INDIAN INSTITUTE OF TECHNOLOGY HYDERABAD

Similar documents
INDIAN INSTITUTE OF TECHNOLOGY

GUIDELINES ON ENERGY CONSERVATION IN SEZs

Environmental Assessment of green buildings using GRIHA. Priyanka Kochhar TERI 15 th May,2009

Project location includes access to existing roads, existing water and wastewater infrastructure, and within or contiguous to existing development.

CONSULTING ENGINEERS ARCHITECTS PLANNERS

Frugal Smart Solutions for Pan City Development

No.D.12/30/2009-SEZ Government of India Ministry of Commerce & Industry Department of Commerce

Integrating Micro Watershed Harvesting Project Case Study: Central University of Rajasthan Bandarsindri. Water Shed

BaleHaus by White Design Architects

MAHINDRA WORLD CITY, JAIPUR CLIMATE POSITIVE ROADMAP SUMMARY

Rosslyn Sector Plan Status Update. Environment and Energy Conservation Commission Meeting May 18, 2015

2011 Enterprise Green Communities Criteria Checklist

1.a.1. Wetlands, Including Artificial and Degraded Systems None

P WER OF DESIGN. by SANDEEP SHIKRE, leed AP

Point wise reply. There is no change in water requirement and wastewater generation. However, water balance enclosed as Annexure-I.

CONCEPTUAL PLAN. for. Submitted to: State Level Environmental Impact Assessment Authority (SEIAA), MoEF&CC, Telangana State.

PROJECT: UC SANTA CRUZ SHW SUSTAINABILITY LUNCH AND LEARN

Sustainable Mass Housing

Sr Alan SIN Chief Property Services Manager/2

UNIFIED FACILITIES CRITERIA (UFC)

LEED Credits. How FieldTurf Can Contribute To Obtaining

Embracing a New Future: Toward Sustainability in Greensburg, KS

IGBC certification in multi dwelling residential developments S I M P L I F I E D. Arpan Johari Principal architect AW design.

Low-carbon Energy Efficient Urban Environment

Workshop #3 Sustainability

AIA 150 Celebration SDAT Sponsors & Supporters Resort Association

Innovative Water Management. Guruprakash Sastry Regional Head Infrastructure/Green Initiatives

Barangaroo South- A New Model for Australian Precinct Infrastructure. 3rd June 2015

Sustainable Design Plan

Existing vegetation with each tree detail like species, girth, canopy etc. Contours with levels Natural features like water body, stream etc.

Climate Resilience & Green Building 21 st April 15

Mili Majumdar, Director, Sustainable Habitat Division, TERI

Environmental Principles

Prerequisite. prerequisite.

Features of an eco city from an international perspective

Draft Plan for Carolina North Campus University of North Carolina at Chapel Hill Public Meeting August 28, 2007

State Of The Art Office Building & Campus For Maharashtra Energy Development Agency(MEDA) At AUNDH, PUNE

2016 SUSTAINABLE HOTEL AWARD WINNERS. Sustainable Project Design Sustainable Operations Sustainable Communities

TABLE OF CONTENTS. Para No. Contents Page No

Net Zero Buildings. Indian Green Building Council. 16 February 2017

WATER SUPPLY ASSESSMENTS

Green Urban Design: Lessons from around the globe. Claire Bonham-Carter, Director of Sustainable Development, EDAW

Part 6 Appendices & Schedules

Case study of an ECBC Compliant, Energy Efficient Building: Aranya Bhawan, Jaipur

BRIGADE RESIDENTIAL DEVELOPMENT

What is the. Port Whitby Sustainable Community Plan

GIFT- A Smart City. A Global Financial Hub

ADEC S SUSTAINABLE FUTURE SCHOOLS PROGRAM

EFFECTIVE USE OF WATER AND ENERGY

RAJASTHAN REFINERY TOWNSHIP PROJECT, RAJASTHAN

TORONTO GREEN STANDARD v3

Infosys. Driven by Values

Rural Production Environment (RPE)

Comprehensive Solar installations in IIT Roorkee Campus

SUSTAINABLE DEVELOPMENT

Energy consciousness in the Long-term Urban Development Plan and in the Mid-term Strategy for Development of Budapest

Port Whitby Sustainable

TO MAKE A DIFFERENCE TO THE WORLD, YOU START BY BEING DIFFERENT. RENEWABLE ENERGY

The Proposed Expansion of Existing ARTEMIS HOSPITAL at Sector-51, Gurgaon (Haryana). In CONCEPTUAL PLAN PROJECT LAYOUT AND DEVELOPMENT CONTEXT

Strategic Plan. A public, non-profit agency providing water, sewer and reclaimed water services to the Carrboro-Chapel Hill community.

