For contact: cs@cbmsr.org

PATTAYA 3rd World Conference on Sustainable Architecture, Civil Engineering & Built Environment: SACEBE-27

Call for Papers:SACEBE-27

Full Articles/ Reviews/ Shorts Papers/ Abstracts are welcomed in the following research fields:

1. Sustainable Architecture and Green Building Design

Sustainable architecture includes climate-responsive design, passive design, bioclimatic architecture, energy-efficient buildings, net-zero-energy buildings, low-carbon architecture, green building principles, daylighting, natural ventilation, passive heating and cooling, building orientation, thermal comfort, indoor environmental quality, healthy buildings, adaptable architecture, modular design, prefabricated construction, vernacular architecture, regenerative design, resilient architecture, universal design, smart buildings, high-performance façades, green roofs, living walls, sustainable landscape design, ecological architecture, urban biodiversity, building-integrated renewable energy, and environmental certification systems such as LEED, BREEAM, WELL, DGNB and Green Star.

2. Sustainable Construction Materials and Structural Engineering

Sustainable construction and structural engineering cover low-carbon concrete, geopolymer concrete, recycled aggregate concrete, self-healing concrete, high-performance concrete, ultra-high-performance concrete, fiber-reinforced concrete, timber structures, engineered wood, bamboo, recycled steel, sustainable masonry, composite materials, bio-based construction materials, phase-change materials, smart materials, nanomaterials, material durability, structural optimization, lightweight structures, reinforced concrete, steel structures, masonry structures, timber structures, bridges, high-rise buildings, long-span structures, structural rehabilitation, structural strengthening, seismic-resistant design, wind-resistant structures, progressive collapse, structural health monitoring, life-cycle assessment of materials, embodied carbon, construction waste reduction and circular use of building materials.

3. Energy-Efficient Buildings and Building Performance

Building performance research includes energy consumption, energy modelling, thermal performance, building envelope optimization, insulation systems, glazing, shading devices, cool roofs, HVAC efficiency, heat pumps, building energy management systems, renewable energy integration, solar photovoltaic systems, solar thermal systems, geothermal energy, district heating and cooling, energy storage, demand-side management, smart meters, building automation, occupancy-based control, artificial intelligence for energy optimization, digital twins, building information modelling for energy analysis, net-zero buildings, positive-energy buildings, carbon-neutral buildings, operational carbon, embodied energy, life-cycle energy assessment and post-occupancy evaluation.

4. Civil Infrastructure, Transportation and Sustainable Urban Development

Sustainable civil infrastructure includes roads, highways, bridges, tunnels, railways, airports, ports, drainage systems, utility networks, resilient infrastructure, infrastructure asset management, infrastructure rehabilitation, sustainable pavement, recycled asphalt, permeable pavement, intelligent transportation systems, public transportation, transit-oriented development, pedestrian infrastructure, cycling infrastructure, electric-vehicle infrastructure, smart mobility, traffic engineering, transportation planning, sustainable logistics, low-carbon transport, urban accessibility, compact cities, mixed-use development, sustainable neighborhoods, urban regeneration, brownfield redevelopment, land-use planning, urban sprawl, smart cities, resilient cities, inclusive cities, urban green infrastructure and climate-responsive urban planning.

5. Water, Wastewater and Environmental Engineering

Water and environmental engineering include sustainable water management, water supply systems, groundwater management, stormwater management, urban drainage, flood management, rainwater harvesting, greywater reuse, wastewater treatment, decentralized wastewater systems, constructed wetlands, sewage treatment, sludge management, water recycling, membrane technologies, desalination, drinking-water quality, pollution control, groundwater contamination, soil remediation, environmental impact assessment, solid-waste management, construction and demolition waste, waste-to-energy systems, landfill management, circular economy, resource recovery, nature-based solutions, sustainable drainage systems, low-impact development and water-sensitive urban design.

6. Geotechnical Engineering, Foundations and Sustainable Ground Engineering

Geotechnical engineering covers soil mechanics, rock mechanics, foundation engineering, shallow foundations, deep foundations, pile foundations, retaining structures, slope stability, ground improvement, soil stabilization, geosynthetics, tunnelling, underground construction, excavation engineering, liquefaction, landslides, geotechnical earthquake engineering, offshore foundations, contaminated soils, recycled materials in geotechnical applications, bio-mediated ground improvement, sustainable foundation systems, geo-environmental engineering, landfill engineering, expansive soils, soft soils, unsaturated soils, soil-structure interaction, foundation rehabilitation, geotechnical monitoring, remote sensing, machine learning in geotechnical engineering and climate-related ground instability.

