Clínica Diagonal: Thermodynamic simulation

Praxis Resilient Buildings collaborated with the design team of Clínica Diagonal to address a common challenge in healthcare buildings: overheating during summer and ensuring thermal comfort in spaces with prolonged occupancy.

Clínica Diagonal

Thermodynamic simulation

Praxis cabecera proyectos

Description

Praxis Resilient Buildings collaborated with the design team of Clínica Diagonal to address a common challenge in healthcare buildings: overheating during summer and ensuring thermal comfort in spaces with prolonged occupancy.

Clínica Diagonal

Using advanced dynamic thermal simulations with the DesignBuilder tool, we assessed the building’s performance under real climate and usage conditions. The study identified critical zones with overheating risks—such as corridors and waiting areas—and evaluated passive strategies to improve comfort without increasing energy demand.

Solutions explored included improved glazing, natural ventilation in the central atrium, and cooled supply air. The combination of these measures led to a significant improvement in thermal comfort, with temperature reductions of up to 9 °C in the most affected areas.

Our work helped optimize both the envelope design and the HVAC strategy, while also simplifying construction logistics through a unified glazing specification across the building.

This project highlights how rigorous analysis and simulation tools can deliver effective, sustainable solutions in complex environments like healthcare facilities.

Clínica Diagonal
Clínica Diagonal

Read our Blog article about the project here

  • Year: 2023
  • Location: Barcelona, Cataluña, Spain
  • Client: GENARS
  • Services Praxis: Thermodynamic simulation

Pavelló Illa sports centre: Thermodynamic simulation

Energy simulation, natural ventilation and passive optimisation in an urban sports pavilion.

Pavelló Illa sports centre: Thermodynamic simulation

Praxis cabecera proyectos

Energy simulation, natural ventilation and passive optimisation in an urban sports pavilion.

The new Pavelló Illa, located in the heart of Barcelona’s Les Corts district, is a sports facility promoted by BIMSA that combines contemporary architecture, urban integration, and special attention to user comfort. The project, by Anna Noguera Arquitectura & AIA Arquitectura, is characterised by a light volume wrapped in a green façade and translucent polycarbonate panels that function as a bioclimatic filter and a visual landmark.

Praxis developed a full thermal and energy simulation study using DesignBuilder–EnergyPlus, modelling the building’s dynamic behaviour throughout the year. The scope included a bioclimatic design study, assessment of the thermal envelope, detailed modelling of natural ventilation and daylighting, as well as advanced simulations of thermal comfort and summer behaviour in the two main sports courts.

One of the project’s critical aspects was ensuring comfort in a large-volume, high‑use building without resorting to oversized mechanical solutions. To achieve this, natural ventilation strategies were studied in depth, including pressure‑driven flow and stack effect between façade and roof openings. Simulations showed that, especially in one of the sports halls, average rates of up to 2.7 air changes per hour could be achieved in summer, significantly reducing overheating risk.

The thermal impact of the green façade was also evaluated, modelling its monthly light transmission factor and its contribution to seasonal shading. Additional solar protection strategies were analysed, such as vertical and horizontal louvres and the incorporation of solar‑control glazing.

The study also included a quantitative analysis of operational hours with temperatures outside the target range (≤14°C and ≥26°C), providing the design team with key data for decision‑making.

The result is a building optimised from a passive design perspective, energy‑efficient and future‑ready, demonstrating how the combination of architecture and advanced simulation can enhance the performance and user experience of urban sports facilities.

Read our blog post about the project

  • Year: 2025
  • Location: Barcelona, Catalonia, Spain
  • Client: Anna Noguera Arquitectura & AIA Arquitectura
  • Praxis services: Thermodynamic simulation; bioclimatic design; natural ventilation modelling

Estepona Town Hall: LEED simulations

The new municipal headquarters in Estepona brings all city services together under one roof while catalysing the urban renewal of the town centre.

Estepona Town Hall: LEED simulations

Praxis cabecera proyectos

ASHRAE 90.1 energy simulations for LEED certification

The new municipal headquarters in Estepona brings all city services together under one roof while catalysing the urban renewal of the town centre. Officially inaugurated on 10 March 2023, the 13,068 m², eight‑storey building (plus basement) also includes a 131‑space public car park—part of a wider strategy to streamline access and public services.

Our client was Castaño & Asociados, who acted as LEED AP assessors on the project. Praxis was commissioned to undertake the ASHRAE 90.1 energy simulations required for LEED certification, using DesignBuilder–EnergyPlus. Our scope covered baseline vs. proposed modelling, daylighting controls, HVAC and envelope parametrisation, iterative responses to the LEED Preliminary Review, and documentation for the certification submittal.

