STRUCTURAL ENGINEER · GMICE

KEVIN HYSENI

Structural Engineer & Design Coordinator

Structural engineering, design coordination, BIM and construction experience across major UK developments — combining technical design with practical site engineering.

MSc Distinction
GMICE ICE Member
UK Major Projects
DIGITAL STRUCTURE Career Tower / 01
FUTURE DESIGN CONSTRUCTION EDUCATION FOUNDATION
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01

Engineering the built environment.

Kevin Hyseni
STRUCTURES · ENGINEERING · AMBITION ROME · ITALY

I am a Structural Engineer with a strong academic, research and practical engineering background, combining advanced structural analysis, sustainable materials research, digital design and construction experience.

I completed my MSc in Structural Engineering at Brunel University of London with Distinction.

During my time at Brunel University, I also worked as a Research Intern focusing on Alkali-Activated Materials and low-carbon concrete...

My professional career has developed across structural engineering, precast design, BIM coordination and construction, giving me experience across a diverse range of technically demanding projects in the UK.

I have had the opportunity to contribute to major UK developments, ranging from highly bespoke private residential projects for high-profile clients to major multi-million-pound developments and high-rise schemes shaping London's skyline. My project experience includes complex residential buildings, precast structures, deep-basement construction and large-scale developments, including schemes with values approaching £300 million.

Working on projects of this scale has required close coordination with structural engineers, architects, contractors, specialist subcontractors, manufacturers and multidisciplinary design teams. My responsibilities have included pre-design and design coordination, structural modelling and analysis, drawing and model reviews, technical interface resolution, RFIs, BIM coordination and supporting the progression of structural information from design through to construction.

My technical experience is supported by a broad range of structural engineering and BIM software, including Revit, Autodesk Robot Structural Analysis, Tekla Structures, SAP2000, ETABS, SAFE, AutoCAD, Abaqus and Python.

What interests me most about structural engineering is the combination of analysis, design and real-world construction. I enjoy understanding how structures behave, developing practical solutions and seeing engineering decisions progress from calculations and digital models into built structures.

My long-term ambition is to continue developing as a structural engineer, take on greater technical responsibility and achieve Chartered Engineer status. I want to contribute to safe, efficient, sustainable and technically challenging structures while continuing to strengthen my knowledge in structural design, digital engineering and modern construction methods.

02

Career Journey

2026 PRESENT
JRL GROUP · UNITED KINGDOM

Structural Engineer & Precast Design Coordinator

Structural and precast design coordination across major UK developments, supporting technical review, BIM coordination and multidisciplinary project delivery.

Structural Engineering Precast Design Coordination BIM Revit Tekla
2025 2026
ELYSIUM CONSTRUCTION · LONDON

Graduate Civil / Site Engineer

Site engineering experience including setting out, inspections, quality assurance, technical drawing review, RFIs and coordination of construction activities.

Site Engineering Setting Out QA Construction Technical Drawings
2025
BRUNEL UNIVERSITY OF LONDON

Research Intern

Engineering research focused on sustainable construction materials, concrete technology and low-carbon structural solutions.

Research Concrete Sustainability Materials
2023
SELIMI SHPK · ALBANIA

Civil Engineering Intern

Early construction experience involving site activities, inspections and engineering support.

03 PROJECT EXPERIENCE

Selected Major Projects.

A selection of major UK developments I have contributed to across structural engineering, design coordination and construction.

Thames City Phase 2, London
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01

Thames City-Phase 2

London

Design Coordination · Structural Coordination

88 Royal Mint Street, London
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02

88 Royal Mint Street

London

Design Coordination

Brindley Drive, Birmingham
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03

Brindley Drive

Birmingham

Design Coordination

Flowers Way, Luton
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04

Flowers Way

Luton

Design Coordination · Structural Coordination

Brent Cross Plots 12, 202 and 203, London
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05

Brent Cross

London

Design Coordination

30 Ferncroft Avenue, London
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06

30 Ferncroft Avenue

London

Graduate Site Engineer

04

Research & Sustainability

R / 01

Low-Carbon Concrete & Alkali-Activated Materials

Research into sustainable structural materials and alternative concrete technologies with a focus on reducing the environmental impact of construction.

Concrete Sustainability Low Carbon Laboratory Research
R / 02

Structural Infrastructure & Resilience

Academic investigation into structural infrastructure, maintenance, inspection and sustainable engineering strategies.

Structures Infrastructure Resilience Engineering
05

Academic Foundation

MSc
BRUNEL UNIVERSITY OF LONDON

MSc Structural Engineering

WITH DISTINCTION

Advanced study in structural engineering, structural analysis and engineering design.

