bhavana konduti
about me.
hello ! I am a Bachelor of Architecture graduate with a strong interest in thoughtful, con- text-responsive, and human-centered design. I believe architecture should create meaningful experiences by responding sensitively to people, place, and environment. Driven by curiosity and a strong enthusiasm for learning, I am constantly exploring new ideas, design approaches, and technologies to broaden my understanding of archi- tecture. Throughout my academic journey and professional experience, I have devel- oped skills in conceptual design, architectural visualization, technical documentation, and research while cultivating a detail-oriented and collaborative approach to design. This portfolio reflects my journey as an emerging architect, showcasing a selection of projects that represent my design process, technical abilities, and continuous growth as a designer. contact details : +91 9966408434 kondutibhavana2004@gmail.com Hyderabad
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EDUCATION EXPERIENCE PROFICIENCY LANGUAGE FEILD OF INTEREST 2007 - 2011 2011 - 2019 2019 - 2021 2021 - 2026 2023 - 2024 2023 - 2024 2024 2023 - 2024 2024 2025 Rama Devi Public School, Hyderabad, Rangareddy Poster Designer and Video editor for college department and NASA Photography trophy (NASA) participated and shortlisted in ZNC’65 and ANC 66’ Worked as curate content for mynasaindia instagram page at NASA ANC’66 PR Head for college Department Summer internship at WOODVEDH INTERIORS, HYD Photography trophy (NASA) Special Mention -1 at the 67th NASA Convention, Zone-5 Worked as an Intern at 23 DEGREES DESIGN SHIFT, HYD AUTO CAD SKETCHUP ENSCAPE D5 RENDER PHOTOSHOP INDESIGN MS OFFICE TELUGU PHOTOGRAPHY TRAVELLING VIDEOGRAPHY DESIGN RESEARCH ENGLISH HINDI Heritage Valley the Indian School, Shadnagar, Rangareddy Excellencia junior college, Shamirpet,Medchal KL UNIVERSITY (School of Architecture), Vaddeswaram, Guntur, Andhra Pradhesh
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This project rethinks conventional educational design by moving away from enclosed, rigid, and vertically stacked institutions toward a low-rise, climate-responsive, and free-flowing architecture campus. It envisions a porous, landscape-integrated learning environment where education extends beyond traditional classrooms into flexible open and semi-open spaces. Drawing from culturally rooted and climate-responsive elements such as courtyards, verandas, and transitional spaces, the design fosters interaction, collaboration, informal exchange, and experiential hands- on learning while enhancing thermal comfort and strengthening the connection with nature. By exploring how spatial planning and open en- vironments influence creativity, behaviour, and well-being, the project aims to create a human-centric architecture school that redefines the relationship between space, learning, and the built environment. Thanal School of Architecture 01
Site Overview The selected site is located in Kakkanad, Kochi, Kerala, near the NH 66 corridor, and covers 78,280.91 sq.m (19.3 acres). It offers a balance between a peaceful natural setting and a well-connected urban environment. The site’s accessibility, open landscape, and scope for future expansion make it well suited for an architecture school. It supports the vision of creating a low-rise, interactive, and nature-integrated campus that encourages collaboration, creativity, and experiential learning.
Site Analysis The site slopes from +9 m to +1 m, with a central low point acting as a natural catchment where runoff accumulates. Being low-lying, it also collects sewage and stormwater, causing waterlogging and requiring proper drainage planning. Natural drainage flows towards the lower contour areas within the site, guiding surface runoff and en- abling efficient stormwater movement while reducing the risk of water accumulation in higher elevations. The site is near 10°N latitude, so the sun is almost over- head twice a year. It has high solar angles in both summer and winter, with strong east and west sunlight causing heat gain. Overall, the site receives high solar radiation throughout the year, affecting thermal com- fort. Natural drainage flows towards the lower contour areas within the site, guiding surface runoff and en- abling efficient stormwater movement while reducing the risk of water accumulation in higher elevations. The site presents contrasting environmental condi- tions, with significant traffic noise along the adjacent road edge and uninterrupted views towards the surrounding greenery and the bird sanctuary in the background. Existing vegetation is scattered across different zones of the site, creating a green landscape that enhances thermal comfort, supports local biodiversity, and can be incorporated into the site’s planning strategy.