Working from design documents and manufacturer data, we developed calibrated models for both the Baseline (per ASHRAE 90.1 Appendix G) and the Proposed building. The thermodynamic analysis tested envelope assemblies, glazing options and shading strategies—including a perforated metal double‑skin that tempers solar gains—together with balcony overhangs and a cool‑colour roof. On the active systems side, the proposed design featured high‑efficiency Swegon air‑handling units with rotary heat recovery (~84%); a VRF system with heat recovery and inverter compressors; and LED lighting with DALI daylight‑linked controls. We also modelled a 65.1 kWp rooftop PV array with an estimated annual yield of ~104 MWh, contributing a meaningful share of site electricity.

The modelling quantified how passive and active measures combine to reduce loads and operational energy: improved wall and glazing U‑values, the double‑skin façade and external overhangs mitigate summer gains, while winter solar access and airtightness limit heating demand; efficient heat‑recovery ventilation and VRF further cut space conditioning energy; and daylight‑responsive LED strategies lower lighting energy and internal gains. Our iterative submissions and narrative responses addressed reviewer comments on assemblies, lighting LPD distribution, daylight controls, outdoor air rates, secondary HVAC in assembly spaces, and baseline heat‑recovery provisions—ensuring that the final models reflected design intent and LEED methodology with full traceability.

Thermodynamic simulation; ASHRAE 90.1 energy simulations
Thermodynamic simulation; ASHRAE 90.1 energy simulations
  • Year: 2023
  • Location: Estepona, Málaga, España
  • Client: Castaño & Asociados
  • Praxis services: Thermodynamic simulation; ASHRAE 90.1 energy simulations

Learnlife Eco Hub: aula Passivhaus

Consultoría y diseño Passivhaus para el Eco Hub, un centro de sostenibilidad e innovación educativa, situado en primera línea de mar en Castelldefels.

Learnlife Eco Hub: pop-up learning space

Passivhaus, Blower Door, Ingeniería instalaciones

Praxis cabecera proyectos

Descripción

Praxis ha realizado la consultoría y el diseño Passivhaus para este Eco Hub, un centro de sostenibilidad e innovación educativa, situado en primera línea de mar en Castelldefels. Diseñado por Sol Espoille y el equipo de Learnlife, se basa en la filosofía de proporcionar espacios que ofrezcan “una mejor forma de aprendizaje, respaldada por la ciencia y la investigación, que se centre en el alumno y en el aprendizaje personal, autodeterminado, e inspirado en un propósito”.

Ganador del premio Green Solutions Awards 2022-2023 de Construction 21 España en la categoria Low-Tech, el Eco Hub consta de dos módulos industrializados de estructura de madera, construidos por Tall Fusta con materiales saludables y de bajo impacto ambiental. Las ventanas son de Elke Wood Windows, con carpinterías de madera meranti, con vidrios doble bajo-emisivos con gas argón. Cuenta con un sistema de ventilación controlada con recuperación de calor Zehnder, para una óptima calidad de aire, y ha alcanzado la certificación Passivhaus Classic.

Praxis ha realizado la simulación energética en PHPP, el diseño de la envolvente térmica y capa hermética, asesoría en materiales de bajo impacto y saludables, y optimización y cálculo de los puentes térmicos y detalles constructivos.

Hemos realizado además el dimensionamiento y la prescripción del sistema de ventilación controlada de doble flujo con recuperación de calor para garantizar una alta calidad del aire interior con un gasto energético mínimo, junto con el sistema de climatización y producción de ACS. En obra, Praxis ha realizado los ensayos Blower Door para la comprobación de la ejecución de la hermeticidad del edificio y una asistencia a la DF mediante visitas de control Passivhaus.

Photos de Jordi Vila Marta – Argotphoto

Base de datos de proyectos Passivhaus Internacional

Base de datos de proyectos Passivhaus la Plataforma PEP

Base de datos de proyectos de Construction21 España

Año: 2021

Lugar: Castelldefels, Barcelona

Servicios:
Consultoría Passivhaus, Ensayos Blower Door, Visitas de control Passivhaus, dimensionamiento y prescripción de sistema de ventilación controlada de doble flujo, dimensionamiento y prescripción de sistema de climatización & producción de ACS

ICONIC: High performance sports centre, Andorra 

Description Passivhaus design and consultancy for a high-performance sports centre located at 2600 metres above sea level in El Pas de la Casa, Andorra. This 9000 m2 building, designed by Engitec, is in the process of Passivhaus Classic certification.  Praxis has done the PHPP energy modelling, design of the thermal envelope and airtight layer, advice …

Cramea, High performance sports centre

Passivhaus

Praxis cabecera proyectos

Description

Passivhaus design and consultancy for a high-performance sports centre located at 2600 metres above sea level in El Pas de la Casa, Andorra. This 9000 m2 building, designed by Engitec, is in the process of Passivhaus Classic certification. 