CHECK MODULES & MARKS
BSc
EPOKA UNIVERSITY

BSc Civil Engineering

HONOURS

Academic foundation in civil and structural engineering, construction, engineering analysis and design.

CHECK MODULES & MARKS
06

Technical Toolkit

01

Structural Engineering

Structural analysis · Reinforced concrete · Steel structures · Precast concrete · Structural design · Engineering calculations

02

BIM & Coordination

Revit · Tekla Structures · BIM coordination · Design coordination · Technical review · Multidisciplinary coordination

03

Engineering Software

Autodesk Robot · AutoCAD · SAP2000 · SAFE · ETABS · Abaqus · Python

04

Construction

Site engineering · Setting out · Quality assurance · Drawing review · RFIs · Construction documentation · Site coordination

07

Certifications & Memberships

ICE

Graduate Member · GMICE

Institution of Civil Engineers

CSCS

White Card

Managers & Professionals

LEICA

Leica Geosystems

Engineering and surveying technology

MHFA

Mental Health First Aider

Professional development

MASTER'S Distinction
BACHELOR'S Honours
PROFESSIONAL GMICE
CAREER GOAL CEng
PROFESSIONAL PROFILE

Explore the complete story.

Download my CV for a complete overview of my professional experience, education, engineering skills and professional development.

Download My CV ↓
08 / CONTACT

Let's build something exceptional.

Open to professional connections and opportunities across structural engineering, design coordination and construction.

01 · MAJOR PROJECT LONDON · NINE ELMS

Thames City Phase 2.

Thames City Phase 2, Nine Elms London
LOCATION Nine Elms, London
SECTOR Residential · Mixed Use
PROJECT Thames City — Phase 2
MY ROLE Structural Engineer · Design Coordinator

Part of a major new riverside district in the heart of Nine Elms.

Thames City is a major mixed-use development occupying a prominent riverside location in Nine Elms, London. The wider masterplan comprises twelve buildings, with residential towers, landscaped public spaces, luxury amenities, retail and dining forming part of the new district.

Phase 2 represents the next stage in the development of Thames City and continues the delivery of this major high-rise residential destination.

Structural engineering combined with multidisciplinary design coordination.

My involvement includes pre-design and design coordination, working closely with structural engineers and the wider project team to support the development of coordinated and buildable structural information.

Pre-Design Coordination Design Coordination Structural Coordination Structural Design Support Revit Autodesk Robot Structural Analysis Drawing Review Model Review Technical Interface Resolution Design Information Coordination

From structural analysis and digital models to coordinated construction information.

My work involves supporting structural design development using Autodesk Robot Structural Analysis and Revit, reviewing structural information and coordinating interfaces between structural elements and other design disciplines.

This experience has strengthened my understanding of how structural engineering decisions progress from analysis and digital design through multidisciplinary coordination toward construction.

02 · SELECTED PROJECT LONDON · E1

88 Royal Mint Street.

88 Royal Mint Street, London
LOCATION London · E1
SECTOR Residential · Hospitality
SCALE 320,000+ sq ft
MY ROLE Design Coordinator

A major mixed residential and hospitality development in central London.

88 Royal Mint Street is a major development in East London combining residential and hospitality accommodation within a large, highly coordinated urban scheme.

The development comprises more than 320,000 sq ft of accommodation, including a 463-bedroom aparthotel together with 79 high-end residential apartments.

Large-scale urban development requiring close multidisciplinary coordination.

320,000+ sq ft Development 463-Bedroom Aparthotel 79 High-End Apartments Residential & Hospitality Uses Complex Urban Site Central London Delivery

Coordinating structural and architectural information into buildable design solutions.

My role focused on design coordination, working with structural engineers and the wider design team to review technical information and coordinate interfaces between disciplines.

I supported the development of coordinated models, drawings and technical information, helping identify and resolve design issues before they progressed further through construction.

Design Coordination Structural Coordination Design Team Liaison Technical Drawing Review Revit Coordination Model Review Interface Coordination Design Information Review Technical Issue Resolution Construction Information Coordination

Managing interfaces across a complex mixed-use building.

The scale and mixed-use nature of the development required careful coordination between structural, architectural and building-services information.

My work included reviewing design information, coordinating structural interfaces and supporting the resolution of clashes and technical queries affecting the buildability of the project.

Digital coordination supporting efficient technical delivery.

