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PROFILE DOA TAREK ELDMNAWY SOFTWARES EDUCATION CONTACT INFO ACADEMIC PROJECTS PROFESSIONAL EXPERIENCES ARCHITECT AND URBAN DESIGNER CERTIFICATIONS, TRAINING & LANGUAGES Fresh graduate architect and urban designer (Ain Shams University, 2026) with hands-on site engineering experience on live construction sites. Works fluently across BIM and CAD to move projects from concept through construction documentation, with a growing focus on quality control and specification compliance during execution. 2025 Site Engineer Intern Rowad Modern Engineering Verified flooring, wall cladding, and false ceiling installations against approved specifications during the fit-out of a medical manufacturing facility. Conducted 10+ on-site quality inspections, flagging non-conformances for corrective action. 2024 Technical Engineer Intern EGY Builders Developments Produced 3D models and construction documents. 2026 Crafts Island Urban Design & Architecture Project 50 Feddan Integrated urban design and architectural proposal focused on cultural regeneration, public realm enhancement, and craft-based economic development. 2025 Archi-Tech Nexus Urban Design Project 22 Feddan Mixed-use innovation district integrating technology, education, and public space through sustainable urban planning strategies. 2024 Luxury Waterfront Hotel Design 18,000 m² Hospitality design applying climate-responsive strategies Certificate in Revit Architecture Cad Masters — Summer 2023 B.Sc. in Architecture Engineering, Urban Design Major — Faculty of Engineering, Ain Shams University (Fresh Graduate, 2026) Certificate in Photoshop Architecture Information Technology Institute (ITI) — Summer 2023 Languages Arabic (Native), English (Very Good) 10th of Ramadan City, Sharqia, Egypt 01062224723 doatarek72@gmail.com
TABLE OF CONTENTS00 01 CRAFTS ISLAND 02 LUXORIOUS HOTEL 03 AGRI‐TECH NEXUS 04 LECTURE HALL 05 ARTS AUDITORIUM
01 GRADUTION PROJECT TYPOLOGY LOCATION YEAR AREA SOFTWARE HERITAGE CRAFTS ISLAND LUXOR - QENA BOARDERS 2026 50 FEDDANS AUTOCAD - 3D MAX - SKETCH UP LUMION - PHOTOSHOP - AI TOOLS ( Individual Design Project ) VIRTUAL TOUR
Developed as an urban regeneration project, The Nile Craft Center serves as a community-oriented catalyst for cultural preservation and social interaction within a heritage-rich context. The design reinterprets traditional architectural and urban principles through interconnected courtyards, shaded pedestrian networks, and landscaped public spaces. By integrating craft workshops, educational facilities, exhibition spaces, and communal gathering areas, the project supports local artisans, strengthens cultural identity, and revitalizes the urban fabric. Through context-responsive urban design, placemaking strategies, and climate-conscious public realm interventions, it enhances walkability, social interaction, and economic vitality while creating a vibrant destination rooted in local heritage and collective memory. PROJECT OVERVIEW
01 . STUDIES EGYPT LUXOR SITE 1.1 LOCATION 1.8 USERS 1.2 CONTEXT 1.3 ACCESSIBILITY AND MOBILITY For a Nile-side site, safe siting means ≥200 m for noise and ≥100 m for vibrations to ensure comfort and structural safety. 1.7 CONCEPT In 1400 BCE, Luxor was home to the City of Craft Makers– A settlement of artisans who built and decorated the temples of the pharaohs. Inspired by the ancient Egyptian temple procession where The priest walked A Ritual Path From The Outer Pylon To The Holy Of Holies. Along this Path, Light , Height , Spatial Atmosphere transform. Each step was a spiritual transition . 1.5 RAILWAY NOISE 1.6 RAILWAY VIBRATIONS 1.4 TOPOGRAPHY A gentle slope of 1:30, which is considered mild as it allows stable land use without significant grading challenges. Tourists Local Families Staff & Workers Craftsmen & Artisans Retirees Section 1-1 Section 2-2