Environmental Principles

Water Supply and Delivery

Challenges of Sustainable Infrastructure AAEES UCI

Site Plan and Subdivision Review

DESIGN GUIDELINES FOR MULTI FAMILY AND ATTACHED SINGLE FAMILY INFILL HOUSING

Academic Year Second Term. Science Revision sheets

Laurel School Upper Campus Building Features

Indian Green Building Council (IGBC)

CII 18 th National Award for Excellence in Energy Management ICICI Bank Zonal Office Ambattur, Chennai

KUWAIT NEIGHBORHOOD PROPOSAL

SUSTAINABLITY in ALBANY

Policy Name: Environmental Sustainability Policy number and code Legal reference

2: Guiding Principles

Smart energy grid using local energy resources

CSIRO Energy Centre Newcastle, New South Wales, Australia

Expansion of Calcutta Riverside (An Integrated Township)

BARANGAROO SOUTH CLIMATE POSITIVE ROADMAP SUMMARY

SITE SELECTION AND PLANNING

Pre-Feasibility Report

TORONTO GREEN STANDARD VERSION 2.0

SHAPING SUSTAINABLE SMART CITIES IN INDIA

LEED REQUIREMENTS. Source reference: Supplemental Guidance to the Minimum Program Requirements (MPR), Rev. 2, 9/1/2011

providing the highest quality of life with the lowest environmental footprint. A Sustainable City What is Masdar City? 100% Renewable Energy

RESPONSE FROM CAROL MOSELEY BRAUN FOR MAYOR

Green Audit Report. Arts, Commerce and Science College

CLIMATE ACTION REVENUE INCENTIVE PROGRAM (CARIP) PUBLIC REPORT For Reporting Year = 2013

CACTUS GREEN PARK A GREEN AND RESILIENT NEIGHBOURHOOD PIONEERING SUSTAINABLE SOLUTIONS FOR GREEN CITIES PROJECT IMPACTS

Building and Operating Practices and Guidelines

Requires all new county-owned buildings greater than 5,000 square feet to be Leadership in Energy and Environmental Design (LEED) certified.

Environmental Impact Statement Addendum A Revisions to the Okanogan County Comprehensive Plan February 11, 2011

Sustainability Statement. Gainsford Road. For Pocket Living. XCO2 energy. April 2016

S e c t i o n S u b d i vision

CONECPTUAL PLAN. w.r.t. Amendment (Expansion) Project of Kalpataru Solitaire. M/s Kalpataru Limited December, 2016

Hammarby Sjöstad, Stockholm, Sweden

CHAPTER 6 PROFILE OF URBAN PUNJAB WITH SPECIAL REFERENCE TO LUDHIANA CITY

Integrated Infrastructure

Taylor Institute. LEED Certification : GOLD

ADDITIONAL ATTACHMENTS TO FORM-1 M/S. SDB DIAMOND BOURSE

Village Development Strategies: An approach towards Rurbanisation..

36 BTrd / DP Architects ArchDaily

Transcription:

INDIAN INSTITUTE OF TECHNOLOGY HYDERABAD SUSTAINABLE ARCOP LARGE ASSOCIATES DEVELOPMENT PRIVATE LIMITED

SUSTAINABILITY AND THE CITY WHAT ARE WE TALKING ABOUT THE LINK KNOWN COMPONENTS OF AN URBAN FABRIC THE BUILT (PRIVATE REALM BUILDINGS) THE UN-BUILT (PUBLIC REALM STREETSCAPE, URBAN SPACES ) WHERE DOES THE ISSUE OF SUSTAINABILITY STAND THE BUILT PART OF THE LARGER FRAMEWORK, BUT THE SOLE FOCUS THE UN-BUILT YET UNEXPLORED THE PLATFORM \FRAMEWORK A BASE ON WHICH BOTH OF THESE ARE PLACED NEEDS TO BE ATTENDED TO