Autodesk Revit BIM Coordination Structural Drawings Technical Documentation Model Review Design Team Coordination
KEVIN HYSENI · PROJECT EXPERIENCE 88 ROYAL MINT STREET
03 · SELECTED PROJECT BIRMINGHAM · CITY CENTRE

Brindley Drive Edition Birmingham.

Brindley Drive, Edition Birmingham
LOCATION Birmingham
SECTOR High-Rise Residential
CONSTRUCTION CONTRACT £145 Million
MY ROLE Design Coordinator

A landmark two-tower residential development transforming Birmingham's skyline.

Brindley Drive, marketed as Edition Birmingham, is a major high-rise residential development located close to Centenary Square in Birmingham city centre.

The development provides 581 one- and two-bedroom apartments across two connected towers, combining large-scale residential construction with extensive resident amenity and wellness facilities.

Two connected towers with a substantial residential programme.

581 Residential Apartments 46-Storey Centenary Tower 15-Storey Park Residence £145m Construction Contract 23,000+ sq ft Resident Amenities 9,000 sq ft Podium Terrace

High-rise residential living combined with extensive wellness facilities.

The development includes a significant wellness and leisure offering, with more than 23,000 sq ft of resident amenity space.

20 m Swimming Pool Hydro Pool Sauna & Steam Room Skyline Gym Yoga & Spin Studios Sky Lounge Private Dining Co-Working Lounge Podium Terrace Outdoor Cinema & BBQ Area

Coordinating structural information across a complex high-rise development.

My involvement focused on design coordination and structural coordination, working with structural engineers and the wider design team to support the development of coordinated, technically robust and buildable information.

I reviewed models, drawings and technical information, coordinated interfaces between disciplines and supported the resolution of design issues as the project progressed.

Design Coordination Structural Coordination Structural Engineer Liaison Revit Coordination Model Review Drawing Review Technical Interface Coordination Design Information Review Issue Resolution Construction Information Coordination

Managing interfaces within a large two-tower scheme.

The scale of the development required close coordination between structural, architectural and building-services information.

My work involved reviewing the relationship between different design packages and helping ensure that coordinated information could progress efficiently toward construction.

Digital coordination supporting high-rise design delivery.

Autodesk Revit BIM Coordination Structural Models Technical Drawings Design Documentation Multidisciplinary Coordination
KEVIN HYSENI · PROJECT EXPERIENCE BRINDLEY DRIVE · BIRMINGHAM
04 · SELECTED PROJECT LUTON

Flowers Way.

Flowers Way, Luton
LOCATION Luton
SECTOR Residential · Mixed Use
SCALE 414 Homes
MY ROLE Design Coordinator

A major residential-led development built around three connected towers.

Flowers Way is a large mixed-use development in Luton providing 414 new homes together with commercial accommodation.

The residential element is arranged across three towers connected by a landscaped podium, creating a significant urban development with integrated residential, commercial and amenity spaces.

Reinforced concrete construction combining in-situ and precast structural solutions.

The structural solution includes reinforced concrete framing with a combination of in-situ and precast construction.

Slipform cores form a key part of the vertical structural system, while the lower-ground and basement areas add another level of structural and coordination complexity.

Reinforced Concrete Frame In-Situ Concrete Precast Elements Slipform Cores Lower-Ground Construction Basement Construction Three Residential Towers Landscaped Podium

A coordinated multi-building scheme delivering 414 new homes.

414 Residential Homes Three Residential Towers Landscaped Podium Commercial Accommodation Mixed-Use Development Basement / Lower-Ground Areas

Coordinating structural design across a complex concrete-frame development.

My involvement focused on design coordination and structural coordination, working closely with structural engineers and the wider project team.

I supported the review and coordination of structural models, drawings and design information, with particular attention to interfaces between structural elements and other disciplines.

Design Coordination Structural Coordination Structural Engineer Liaison Revit Coordination Model Review Structural Drawing Review Precast Interface Coordination Technical Interface Review Design Information Coordination Issue Resolution

Bringing structural, architectural and precast information together.

A project of this scale requires careful coordination between the reinforced concrete frame, precast elements, cores, architecture and building-services packages.

My role involved helping identify technical interfaces, reviewing coordinated information and supporting the resolution of issues before information progressed toward construction.

Digital coordination supporting structural design delivery.

Autodesk Revit BIM Coordination Structural Models Technical Drawings Precast Coordination Design Documentation
KEVIN HYSENI · PROJECT EXPERIENCE FLOWERS WAY · LUTON
05 · SELECTED PROJECT LONDON · BRENT CROSS

Brent Cross Plots 12 / 202 / 203.