Praxis has done the PHPP energy modelling, design of the thermal envelope and airtight layer, advice on low-impact materials, and analysis and optimisation of thermal bridges and construction details.

We’ve undertaken thermodynamic analysis of the building, using Design Builder (EnergyPlus), to assess thermal comfort and analyse the risk of summer overheating in critical zones in the building.

We have also consulted on mechanical and electrical system design, with proposals for improvements and compliance with the Passivhaus standard, to ensure efficient operation and low maintenance costs. Finally, we have provided with on-site Passivhaus supervision and quality control. 

Year: 2022

Location: El Pas de la Casa, Andorra 

Services Passivhaus design & consultancy, thermodynamic simulation, M & E consultancy, and site supervision  

Can Mati, Catalonia, EnerPHit Classic home

Description Can Mati, Viladecans Passivhaus EnerPHit Classic Retrofit of a Historic Farmhouse Located in Viladecans (Barcelona), Can Mati is a historic rural building that has been sensitively renovated to become the first Passivhaus-certified home in the city. The deep energy retrofit retained the existing structure and architectural character while creating generous, light-filled interior spaces. The …

Can Mati, Catalonia, EnerPHit Classic home

Passivhaus Consultancy & Blower Door testing

Praxis cabecera proyectos

Description

Can Mati, Viladecans

Passivhaus EnerPHit Classic Retrofit of a Historic Farmhouse

Located in Viladecans (Barcelona), Can Mati is a historic rural building that has been sensitively renovated to become the first Passivhaus-certified home in the city. The deep energy retrofit retained the existing structure and architectural character while creating generous, light-filled interior spaces. The project has achieved Passivhaus EnerPHit Classic certification.

The energy retrofit focused on improving the thermal envelope and installing efficient MEP systems, as well as an on-site photovoltaic array for self-consumption. A remarkable airtightness value of n50 = 0.5 ach was achieved—meeting the Passivhaus criteria for new builds—by using simple solutions such as plaster finishes and existing roof membranes, with airtight membranes applied only in specific locations.

Wherever feasible, insulation was applied externally. Due to conservation constraints, the upper part of the main façade was insulated internally using cork aggregate and lime-based Diathonite mortar (by Diasen), while the courtyard façade was externally insulated with a rock wool ETICS system and lime-based Com Cal render. Horizontal elements were insulated with wood fibre, and an additional XPS layer was added above the roof membrane to prevent interstitial condensation. The result is a respectful, high-performance retrofit that has reduced heating demand by 90% compared to the original condition—setting a benchmark for energy-efficient retrofitting of historic buildings.

Links:

International Passivhaus Projects Database
Spanish Passivhaus Projects Database

  • Year: 2021
  • Location: Viladecans, Catalonia, Spain
  • Architecture: Daniel Tigges – Tigges Architekt
  • Services provided by Praxis: Passivhaus Consultancy & Blower Door testing
  • Passivhaus Certification Class: EnerPHit Classic
  • Climate zone: Warm Temperate
  • Floor area: 208 m2
  • Thermal envelope area: 783 m2
  • Blower Door Result: 0,52 n50
  • Heating Demand: 31 kWh/m2·a
  • Cooling Demand: 14 kWh/m2·a
  • Primary Energy Renewable consumption (EPR): 54 kWh/m2·a
  • Final Energy consumption: 38 kWh/m2·a
  • Renewable energy generation: 0 kWh/m2·a
  • CO2eq emissions: 20 kg/m2·a

Terrassa Haus: multi-family Passivhaus Classic

Terrassa Haus is the first multi-residential building to receive Passivhaus certification in the city of Terrasa, Catalonia, Spain. The project was developed by Cambolico and designed by architects Antoni Espona & Xavier Torcal. Oliver Style and Bega Clavero from Praxis Resilient Buildings carried out the Passivhaus consultancy, HVAC design and Blower Door testing.

Terrassa Haus: multi-family Passivhaus Classic

Passivhaus Consultancy

Praxis cabecera proyectos

Description

Terrassa Haus is the first multi-residential building to receive Passivhaus certification in the city of Terrasa, Catalonia, Spain. The project was developed by Cambolico and designed by architects Antoni Espona & Xavier Torcal. Oliver Style and Bega Clavero from Praxis Resilient Buildings carried out the Passivhaus consultancy, HVAC design and Blower Door testing. The building achieved Passivhaus Classic certification.  

The ground floor offers 2 commercial spaces, with a further three floors with apartments ranging from 76 m2 to 154 m2. The building has a total floor area of 1142m2 and includes a communal co-working space, bike room, gym, and communal pool.