WHAT IS SUSTAINABLE? THE CANVAS NOT JUST SUSTAINABLE RESOURCE MANAGEMENT (ENERGY, TIME, WASTAGE, AIR, WATER) BUT ALSO SUSTAINABLE VALUE CREATION (ECONOMIC, INTELLECTUAL) SUSTAINABLE PLANNING (CURRENT &FUTURE) SUSTAINABLE QUALITY OF LIFE (SOCIAL, TECHNOLOGY)

IIT HYDERABAD; INDIA THE UNIQUE DESIGN CHALLENGE A 600 Acre Campus THE CANVAS A Master Plan Designed For 100 Years To be built in phases Total Campus For 40,000 Residents Total 20,000 Students Campus planned & designed for Education And Research, Neighborhoods To Students, Neighborhoods To Families, Community Centers &Public Buildings, Recreation & Sports.. Happy Sustainable Community Life. ROLE OF ARCOP MASTER PLANNER, URBAN DESIGNER LANDSCAPE DESIGNER AND ARCHITECTS FOR ACADEMIC BUILDINGS SUSTAINABLE DESIGN COORDINATION WITH OTHER ARCHITECTS

THE REGION THE SITE Locate near Kandi Village on National Highway 9 Being on N-H 9 towards Mumbai, Campus is easily accessible. A micro study of the campus topography shows system of strong natural surface run off towards the regional level lakes within 3 Km of site. 1.7 KM THE CANVAS 1 2 2.8 KM 3 1 2 3 4 IIT Hyderabad (0.0km) O.R.Road (15.0km) Lumbini Park (56.0km) R.G.I. Airport (60.0km) 4 N

USING THE TOPOGRAPHY THE PROCESS - SITE SITE CONDITION-ELEVATIONS SITE CONDITION-WATERSHED SITE CONDITION-VEGETATION MINIMAL SITE INTERVENTION CREATION OF LAKES IN THE DEPRESSION AREAS LOCATING A GREEN LUNG

EFFECTIVE LAND UTILIZATION THE PROCESS - ASSESSMENT SPREAD ON GROUND STACKING DIAGRAM PRINCIPLE OF MINIMUM FOOT PRINT (16% BUILDABLE FOOTPRINT) APPROPRIATE OPEN SPACE SENSIBLE DENSITY AND BUILT VOLUME

2.8 km WHOLE TO A PART THE PROCESS - PLANNING 1.7 km ORGANIZATION STRUCTURE MIXED LAND USE STRUCTURE PHASING STRUCTURE GREEN SPINE AS THE ORGANIZATION STRUCTURE INTERACTIONS & PROXIMITIES SELF SUFFICIENT PHASES WALKABLE, CYCLABLE, LIVABLE CAMPUS

PART TO A WHOLE THE PROCESS - PLANNING TOWN CENTER & STUDENT COMMONS ACADEMIC QUAD HOSTEL QUAD QUAD, A QUADRANGLE: A SYSTEM OF INDIVIDUAL BLOCKS SPATIALLY DISPOSED IN FLEXIBLE COMBINATION AROUND A COURTYARD VARIOUS QUADS WOVEN ALONG A STRONG PEDESTRIAN SPINE DIFFERENT PEDESTRIAN SPINES CULMINATING INTO A TOWN CENTER

WALKABLE CAMPUS THE PROCESS - MOBILITY TIME DISTANCE ANALYSIS A 10 MIN WALK APPROACH WORKING TOWARDS A STRONG PUBLIC TRANSPORT FOR INTRA CAMPUS MOVEMENT PRIORITY TO PEDESTRIAN MOVEMENTS, CYCLE PATHS, BATTERY BUSES

FUTURE FLEXIBILITY THE PROCESS LONG RANGE PLANNING MODULAR SYSTEM OF PLANNED GROWTH PROVIDING SHORT TERM PLANTATION FOR FUTURE PHASES PHASING OF INFRASTRUCTURE TO SUPPORT GROWTH & CHANGE

LANDSCAPE THE PROCESS - LANDSCAPE URBAN FOREST, STRIP PLANTATION A GREEN LUNG 14% VEGETATIVE COVER AND NATIVE TREES PRODUCTIVE LANDSCAPE ON PAVED SURFACES 7%