2.3 USER EXPERIENCE JOURNEY : CRAFTS CENTER STAGE 1: INTRO (OUTDOOR) Raw material types Brief craft info STAGE 2: STORAGE & EXHIBITION (INDOOR) Material storage Historical products STAGE 3: LIVE SHOW (OUTDOOR) Artisans working live Visitor observation STAGE 4: WORKSHOP (IN/OUT) Visitor creation Nile view STAGE 5: PRODUCTION & CAFÉ (IN/OUT) Final finishes Waiting Café for product pickup 2.1 USER SCENARIO Pottery & Ceramics Food vessels and Shelter Textile & Kilims Clothing and Furnishing Palm Weaving Plant storage and utilities Silversmithing Adornment and Status Alabaster Carving Artistry and Spirituality Nile Cruise To Mortuary Temples The sequence of crafts reflects the evolution of human needs—from raw survival tools to refined cultural expression—culminating in a Nile journey that reconnects visitors with the living heritage of Luxor. 2.4 VEGETATION 2.2 CRYSTAL LAGOON SYSTEM Buffer Trees Height: 5-12m Water Needs: Moderate Usage: Shade, ornamental, windbreak Royal Poinciana Height: 15-20m Water Needs: low Usage: Medicinal, Shade, soil improvement Neem Eucalyptus Flame Jacaranda Bottlebrush Acacia Guava Mango Bougainvillea Hibiscus Oleander Lantana Citrus Date Palm Bermuda Height: 20-60m Water Needs: Low Usage: Timber, pulp, windbreak Dwarf Fountain Vetiver Height: 3-25m Water Needs: Very low Usage: Drought tolerant, soil stabilization, fodder Height: 10-15m Water Needs: Moderate Usage: Showy purple flowers, avenue tree Height: 10-20m Water Needs: Low Usage: Brilliant red flowers, feature tree Height: 3-8m Water Needs: Low to moderate Usage: Unique red flower spikes, Attracts birds, Screening Height: 3-10m Water Needs: Moderate Usage: Edible fruit Height: 3-8m Water Needs: Moderate Usage: Edible fruits (oranges, lemons), fragrant flowers Height: 10-30m Water Needs: Moderate Usage: Edible fruit, Shade Height: 15-25m Water Needs: Low to moderate Usage: Edible dates, vertical element, cultural icon Height: 1-12m (climbing) Water Needs: Low Usage: bracts, Climbing or hedging Height: 2-6m Water Needs: Very low Usage: Durable, salt tolerant, colorful flower Height: 2-5m Water Needs: Moderate Usage: Large , colorful flowers , hedging ,ornamental Height: 1-3m Water Needs: Very low Usage: Colorful flower clusters, drought tolerant, attracts butterflies Ornamental Trees Fruit Trees Shrubs Grasses Height: 0.08–0.6m Water Needs: Low Usage: Turfgrass for high-traffic lawns Height: 0.3–0.9m Water Needs: Low to moderate Usage: Ornamental for borders and containers Height: 1.2–2.4m Water Needs: Low Usage: Soil stabilization and phytoremediation Intake Pump Water Sources Sand Filter Carbon Filter UV Disinfection Water Quality Sensors Waterproofing Membrane RC Structure Construction Details Water Transfer System Pipelines Connect source to lagoon Storage Tank Pump System Natural Stone Edges Raw water storage Pumps water steadily Stone Paver Mortar Reclaimed Water Filtering System Concrete Base Base layers . Nile water 2. Filtered Irrigation Runoff 3. Groundwater Level Sensor Soil Plants Irrigation Drainage Landscaped Banks 02 . DESIGN DEVELOPMENT STUDIES
MASTER PLAN 1:1800 Master plan 1:500 HD 03 . ARCHITECTURAL DRAWINGS
MASTER PLAN 1:
LAYOUT 1:2500 Layout 1:1000 HD
ZONNING 1:5000 SOLID AND VOID 1:5000 GREEN NETWORK 1:5000 WATER NETWORK 1:5000 Main Spine Entrance & Accomodation Golf Cars lane Sub plazas ( cafes & Restaurant ) Nile promenade Residential & Leisure 04. MASTER PLAN STUDIES Hot air balloon Zone 1 : Pottery & Ceramics craft Zone 2 : Palm Weaving craft Zone 3: Textile & Kilims craft Zone 4: Silversmithing craft Zone 5: Alabaster Carving craft
WESTERN ELEVATION 1:2000 EASTERN ELEVATION 1:2000 SOUTHERN ELEVATION 1:1000 NORTHERN ELEVATION 1:1000 URBAN SECTION A-A 1:1000 URBAN SECTION B-B 1:1000 Elevations and Sections 1:1000 HD