Brent Cross Plots 12, 202 and 203, London
LOCATION Brent Cross, London
SECTOR Residential · Regeneration
MY SCOPE Plots 12 · 202 · 203
MY ROLE Design Coordinator

Three residential plots within one of London's largest regeneration programmes.

My project experience at Brent Cross focused on Plots 12, 202 and 203, three residential buildings forming part of the wider Brent Cross Town regeneration in north London.

The three plots provide a mix of affordable, private-sale and residential accommodation, requiring close coordination across structural, architectural and wider design packages.

120 homes across an L-shaped residential building.

Plot 12 is arranged as an L-shaped development ranging from approximately 9 to 13 storeys. The scheme provides 120 homes together with ground-floor retail and café space.

120 Homes 9–13 Storeys L-Shaped Building Form Affordable Residential Retail & Café Space Mixed Unit Types

A seven-storey C-shaped residential building.

Plot 202 comprises a seven-storey, C-shaped residential building with bay-fronted brick elevations and 170 apartments.

170 Apartments 7 Storeys C-Shaped Plan Brick Residential Architecture Studio to 3-Bed Units Landscape-Facing Homes

107 apartments and duplexes within a seven-storey building.

Plot 203 is a seven-storey, L-shaped brick residential building providing 107 apartments and duplexes.

107 Apartments & Duplexes 7 Storeys L-Shaped Plan Brick Residential Building Studio to 3-Bed Units Residential Landscape Interface

Part of an £8 billion north London regeneration.

Brent Cross Town is a major 180-acre regeneration programme planned around new homes, commercial space, public realm, parks, transport and community facilities.

£8bn Wider Masterplan 180-Acre Regeneration 6,700 Planned Homes 50+ Acres of Green Space 3m sq ft Office Space Major Transport-Led Regeneration

These figures relate to the wider Brent Cross Town masterplan, not solely to Plots 12, 202 and 203.

Coordinating structural information across multiple residential plots.

My role focused on design coordination, working with structural engineers and the wider project team across multiple residential buildings and design packages.

I supported the review of models, drawings and technical information, helping coordinate interfaces and resolve issues between structural, architectural and other disciplines.

Design Coordination Structural Coordination Structural Engineer Liaison Revit Coordination Model Review Drawing Review Precast Interface Coordination Technical Interface Resolution Design Information Review Multi-Plot Coordination

Digital coordination across multiple residential buildings.

Autodesk Revit BIM Coordination Structural Models Technical Drawings Design Documentation Multidisciplinary Coordination
KEVIN HYSENI · PROJECT EXPERIENCE BRENT CROSS · PLOTS 12 / 202 / 203
06 · SELECTED PROJECT LONDON · HAMPSTEAD · NW3

30 Ferncroft Avenue.

30 Ferncroft Avenue, London
LOCATION Hampstead, London NW3
SECTOR High-End Residential
BASEMENT 300 m² · 6 m Deep
MY ROLE Graduate Site Engineer

Complex structural engineering beneath an existing high-value London residence.

30 Ferncroft Avenue is a technically complex private residential project in Hampstead, involving the construction of a substantial new basement beneath and beyond the footprint of an existing two-storey house.

The existing structure remained supported while excavation and permanent substructure works progressed below, requiring carefully planned temporary works, sequencing and continuous structural monitoring.

Supporting the existing house while creating a new level six metres below.

The proposed basement arrangement did not align directly with the existing ground-floor structure, which meant building loads had to be progressively transferred as excavation and reconstruction advanced.

Restricted working space added further complexity, with temporary supports, retaining elements and permanent structural works required to function as one coordinated engineering system.

A temporary works system designed to suspend and stabilise the house.

Steel needle beams were installed through the existing walls and supported on coordinated stools and jacks.

This temporary support arrangement redistributed the building loads while the ground below was excavated and the permanent basement structure was constructed.

Steel Needle Beams Support Stools Hydraulic / Structural Jacks Temporary Propping Structural Restraint Structural Monitoring

Two-stage underpinning and 55 new perimeter piles.

The underpinning was completed in two carefully sequenced stages of approximately three metres each, allowing excavation to progress safely toward the final basement formation level.

Around the enlarged basement perimeter, 55 piles created a new retaining boundary outside the footprint of the original building.

55 Perimeter Piles Two-Stage Underpinning 3 m Sequential Stages Retaining Structures Restricted-Site Construction Careful Load Transfer

A new reinforced-concrete substructure beneath the existing property.

The permanent substructure incorporates a 600 mm reinforced-concrete basement slab, reinforced-concrete beams, retaining walls, underpinning and perimeter piles.