7. Climate Resilience, Disaster Risk and Built Environment Adaptation

Climate resilience research includes climate-change adaptation, flood-resilient buildings, heat-resilient cities, coastal resilience, sea-level-rise adaptation, drought-resilient infrastructure, wildfire-resilient design, earthquake resilience, cyclone and hurricane-resistant construction, disaster-resistant housing, post-disaster reconstruction, infrastructure vulnerability, risk assessment, hazard mapping, urban resilience, community resilience, nature-based adaptation, resilient transportation systems, resilient water infrastructure, emergency planning, critical infrastructure protection, climate-risk assessment, insurance and infrastructure risk, early-warning systems, remote sensing for disasters, GIS-based risk modelling, resilient building codes and long-term adaptation planning.

8. Building Information Modelling, Digital Construction and Smart Built Environment

Digital construction includes Building Information Modelling, BIM-based design coordination, 4D and 5D BIM, digital twins, construction automation, robotics, drones, laser scanning, photogrammetry, augmented reality, virtual reality, mixed reality, Internet of Things, smart sensors, structural health monitoring, artificial intelligence, machine learning, computer vision, predictive maintenance, automated progress monitoring, digital project management, cloud collaboration, Common Data Environments, blockchain in construction, smart contracts, construction data analytics, parametric design, generative design, computational design, 3D printing, additive manufacturing, autonomous construction equipment, smart buildings and integrated digital infrastructure.

9. Construction Management, Economics and Sustainable Project Delivery

Construction management includes project planning, cost estimation, scheduling, procurement, contract management, construction productivity, quality management, health and safety, risk management, value engineering, supply-chain management, lean construction, sustainable procurement, green supply chains, life-cycle costing, whole-life costing, construction economics, infrastructure finance, public-private partnerships, project governance, stakeholder management, delay analysis, claims management, construction disputes, megaproject management, prefabrication, modular construction, off-site construction, construction logistics, waste minimization, carbon management, ESG in construction, corporate sustainability, sustainable project delivery and performance measurement.

10. Housing, Urban Design and Social Sustainability

Housing and social sustainability cover affordable housing, social housing, sustainable housing, energy poverty, housing quality, housing affordability, residential satisfaction, healthy housing, inclusive design, accessibility, age-friendly environments, community participation, public spaces, urban liveability, walkability, neighborhood design, place-making, social cohesion, cultural heritage, adaptive reuse, heritage conservation, informal settlements, slum upgrading, participatory planning, gender-sensitive urban design, child-friendly cities, elderly-friendly cities, equitable access to infrastructure, environmental justice, housing resilience and socially responsible urban regeneration.

11. Circular Economy, Carbon Reduction and Life-Cycle Sustainability

Circular built-environment research includes circular construction, design for disassembly, design for reuse, material passports, building-material reuse, construction waste recycling, urban mining, adaptive reuse, deconstruction, resource efficiency, industrial symbiosis, cradle-to-cradle design, embodied carbon assessment, operational carbon assessment, whole-life carbon, life-cycle assessment, life-cycle costing, environmental product declarations, carbon footprinting, carbon-neutral construction, carbon sequestration in building materials, biochar-based construction materials, carbon-cured concrete, low-carbon cement, recycled construction materials, sustainable procurement and circular business models in construction.

12. Interdisciplinary Sustainable Built Environment Research

Strong interdisciplinary areas connect architecture, engineering and environmental performance through BIM-based sustainability assessment, AI-driven building energy optimization, smart-city infrastructure, climate-resilient urban planning, low-carbon structural design, circular construction, renewable energy integration, sustainable transportation, green infrastructure, water-sensitive urban design, nature-based solutions, urban heat-island mitigation, smart materials, sensor-based structural monitoring, digital twins for infrastructure management, lifecycle carbon modelling, resilient housing, sustainable heritage conservation, construction automation, sustainable project economics, environmental policy, building regulations, occupant behavior, indoor environmental quality and the combined social, environmental and economic performance of buildings and infrastructure.