05 . SUSTAINABILITY PRACTICES STUDIES ENVIRONMENTAL PRACTICES NILE FLOOD TREATMENT STRATEGY URBAN LIGHTING PASSIVE DESIGN FACADE TECHNIQUES Adaptive Lighting With Motion Sensors Solar Panels Integrated on building roofs Interactive Flooring Generating energy from movement Green Shade & Water Features Cooler Microclimate Natural Materials Eco-friendly Cooling Vents Open-Air Street Wall Light Ceiling Light Step Light Bollard Light Spot Light Lantern Light A human-centered lighting strategy balances functionality, safety, and aesthetic enhancement of public spaces Flip ADAPT Cycle of Nile Floods Floods : July to October High Elevation : November to February Low Elevation: March to June Elevates structural foundations via buoyancy, compacted fill, or deep piling Employs buoyant chambers to physically exclude floodwater intrusion Integrates sloped greenery, platforms, stepped edges, and permeable paths for natural drainage PROTECT RESTORE Lift Stilt Float Sloped Greenery Platform Stepped Waterfron t Green Roof Mitigate Urban Heat Double Glazing Thermal Comfort Inner Courtyard Natural ventilation Mashrabiya Screening Passive Shading Adaptive Landscape Shading and Vegetation Light-Colored Materials Reducing Heat Gain Cool Pavements Heat Absorption Thermal Mass Regulating Indoor Temperature Solar Panels Renewable Energy
06 . PROJECT SHOTS
BLOW UP 1:500 Blow Up 1:200 HD
MOODBOARD CAFE BAZAR DYE WORKSHOP CRAFT INTRODUCTORY Pierced Screens Landmark TEXTILE ART SHOWROOM Lounge Area Central Piece Vaults Display Areas 07 . BLOW UP STUDIES STRUCTURE SYSTEM TYPES OF GARDENS Xeriscape Native Edible Cultivates crops and herbs for direct human consumption Restores local biodiversity using indigenous species Minimizes irrigation through drought-adapted plant selection Mediterranean Employs sclerophyllous flora tolerant of seasonal aridity Courtyard Forms a private, climate- moderated outdoor enclosure Shade Reduces solar heat gain via low- light-adapted understory planting REINFORCED CONCRETE FRAME SYSTEM SOLID CONCRETE SLAB SYSTEM Concrete slab Slab Edge Detail Columns Slab Edge Detail Foundation DetailPile to Pile Cap DetailFoundation Detail Slab-to-Beam Connection Column-to Beam Joint Joists & Deck Roof Concrete Truss-Beams Frames are deployed in exhibition halls and large show areas, whereas solid slabs are utilized in complementary spaces
02 INDIVIDUAL DESIGN PROJECT TYPOLOGY LOCATION YEAR AREA SOFTWARE LUXORIOUS HOTEL ROSETTA - NEW RASHID CITY 2024 18,000 M2 AUTOCAD - SKETCH UP ENSCAPE - PHOTOSHOP - AI TOOLS
A future-ready luxury waterfront hotel inspired by Rosetta’s cultural heritage and maritime identity. The design translates compass-derived triangular geometry into a climate-responsive architectural form, integrating hospitality, recreation, and event functions. Smart and sustainable design strategies were employed to address climatic conditions, resource efficiency, water management, and long-term environmental resilience, creating a high-performance destination that enhances user experience while reinforcing the site's cultural and ecological identity. PROJECT OVERVIEW
01 . SITE STUDIES 1.2 ACCESSIBILITY AND MOBILITY EGYPT ROSETTA SITE 1.1 LOCATION 1.6 CLIMATE ANALYSIS 1.3 LANDUSES 1.4 FACILITIES 1.5 TOPOGRAPHY River Port Train Station Bus Station Vehicle Road Pedestrian Road Hotels Schools Offices Pharmacies Restaurants Hospitals The absence of direct transit necessitates public transport provision, while vehicular access is confined to Ibeana Road and pedestrian routes to its sidewalk or the shoreline. Fish Farms Agriculture Farms Residential Areas New Rosetta New Rosetta's proximity supports tourism and provisioning. Section 1-1 Section 2-2 Contour Lines in the site Absent local infrastructure necessitates full internal provision. 1.6.1 SUNPATH DIAGRAM There is no notable difference in contour levels. Needs Horizontal Shadings at South Elevation. Needs Horizontal Shading combined with vertical shadings. 1.6.2 WIND ROSE 1.6.3 WIND VELOCITY RANGE Wind Comes mostly from north west with average velocity 4m/s which can help in providing good natural ventilation and generating wind energy at 9 m/s. 1.6.4 TEMPERATURE RANGE Temperature increases above comfort zone from April to Oct and decrease below comfort zone from Jan to July and from Sep to Dec so we may use Adaptive Facade Systems to change the system according to realtime weather data. 1.6.5 TEMPERATURE RANGE 1.6.6 RAIN PRECIPITATION 1.6.7 SKYCOVER Rain falls mostly from November to February, so we can make Rain water collectors to use it in the site for irrigation. SkyCover decreases mostly in June and August which needs solar shadings in those months.