Together these elements established a new permanent load path for the property above once the temporary support system was no longer required.

600 mm RC Basement Slab RC Retaining Walls RC Structural Beams Permanent Load Transfer Basement Substructure Integrated Structural System

Structural engineering forming the foundation for a high-end private residence.

Beyond the civil and structural basement works, the wider construction package included the superstructure, roof, external envelope, building-services coordination, internal fit-out and high-end finishes.

Superstructure Roof Construction External Envelope Building Services Coordination High-End Fit-Out High-End Finishes

Site engineering across complex temporary and permanent structural works.

As a Graduate Site Engineer, I supported the day-to-day technical delivery of the structural and civil works on site.

My responsibilities included setting out, inspections, quality assurance, checking construction against drawings, coordinating with engineers and site teams, reviewing technical information and supporting the resolution of site queries.

Site Engineering Setting Out QA / Quality Inspections Drawing Checks Technical Information Review Engineer Coordination Site Team Coordination Construction Monitoring RFI Support Temporary Works Awareness Reinforced Concrete Works Basement Construction

First-hand experience of deep-basement engineering and complex load transfer.

The project gave me direct site experience of underpinning, piling, reinforced concrete, temporary works, deep excavation, structural monitoring and the sequencing required to construct beneath an existing occupied-scale building structure.

It strengthened my understanding of how temporary and permanent structures interact during complex construction and how engineering design is translated into safe site execution.

KEVIN HYSENI · PROJECT EXPERIENCE 30 FERNCROFT AVENUE · LONDON NW3
POSTGRADUATE EDUCATION 2024 — 2025

MSc Structural Engineering.

UNIVERSITY Brunel University of London
DEGREE MSc Structural Engineering
CLASSIFICATION Distinction
PERIOD 2024 — 2025
ACADEMIC RECORD

MSc module results.

Advanced postgraduate study across structural analysis, concrete, steel, geotechnics, dynamics, construction materials and infrastructure.

MODULE GRADE
CE5601 Nonlinear Structural Analysis and Finite Element Method
A+
CE5603 Advanced Steel Design
A*
CE5607 Advanced Reinforced and Prestressed Concrete Design
A+
CE5519 Infrastructure Management
A+
CE5617 Advanced Geotechnical Engineering
A*
CE5606 Advanced Construction Materials and Structural Retrofitting Technology
A+
CE5602 Structural Dynamics and Seismic Design
A+
CE5513_CN Research Methods and Professional Development
A
CE5519 Civil Engineering Dissertation
A
FINAL CLASSIFICATION WITH DISTINCTION
UNDERGRADUATE EDUCATION 2021 — 2024

BSc Civil Engineering.

UNIVERSITY Epoka University
DEGREE Bachelor in Civil Engineering
FINAL CGPA 3.08 / 4.00 WITH HONOURS
ECTS 180
YEAR 01

2021 — 2022

MODULE GRADE
CE101 Introduction to Civil Engineering
BA
CE121 Civil Engineering Drawing
AA
CHM103 General Chemistry
BB
ENG103 Development of Reading and Writing Skills in English I
CB
MTH101 Calculus I
BA
PHY101 General Physics I
CB
CE104 Geology for Civil Engineers
BA
CE122 Materials Science
AA
CE132 Engineering Mechanics I
CC
CEN104 Introduction to Computers & Programming
BA
ENG104 Development of Reading and Writing Skills in English II
BA
MTH102 Calculus II
CC
YEAR 02

2022 — 2023

MODULE GRADE
CE213 Mechanics of Materials I
CC
CE223 Introduction to Construction Materials
BA
CE233 Engineering Mechanics II
CC
MTH201 Differential Equations
CB
MTH205 Probability and Statistics for Engineers
AA
CE214 Mechanics of Materials II
CB
CE240 Engineering Hydrology
BB
CE284 Surveying
BB
FL204 German II
AA
MTH202 Mathematics for Engineers
CB
YEAR 03

2023 — 2024

MODULE GRADE
CE301 Summer Practice I
S
CE311 Engineering Economics
BA
CE341 Fluid Mechanics
BA
CE361 Soil Mechanics
BB
CE381 Principles of Transportation and Traffic Engineering
CB
CE395 Structural Analysis
BB
CE260 Structural Mechanics
CB
CE322 Construction Engineering and Management
AA
CE326 Hydromechanics
AA
CE332 Reinforced Concrete Fundamentals
BB
CE348 Fundamental of Steel Design
AA
CE366 Final Comprehensive Exam
BB
CE382 Foundation Engineering
AA
FINAL RESULT CGPA 3.08 / 4.00