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Innovative Materials & Technologies for Next Generation Green Buildings

SUPRA INSTITUTIONAL NETWORK PROJECT Under CSIR-12TH FIVE YEAR PLAN

Task – 3.5: Technology packages for mass housing in urban areas for different geo-climatic regions

Task Leader:-  Mr.Ashok Kumar

Objective:

Development of energy efficient, environmentally, socially & economically sustainable and affordable  mass housing.

Scope of Work:
  1. Case studies of the existing housing solutions developed by various organizations and carry out qualitative and quantitative analysis of different parameters to identify the gaps.
  2. Development of design alternatives integrating the identified gaps.
  3. Development of cost – effective & appropriate building materials and technologies for achieving energy – efficiency and thermal comfort for different geo- climatic regions.
  4. Performance evaluation and simulation modelling of the identified / developed technologies, systems, and designs.
  5. Implementation of the technology packages in the prototype model building for validation of the results at CSIR-CBRI Roorkee.
  6. Development of technology packages for different geo-climatic regions including standardized designs, specifications and a manual /
  7. DPR of the construction process including erection and jointing details.

Glimpses of Work

Sub Task – 3.5.1: Development of an Automatic Hollow Gypsum Panel Making Machine

Objective:

To design and develop an automatic machine for producing Hollow Panels.

 

Sub Task – 3.5.2: Light weight blocks using different industrial waste

 Objective:

To develop light weight building components using industrial wastes.

 

SINP
  • Home
  • Salient Features & Outcomes
  • Work Packages
    • WP1 : Performance Enhancement of Materials through Nanotechnology
    • WP2 : Next Generation Concretes for Sustainable Construction
    • WP3 : Green Building Technologies
    • WP4: Materials & Technologies for Hazard Reduction
  • Tasks
    • Task-1.1 : Nano-engineered Cementitious Materials
    • Task-1.2 :Multifunctional Coatings Using Nanotechnology
    • Task-1.3 : Enhancing the Fire Retardancy of Polymeric Materials using Nanocomposites:
    • Task-1.4 : Phase Change Materials (PCM) for Energy Efficiency in Buildings
    • Task-2.1 : Geopolymer Concrete
    • Task-2.2 : Bio-Concrete as self Healing Material
    • Task-2.3 : Hybrid Fiber Reinforced Concrete (HYFRC) in Structural Applications
    • Task-2.4 : Development of Pervious Concrete
    • Task-3.1 : Green Retrofit Strategies for Office Buildings
    • Task-3.2: Demolition Wastes as Raw Materials for Low Cost Construction
    • Task-3.3: Solar Thermal Air Conditioner
    • Task-3.4: Solid Industrial Waste – A Resource Geo- material for Civil Construction
    • Task-3.5: Technology packages for mass housing in urban areas for different geo-climatic regions
    • Task-3.6: Development of Robust Foundation for Difficult Soils
    • Task-4.1: Indigenous Cathodic Protection System for Steel Reinforced Concrete Structures
    • Task-4.2: Development of fire safe polymeric composite panels
    • Task-4.3: Study of Impact behaviour of Reinforced Concrete Elements
    • Task – 4.4: Improved Ventilation System for Cleaner Built Environment
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