02 . DESIGN DEVELOPMENT STUDIES 2.3 FORM GENERATION 1. Extrusion: Extruding the project site's ground 2. River-Sea Convergence: Emphasizing a central axis where the Nile meets the Sea OTTOMAN COURT SEA FORCE RIVER FORCE STONE FORCE 5. Interlocking Blocks: The characteristics of opponent are reflected in each side 4. Compass Form: Proportionally shaping the mass by the forces of the triangle which embodies Rasheed's identity: sea, river, and stone 3. Court: Opening court that echoes Ottoman Heritage 2.5 VEGETATION In 1400 BCE, Luxor was home to the City of Craft Makers– A settlement of artisans who built and decorated the temples of the pharaohs. Inspired by the ancient Egyptian temple procession where The priest walked A Ritual Path From The Outer Pylon To The Holy Of Holies. Along this Path, Light , Height , Spatial Atmosphere transform. Each step was a spiritual transition .Rich historic fabric with high density of heritage sites 1. SITE CONTEXT: RASHID (ROSETTA), EGYPT A beacon of discovery, offering a experience of rashid's heritage. QAITBAY FORTRESS 1 MILL 1 HAMMAM12 MOSQUES 22 HERITAGE HOUSES 6. FINAL ARCHITECTURAL RESPONSE: THE ROSETTA HOTEL 2. DESIGN DRIVERS: EXPLORATION & DISCOVERY Historic voyages echoing into the unknown 3. CONCEPT GENERATION: THE ROSETTA COMPASS Navigational compass symbolizing discovery 4. FORM DEVELOPMENT: TRIANGULAR GEOMETRY 5. SPATIAL ORGANIZATION: GUIDED PATHWAYS Translate compass geometry into architectural volumes. Guiding visitors to explore 2.1 CONCEPT Create a journey that reveals the city's historic fabric. GATHERING AREAS STILT BASES SHORELINE BUFFERS DOCK EDGES Dwarf Date Palm Sea lavender White Mangrove Juncus rigidus Seagrass Floating Phragmites For shade and privacy For marine habitat For storm blocking For water filtration 2.2 USERS 2.4 ARCHITECTURAL STYLE Desire to guide visitors through the city's layered history Evoking the rosetta compass's design ROSETTA (RASHID), EGYPT 1. Architectural Inspirations Historical influences shaping Rosetta's identity Islamic Architecture French Colonial 2. Traditional Elements Wind Catchers Mashrabiyah Courtyard 3. Architectural Elements Distinctive formal and decorative language Islamic Arches Geometric Ornamentation Decorative Facades 4. Local Materials Regionally sourced construction materials Mangor Bricks WoodLocal Stone 5. Construction Techniques Passive Design Earthquake Resistant Thermal Mass Families Administration & Workers Leisure & Recreation Toursits Vip Visitors Business Visitors Meet & Connect Premium Services Operations & Support Exploration & Adventure
03 . ARCHITECTURAL DRAWINGS KEY MAP 1:1000
1.Waiting Area 2.Front Desk 3.Manager Office 4.Kitchen 5.Open Buffet Restaurant 6.Lounge 7.Toilets 8.Service Core 9.Guest Rooms 10.Sec Event Hall 11.Meeting Room 12.Pre-function Room 13.Ballroom Landscape zones : 1.Seating Area 2.Adults Pool Area 3.Children Pool Area 4.Water Activity kiosks 5.Volleyball Courts 6.Beach Area 7.Cafe 8.Screen Display Area 9.Meditation Zone 10.Fitness Zone 11.Kids Playground MASTER PLAN 1:400
1ST FLOOR PLAN 1:400 1.Waiting Area 2.Kitchen 3.Speciality Dining 4.Lounge 5.Toilets 6.Housekeeping Storage 7.Guest Rooms 8.Sec Event Hall 9.Bride Room 10.Bridal Suite 11.Pre-function room 1.GYM 2.SPA 3.Co-working Space 4.Lounge 5.Toilets 6.Service core 7.Housekeeping Storage 8.Guest Rooms 9.Sec Event Hall 10.Meeting room 2ND FLOOR PLAN 1:400
3RD FLOOR PLAN 1:400 1.Guest Rooms 2.Service core 3.Lounge GUESTROOMS PROTOTYPES 1:100 Standard (2 Single Beds) 22 m2 Standard (King Bed) 22 m2 Deluxe (2 King Beds) 26.5 m2 ROOMS EFFICIENCY LAYOUT 1:800 Suit (1 King Bed) 41 m2 Family Suit (1 King Bed + 2 single Beds) 78 m2 Nile View 35.3% Sea View 29.4% Double View 11.8% Court View 11.8%