Design Development The campus is organized as a spatial journey that re- sponds to the site’s environmental conditions. Begin- ning with a vibrant public edge facing the busy road, the design introduces green and thermal buffers that gradually mitigate noise and heat. This transition leads to a productive academic core that encourages collaboration and experiential learning, before cul- minating in a quiet zone dedicated to focused study and research. The sequence creates an environmental gradient—from noisy to productive to silent—ensuring that each function is located within the most appropri- ate acoustic and climatic setting. The building massing is oriented to maximize northern daylight while aligning with the prevailing sea and land breezes. Open courtyards, staggered blocks, and in- terconnected spaces allow wind to flow freely through the campus, creating naturally ventilated, well-lit, and thermally comfortable learning environments. ORIENTATION SITE ZOING
Design Strategy The warm sea breeze is first tempered by shaded vegeta- tion, water channels, and verandas before being distributed through the building, where cross ventilation removes accumu- lated heat and creates comfortable activity spaces.
Concept The architecture school follows the concept of porosi- ty, using courtyards, voids, open corridors, and perme- able materials to create a breathable built environ- ment. This porous nature improves natural ventilation, visual connectivity, and encourages learning through observation and interaction. The building is elevated on stilts in response to Kerala’s flood-prone condi- tions. It steps down with the site’s natural contours, from higher to lower levels, minimizing flood risk in low-lying areas while allowing water to flow naturally beneath the structure.
02 01 15 HP PETROL PUMP APARTMENTS MEMORIAL 03 LEGEND 01. ENTRANCE / EXIT 02. PARKING 03. CANTEEN AND STATIONARY 04. CONSTRUCTION YARD 05. WORKSHOP SPACE 06. ADMIN AND STAFF BLOCK 07. EXHIBITION AND OUTREACH BLOCK 08. STUDIOS AND LECTURE BLOCK 09. LIBRARY BLOCK 10. LAB BLOCK 11. COURTYARD 12. SPORTS ZONE 13. TRANSFORMER YARD 14. PHASE-2 CONSTRUCTION (HOSTELS) 15. SERVICE ENTRY
GREEN LAND 04 12 14 13 06 07 08 08 10 11 09 05
08 07 02 01 03 05 04 06 09 10 11
01. ADMINISTRATION BLOCK 02. STUDENT /FACULTY INTERACTION SPACE 03. EXHIBITION AND OUTREACH AREA 04. STILT SPILLOUT SPACE 05. WASHROOMS 06. CENTRAL COURTYARD 07.. CONSTRUCTION YARD
01. ADMINISTRATION BLOCK 02. STUDENT /FACULTY INTERACTION SPACE 03. EXHIBITION AND OUTREACH AREA 04. STILT SPILLOUT SPACE 05. WASHROOMS 06. CENTRAL COURTYARD 07.. CONSTRUCTION YARD 08. CARPENTRY WORKSHOP SPACE 09. METAL WORKSHOP SPACE 10. MATERIAL EXPLORATION LAB 11.PAINT WORKSHOP
SOUTH WEST ELEVATION
EXPOSED RED MUD BRICKS The porous brick surface absorbs and releases moisture, aiding in passive cooling through thermal mass. It reduces heat buildup and stabilizes indoor temperatures throughout the day. TERRA COTTA JALI The perforated jali allows continuous airflow while diffusing harsh sunlight, reducing heat gain inside spaces. Its porous nature promotes cross ventilation, keeping interiors naturally cool and breathable. MANGLORE MUD ROOFING TILES These clay tiles provide thermal insulation by reducing direct heat transfer from the roof into the building. Their natural material and air gaps help dissipate heat, maintaining cooler indoor temperatures. LOUVERS Louvers regulate airflow by allowing controlled venti- lation while blocking direct sunlight. This enhances air circulation and prevents heat accumulation, improving thermal comfort inside the building.