International Conference on Sustainable Energy, Materials and Techniques ICSEMT on May 28-30, 2027 in Jalandhar, India - Conference Index

International Conference on Sustainable Energy, Materials and Techniques ICSEMT on May 28-30, 2027 in Jalandhar, India

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International Conference on Sustainable Energy, Materials and Techniques (ICSEMT) May 28, 2027 - Jalandhar, India

ICSEMT 2027 provides a premier global platform for researchers pioneering advancements in sustainable energy, alternative fuels for IC engines, and thermal-fluid techniques. The conference bridges fundamental physics, advanced simulations, and experimental applications to accelerate essential global decarbonization efforts. Through collaborative technical sessions and visionary keynotes, attendees will directly shape a resilient future. The original research will be selected for publication in the Scopus-indexed journal (JPCS).

Track 1: Thermal-Fluid Techniques for Sustainable Energy Systems

This track covers physics, numerical simulations, and experimental methods applied to energy engineering.


Advanced Heat Transfer: Applications in solar collectors, geothermal systems, nuclear reactors, and waste heat recovery.


Multiphase & Micro-Scale Transport: Boiling/condensation in power cycles, micro-channel cooling for electronics/batteries, and two-phase flows utilizing nanofluids.


Thermal Management: Battery Thermal Management Systems (BTMS), fuel cells, power electronics, and heat exchangers for electric vehicles (EVs) or Organic Rankine Cycles (ORC).


Computational & Experimental Methods: CFD, Lattice Boltzmann, AI/ML optimization, advanced measurement techniques (PIV, IR thermography), and transient testing of thermal storage.


Track 2: Sustainable Energy Systems & Technologies

This track emphasizes system-level integration, power generation cycles, and broader decarbonization efforts.


Renewable Energy Power Plants: Solar thermal, PV-thermal hybrids, wind-solar integration, ocean, and geothermal systems.


Energy Storage Systems: Engineering design of thermal storage, battery packs, mechanical storage (CAES/Pumped Hydro), and hydrogen storage infrastructure.


Power Cycles & Conversion: Cogeneration, poly-generation, ORCs, waste heat recovery, and thermoelectric generators.


Efficiency & Policy: HVAC design, heat pumps, net-zero buildings, pinch analysis, carbon capture (CCUS) integration, Life Cycle Assessment (LCA), and energy economics.


Track 3: Combustion, Fuels & Advanced Engines

This track investigates fundamental combustion science, alternative fuel properties, and clean power generation technologies.


Combustion Fundamentals: Flame dynamics, chemical kinetics of ignition/extinction, turbulent combustion, and spray atomization.


Alternative Fuels: Hydrogen, ammonia, syngas, biodiesel, bio-alcohols, fuel blends, and synthetic fuel characterization.


Advanced Engines & Turbines: Internal combustion engine design, fuel injection strategies, in-cylinder processes, and gas turbine combustors.


Clean Combustion Strategies: Low-Temperature Combustion (LTC), HCCI, RCCI, lean burn, and oxy-combustion.


Emissions Control: Soot/NOx formation mechanisms, particulate matter (PM) reduction, diagnostics, and after-treatment technologies (SCR, DPF).


Track 4: Advanced Materials, Manufacturing & Sustainability

This track explores functional materials for clean tech, energy storage, and sustainable production processes.


Energy & Thermal Materials: Electrodes for batteries/supercapacitors, solid-state electrolytes, fuel cell membranes, Phase Change Materials (PCM) synthesis, and nanofluid characterization.


High-Temperature & Protective Coatings: Thermal Barrier Coatings (TBCs), refractory materials, oxidation-resistant alloys, and catalytic materials for hydrogen systems.


Sustainable Manufacturing: Bio-composites, biodegradable polymers, green synthesis, topology optimization, surface texturing, additive manufacturing, and material degradation analysis.


Clean Tech Applications: Photocatalysts, adsorbents for carbon capture (MOFs, zeolites), and lightweight material designs.

Name: Dr. B R Ambedkar National Institute of Technology (NIT) Jalandhar
Website: https://v1.nitj.ac.in/icsemt_2027/
Address: Department of Mechanical Engineering, Dr. B R Ambedkar National Institute of Technology (NIT) Jalandhar, G.T. Road, Amritsar bypass, Jalandhar-144008, India.

Hosted by NIT Jalandhar, ICSEMT 2027 unites experts to advance sustainable energy, materials, and thermal-fluids. It bridges fundamental physics and applied research to drive decarbonization. The selected papers will be published in the Scopus-indexed journal (JPCS).
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