WESTERN ELEVATION 1:400 WESTERN ELEVATION 1:400 WESTERN ELEVATION 1:400
3D SHOTS
04 . SMART SYSTEMS STUDIES . Stone Facing Elevation - Kinetic Facade 4.1 SMART FACADE DESIGN 4.2 SUSTAINABILITY PRACTICES AUTOMATED SHADING: Sensors detect sunlight intensity and automatically adjust louver angle for optimal shading and heat control. Sensor Mechanical Actuators Kinetic Stone louvers Structural Frame Sensor Array 2. Sea Facing Elevation - Electrochromic Glass 3. Nile Facing Elevation - Cooling Facade Coatings ENVIRONMENTAL RESPONSE STRATEGY ELECTROCHROMIC GLAZING: Changes transparency responding to sunlight intensity. REFLECTIVE COATING: Reflects higher percentage of solar radiation. High daylight penetration Controlled light Thermal Gain Heat Reduction Clear State Tinted State Electrochromic layer DYNAMIC SOLAR CONTROL Energy EfficiencyImproved User ComfortReduced Solar Heat GainOptimized Daylight Water Conservation Systems Architectural Design Solutions Energy Conservation Systems Smart Sinks Rainwater TanksGreywater Usage Uses less water while maintaining optimal pressure and performance levels Treatment and Reusing greywater from sinks and showers Collects rainwater in storage tanks for landscape irrigation purposes Recycled Materials Resource Conservation Biophilic Design Integrating nature with green walls, indoor plants, and natural materials Passive Design Solar Panels Wind Turbines Motion SensorsGeothermal Energy Activates only when needed, conserving energy efficiently Proper shading maximizes daylight penetration while reducing solar heat gain Recycled wood, steel, glass, and low-emission materials improve indoor air-quality Underground hot water generates steam for renewable energy production Converts wind energy into electricity at suitable site locations Increased service capacity accommodates projected waste volume and requirements Photovoltaic cells generate clean electricity from sunlight for building operations
COMPOSITE SYSTEM ( Inspired by bridges' structural stability ) 4.4 CANTILEVER STRUCTURAL SYSTEM High-strength tension cables internally anchoring the steel box to second-floor beams and columns SUSPENDED CABLES Lightweight, hollow steel box forms the cantilevered structure STEEL BOX GIRDER LOAD TRANSFER DIAGRAM Cantilever Tension Force Gravity Load FORCE FLOW & STABILITY STRATEGY Cantilever (unsupported zone) Moment Force Reaction Force HYDRALOOP 4.3 HYDRO CONTROL Recycles greywater for non-potable uses automatically with smartphone app HYDROPOINT Sensors minimize water waste by detecting leaks and adjusting irrigation 4.5 FLOOD MITIGATION TECHNIQUE 3-layers of defense merging hard engineering and soft nature solutions 1. OFFSHORE BREAKWATERS Curved, semi-submerged, limestone or concrete units reduce wave energy 2. MANGROVE TREES Reduce wave energy by 50-90% based on density and width 3. FLOOD BREAKERS Movable aluminum gates block floods and storm from reaching hotel Pre-cast Concrete Module Limestone Unit Module Gates Retracted Position Site Boundary Flood-resilient Development Zone Protected Habitat Area
TYPOLOGY LOCATION YEAR AREA SOFTWARE AGRI‐TECH NEXUS NEW DELTA - BEHEIRA GOVERNORATE 2025 22 FEDDANS AUTOCAD - 3D MAX V RAY - LUMION - PHOTOSHOP - AI TOOLS Individual Urban Design Project 03 VIRTUAL TOUR
Agri-Tech Nexus is a visionary agricultural innovation hub developed within the New Delta region, aiming to bridge research, technology, production, education, and market exchange through an integrated urban design framework. Conceived as a catalyst for sustainable agricultural development, the project responds to the environmental, economic, and technological challenges facing Egypt's future food systems, particularly water scarcity, climate resilience, and agricultural productivity. PROJECT OVERVIEW