With an existing concrete structure that had been abandoned during the economic crisis of 2007, an external thermal insulation system with EPS insulation was applied over ceramic brick and rendered, with a further 5cm of Knauf Insulation mineral wool inside in the service void. The roof is insulated with XPS insulation. Rehau PVC windows frames with argon-filled low-e coated glazing make up the openings, with Swisspacer insulated glazing spacers. The window frames are installed with Iso-Top Winframer high density EPS pre-frames, to further reduce heat loss.

Heating, cooling and hot water is provided by individual Hitachi all-in-one heat pumps in each apartment. Similarly, mechanical ventilation with heat recovery is provided by individual Soler & Palau Passivhaus certified ventilation units, with intake air drawn in from the façade walls and stale air extracted to the roof with shared extract ducts.

Links:

PepiPHA

Photos: Terrassa Haus

  • Year: 2023
  • Location: Terrassa, Barcelona, España
  • Architecture: Antoni Espona & Xavier Torcal
  • Services provided by Praxis: Passivhaus Consultancy, thermal bridge calculations, building physics, heating-cooling-DHW-ventilation system design, Blower Door airtightness tests
  • Passivhaus Certification Class: Passivhaus Classic
  • Floor area: 1.142 m2
  • Thermal envelope area: 1.500 m2
  • Blower Door result: 0,6 n50
  • Heating Demand: 10 kWh/m2·a
  • Cooling Demand: 15 kWh/m2·a
  • Primary Energy Renewable consumption (EPR): 60 kWh/m2·a
  • Final Energy consumption: 50 kWh/m2·a
  • Renewable energy generation: 0 kWh/m2·a
  • CO2eq emissions: 18 kg/m2·a

Els Guiamets: Wine cellar and tasting room

Description Energy consultancy and M&E design for a wine cellar and tasting room in the Priorat region, Tarragona, designed by architect Èlia Vaqué. The winery consists of two modules, one underground, where wine is aged, and another above ground, where tastings are held: a total of 290 m2 gross floor area. Praxis has undertaken a thermodynamic …

Els Guiamets: Wine cellar and tasting room

Energy consultancy, M & E engineering

Praxis cabecera proyectos

Description

Energy consultancy and M&E design for a wine cellar and tasting room in the Priorat region, Tarragona, designed by architect Èlia Vaqué.

The winery consists of two modules, one underground, where wine is aged, and another above ground, where tastings are held: a total of 290 m2 gross floor area.

Praxis has undertaken a thermodynamic and daylighting study of the buildings, using DesignBuilder (EnergyPlus & Radiance), assessing temperature and relative humidity conditions in the wine cellar and analysing the risk of summer overheating in the tasting room. The results have been used in the design of the thermal envelope. We’ve also designed the M & E systems: mechanical ventilation with heat recovery, space heating and cooling, hot water production, and off-grid solar PV with batteries and backup generator. 

Year: 2021

Location: Els Guiamets, Tarragona 

Services:
Thermodynamic simulation, daylighting analysis, M&E design

Vila-seca sport hall: Thermodynamic simulation

Praxis Resilient Buildings conducted a detailed thermodynamic simulation study to assess and optimise the thermal behaviour of a new sports hall in Vila-seca, Tarragona

Vila-seca sports hall: Thermodynamic simulation

Praxis cabecera proyectos

Praxis Resilient Buildings conducted a detailed thermodynamic simulation study to assess and optimise the thermal behaviour of a new sports hall in Vila-seca, Tarragona. Designed by architect Pere Buil of Vora Arquitectes, the building follows a mixed-mode, non-conditioned design approach relying on passive strategies for year-round comfort.

Using the IWEC II climate file for nearby Reus Airport and the EnergyPlus simulation engine, we analysed key envelope components and operational strategies. Natural ventilation, solar control glazing, roof surface properties, daylighting control, and slab insulation were all assessed under typical winter and summer conditions.

Key outcomes included:

  • Cross-ventilation and stack effect strategies delivering >20,000 m³/h airflow without mechanical assistance.
  • Passive cooling success: Indoor temperatures remained below outdoor peaks in summer.
  • Unexpected impact of slab insulation: Reduced beneficial subsoil heat transfer in winter.
  • Daylight-responsive lighting control reduced electricity demand by up to 90%.

Recommendations included skipping under-slab insulation, optimising solar protection with external shading (especially on northwest façades), maintaining 30 cm of roof insulation, and implementing a sensor-based Building Management System (BMS) for smart window operation.

The result is a set of passive design strategies that allow the Vilaseca sports hall to perform comfortably and efficiently without active cooling or heating — a reference model for resilient educational sports infrastructure in Catalonia.

  • Year: 2025
  • Location: Vila-seca, Tarragona, Catalonia, Spain
  • Client: Vora Arquitectes
  • Services Praxis: Thermodynamic simulation