | |
| Solketal | |
| Solubility | |
| Soxhlet extraction | |
| Soy-lecithin | |
| Space heating | |
| Spark ignition engine | |
| specific capacitance | |
| Spectral control | |
| spectral response | |
| Spectrally selective absorber coating | |
| SPEEK | |
| Spherical solar power generator | |
| spiral receiver | |
| SPND | |
| Sponge iron plant | |
| Spray pyrolysis | |
| Spray tip penetration | |
| Sputtering power | |
| square enclosure | |
| SrTiO3 | |
| stack design | |
| Steam | |
| Steel | |
| stilbene | |
| stirred cell reactor | |
| Stirred tank photobioreactor | |
| Stoichiometric equilibrium model | |
| Stress Profile | |
| Structural repair | |
| structure-kinetic relations | |
| subsidy | |
| Substitution | |
| sugarcane bagasse | |
| Supercapacitor | |
| Superconductors | |
| Supercritical CO2 | |
| Surface response methodology | |
| Surface segregation | |
| surface study | |
| Surfactant | |
| Sustainability | |
| sustainable energy | |
| SVO | |
| Switched Boost Inverter | |
| Syngas | |
| System Thermal Cycles | |
| T | |
| Taguchi | |
| Tamarind seed oil | |
| Tar analysis | |
| Techno Economic Analysis | |
| Techno-economic analysis | |
| temperature | |
| Temperature reliability | |
| ternary semiconductor | |
| Terrain slope | |
| TES | |
| Test Blanket Module | |
| Test Blanket Module (TBM) | |
| THD | |
| Thermal battery | |
| Thermal Comfort | |
| Thermal conduction | |
| Thermal demand | |
| thermal efficiency | |
| Thermal energy storage | |
| Thermal energy storage capacity | |
| Thermal Hydraulics | |
| Thermal lattice Boltzmann method | |
| Thermal modeling | |
| Thermal performance | |
| Thermal power plant | |
| Thermal storage | |
| Thermal-hydraulics | |
| Thermo-hydraulic performance | |
| Thermochemical dissociation/desorption | |
| thermocouple | |
| Thermodynamic properties | |
| thermodynamics | |
| Thermohydraulic performance | |
| Thermohydraulic performance parameter | |
| Tilted Surface | |
| TiO2 | |
| tip deflection | |
| Titanium dioxide | |
| Torrefaction | |
| Total heat losses | |
| Total-Cross-Tied | |
| Tranesterification | |
| Transesterification | |
| transient behaviour | |
| Transport Phenomena | |
| triangular fins | |
| Triple-junction solar cell | |
| Tuning | |
| Turbine | |
| Turbulence | |
| Turbulent | |
| Turbulent flow | |
| twist ratio | |
| twisted tape | |
| Two stage | |
| Two-stage turbocharging | |
| Tyre | |
| U | |
| U tube receiver | |
| Ultrasonic testing | |
| Ultrasound | |
| Unrestricted melting | |
| urban redevelopment | |
| Urban renewal | |
| user experience | |
| user perception | |
| V | |
| Vacuum annealing | |
| Valorisation | |
| Van’t Hoff plot | |
| VARS | |
| VAWT | |
| Venturi mixer | |
| vertical inlet | |
| VFU | |
| void fraction | |
| voltage unbalance | |
| volume fraction | |
| Volumetric heat transfer coefficient | |
| Von-Mises stress | |
| W | |
| Waste Fried Oil | |
| Waste heat recovery | |
| water | |
| Water Boiling Test | |
| Water harvesting | |
| Water splitting | |
| Water turbine | |
| weight reduction | |
| Wind | |
| Wind effect | |
| Wind energy | |
| Wind speed forecast | |
| wind turbine | |
| wind turbines | |
| Wind velocity | |
| Wire mesh | |
| X | |
| X-ray diffraction | |
| Xenon | |
| Y | |
| yttria stabilized zirconia | |
| Z | |
| Z Source Inverter | |
| Zeolite 4A | |
| Zero head turbine | |
| zinc oxide nanofluid | |
| ZnS Nanoparticles(NP) | |