Composting, Bio‐fertilizers, Microbial Inoculants (Supports Circular Economy Model) 01 . STUDIES LOCATION CONCEPT EGYPT NEW DELTA SITE Building Heights Rises gradually & Peaks at the Convention Center - Egypt's hub for annual and weekly agricultural knowledge then descends, completing The Infinite Loop back to its origin. A living agricultural Cycle Of Growth Journey- From Soil To Soil Again-where each zone embodies a distinct stage, forming An Infinite Loop of renewal and continuity. USER SCENARIO Water Tech Smart Irrigation , Desalination, Recycled Units, Sensors (Addresses New Delta’s water scarcity) TECH-PAVILLIONS DEMO AREAS ECO-WORKSHOPS SOUQ Seed Innovation Greenhouses IOT Bio‐Agriculture Improved Varieties & Genetic Resilience (Reduces dependency on Imported Seeds) Drones Hydroponics Aeroponics Natural Dye Eco‐Packaging Basket Weaving Climate‐Controlled Cultivation with Energy‐Efficient Systems (Enables Year‐Round Cultivation) Soil Sensors & Remote Sensing (Long‐term Land Productivity in New Delta) Soilless Farming with Nutrient‐rich Water Systems UAV Monitoring and Variable‐Rat e Spraying Root‐Misting with High‐Pressure Nutrient Sprays Weavers crafts from locally sourced reeds and fibers Artisans dyeing fabric using plant- based natural pigments Biodegradable materials and molding tools for sustainability ENVIRONMENTAL ANALYSIS Fruit (Convention Center)↓ Knowledge & policy Stem (Demo Areas)↓ technologies Seed (Agri Lab)↓ Ideas Begin Roots (Pavilions)↓ Agriculture Foundations Return To Soil (Bio‐Materials)↓ Circular Economy Leaves (Souq )↓ Products & exchange START END Locally made products ready for market Topography and Slopes Predominantly flat terrain (0- 8% slope) with limited steeper zones (12-25%), exhibiting a gradual increase in elevation toward the south and southeast. Wind and Temperature Prevailing Winds: North to northwest Climate: Hot desert environment Higher humidity in the north. Lower humidity in the central and southern areas. Humidity SITE SELECTION CRITERIA Strategic LinkageGrowth-Ready Accessibility Export potential SITE Near Sphinx Airport Al Dabaa Road Regional Ring Road Near Delta Greenhouses and Sphinx Industry Located on 2 main roads Northern area is still undeveloped
TARGET USERS General Public Researchers and Students Agri‐Industrial Companies Policy Makers and Investors VEGETATION SHRUBS TREES GOALS Date Palm Phoenix Dactylifera 15-23 m Low Olive Tree Olea Europaea 4-10 m Low Ficus Nitida Ficus Microcarpa 8-15 m Medium- High Acacia Acacia Saligna 5-10 m Low Jacaranda Jacaranda Mimosifolia 8-18 m Medium Poinciana Delonix Regia 8-12 m Medium Casuarina Casuarina Equisetifolia 10-20 m Low Duranta Duranta Erecta 1-4 m Medium Oleander Nerium Oleander 2-6 m Low Hibiscus Rosa- Sinensis 1-4 m Medium Pittosporum Tobira 2-5 m Medium Dodonaea viscosa 2-5 m Low Existing Tree and Shrub Species in New Delta: Scientific Names, Mature Heights, and Water Requirement Analysis CIRCULAR ECONOMY + Farming methods that protect soil health, water, and ecosystems, ensuring long-term food security. SUSTAINABLE AGRICULTURE AGRICULTURAL INNOVATION + Developing new techniques and sharing bext practices across all sectors. + Integrated waste sorting systems (not landfills) + A closed-loop system where resources are reused, materials recycled, and waste minimized across all sectors. RESEARCH AND KNOWLEDGE EXCHANGE GREEN ENTREPRENEURSHIP Investing in new technologies and methods for efficient and resilient farming. POWERFUL LOCAL COMMUNITIES + Supporting local businesses that adopt sustainable practices and clean technologies. + Empowering residents and creating direct economic and social benefits for the local population.