TECHNOLOGY UTILIZATION THE PROCESS TECHNOLOGY SYSTEM TECHNOLOGY TO ARRIVE UPON OPTIMUM DESIGN THOUGH MICRO STUDIES BIM LEAN APPROACH TO DESIGN & CONSTRUCTION PROCESS C & D WASTE MANAGEMENT MANAGEMENT AND MONITORING CAMPUS MONITORING HUB SERVICE TUNNELS FOR EASY ACCESS FOR MAINTENANCE

FRUGAL ENGINEERING AIR, WATER, ENERGY THE PROCESS WATER AND ENERGY SYSTEMS WATER SYSTEM UTILIZE, STORAGE AND RECHARGE - SWALES ( 4%) AND LAKES (2.3%) BATTERY LESS SOLAR FARM FOR 40% ENERGY, COMPLIMENTED BY ROOF TOPS SOLAR PANELS (4%) DISTRICT COOLING EFFICIENT BECAUSE OF DIVERSITY ORGANIC WASTE TO BE RECYCLED TO GENERATE ENERGY - 3000 KG / DAY

ENERGY CENTERS THE PROCESS ENERGY SYSTEMS ELECTRICAL ENERGY VENTILATION AND AIR-CONDITIONING CENTRAL COMMAND AND CONTROL STATION

STRATEGIES THE PROCESS ENERGY SYSTEMS CENTRALIZED DG SETS CENTRALIZED CHILLING PLANT ( DISTRICT COOLING) RADIANT COOLING ZONING DISTRIBUTION

STRATEGIES continued THE PROCESS ENERGY SYSTEMS THERMAL STORAGE (OFF PEAK LOADS) OFC BACKBONE CONTROLS ENERGY RECOVERY

RENEWABLE ENERGY THE PROCESS ENERGY SYSTEMS GRID INTERACTIVE SOLAR FARM (40%) SOLAR THERMAL

ENERGY PERFORMANCE THE RESULT BASE CASE ELECTRICAL DEMAND DESIGNED ELECTRICAL DEMAND 35 MW 22 MW BASE CASE AIR CONDITIONING DEMAND DESIGNED CASE AIR CONDITIONING DEMAND 18000 TR 9200 TR

ENERGY PERFORMANCE THE RESULT BASE CASE EPI ACADEMIC HOUSING HOSTELS 170 kwh / sqm / yr 1 kwh / sqm / yr 1 kwh / sqm / yr TARGET EPI ACADEMIC HOUSING HOSTELS 100 kwh / sqm / yr 1 kwh / sqm / yr 1 kwh / sqm / yr

WATER CONSERVATION BASELINE ADOPTED Total Savings = 55,29,190 LPD LPCD FIGURES Academics Residential Domestic Water Demand 45 200 Total Demand 3038850 12857200 TOTAL (LPD) 158,96,050 LPCD FIGURES Academics Residential Domestic Water Demand 25 135 Total Demand 1688250 8678610 TOTAL (LPD) 103,66,860 THE RESULT ESTIMATED SAVINGS ARE BEING ACHIEVED BY THE FOLLOWING MEASURES: Reduction on water consumption by using latest approved water conservative Low Flow Sanitary Fixtures & Fittings as per MOEF, TERI GRIHA, and Green Building guidelines. Water Metering shall be done to monitor and control the water use leading to reduced UFL Unaccounted For Losses.

WATER BALANCING THE RESULT

WATER BALANCING THE RESULT Total (in LPD) Total Domestic Water Demand 103,66,860 Total Sewerage Generated (Total Domestic Demand x 0.9) 9330174 Total Treated Effluent Water Available from STP for 8397157 Recycling (90%) Total Amount Re-used for Flushing Water Purposes 3421064 Balance Water Available for Discharge to external site 4976093 irrigation Net Daily Fresh Water Required per Day 69,45,796 HIGHLIGHTS OF WATER MANAGEMENT PLAN : 100% Recycling of Waste water for re-use in the campus leading to 30% Reduced Freshwater Demand Treated wastewater after tertiary treatment shall be directly re-used for flushing and horticulture/ landscaping within the Project Area Tube wells/municipal Supplies required only for net daily domestic fresh water requirements.