MASTER PLAN 1:1000 02 . ARCHITECTURAL DRAWINGS
LAYOUT 1:1000
SOLID AND VOID 1:4000 ZONNING 1:2000 Agri-Tech zone Agro-business zone Local souq zone Green industry zone Conferences zone Informatics zone Public spaces and plazas Main pedestrian path Ring Road 03 . LAYOUT STUDIES LOCAL SOUQ CONFERENCES ZONE AGRO-BUSINESS DEMO AREAAGRI-TECH PAVILLIONS
GREEN NETWORK 1:4000 WATER NETWORK 1:4000 MOBILITY 1:2000 High Way (Regional Ring Road) Service Lane Desceleration Lane Ring Road Parking Area Drop Off Hummer Head Primary Pedestrian Path Secondary Pedestrian Path Private Cars Parking Buses Parking Trucks Parking Golf Cars and Bikes Parking
NORTHERN ELEVATION 1:500 EASTERN ELEVATION 1:500 SECTION A-A 1:500 SECTION B-B 1:500
04 . PROJECT SHOTS
TYPOLOGY LOCATION YEAR SOFTWARE LECTURE HALL FACULTY OF ENGINEERING, AIN SHAMS UNIVERSITY 2026 AUTODESK RECAP - 3D MAX - LUMION - PHOTOSHOP - AUTOCAD - AI TOOLS Modeling Project 04 Focusing on the accurate digital reconstruction and documentation of an existing lecture hall at the Faculty of Engineering, Ain Shams University. Using reality-capture data, a highly detailed 3D model was developed to achieve geometric and architectural fidelity with the built environment. The project demonstrates competencies in scan-to-model workflows, architectural surveying, digital heritage documentation, technical drawing production, spatial analysis, and photorealistic visualization. Deliverables included coordinated plans, reflected ceiling plans, sections, elevations, and high-quality rendered outputs, showcasing the integration of as-built documentation, precision modeling, and visual communication within a comprehensive architectural workflow. PROJECT OVERVIEW
RENDERED MODEL SHOT 1 RENDERED MODEL SHOT 2 RENDERED MODEL SHOT 3
HALL FLOOR PLAN 1:100 HALL SECTION 1:100 HALL CEILING PLAN 1:100
NORTHERN ELEVATION 1:100 WESTERN ELEVATION 1:100 EASTERN ELEVATION 1:100 SOUTHERN ELEVATION 1:100
TYPOLOGY YEAR SOFTWARE AUDITORIUM 2024 AUTOCAD - RIVET - WORD Individual Working Project 05 DATA SHEETS PROJECT OVERVIEW A fully coordinated theatre project developed from planning to construction documentation, featuring optimized auditorium seating for unobstructed sightlines, integrated stage and backstage operations, rehearsal facilities, technical control rooms, and catwalk access systems. The design emphasizes acoustic performance, accessibility, fire protection, HVAC coordination, and building services integration, while strategic floor, wall, ceiling, and finish layouts maximize material efficiency and construction accuracy. Comprehensive technical details, sections, elevations, and specifications ensure a functional, safe, and high-performance auditorium .
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