At this stage, the third phase was started with the aim of designing a new building and #preserving one of the existing buildings. The designed building is known as the Z Building. Algorithm used in the design of this building is derived from #syllogism philosophy. In this algorithm, first the physical plan of the building is specified, and then the desired spaces for this building are determined. In the next step, the comfort elements of each of these spaces are examined. For example, #visualcomfort is very important for the gallery space. Then, by analyzing the design site, the strengths and weaknesses of each part of the site are examined from different aspects of comfort elements, and by scoring each part of this site, the initial placement of spaces in three floors is done. Form and shape is also derived from the existing buildings in the vicinity of the complex to establish the necessary harmony with all the buildings of the complex.
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Finally got time to share the results of our recent project at the Politecnico di Torino's Department of Energy, where our team (shahaboddin ghiasi and Nazanin M.) conducted an in-depth energy audit and certification for the Boccaccio and Don Sapino Kindergarten buildings in #Venaria Italy. This was a comprehensive study aimed at improving energy efficiency and sustainability within educational facilities. Our audit involved detailed building modeling, calibration with real consumption data, and a thorough assessment of Energy Efficiency Measures (EEMs). The outcome? A set of practical, cost-optimal solutions that significantly enhance the building's energy performance. 🔍 Key Highlights: Developed a calibrated model using #Edilclima software for precise energy consumption forecasting. Identified and analyzed various energy efficiency improvements, from thermal insulation to optimized heating systems. Successfully balanced energy savings with economic feasibility, ensuring the project's sustainability. Proud of what we've achieved and eager to see these recommendations implemented for a greener future! 🌱 A special thanks to my professors, Vincenzo Corrado and Ilaria Ballarini, for their invaluable guidance and support throughout this project. Also Thanks to Franz Giorgio Maria Bianco Mauthe Degerfeld for helping out our team. #Sustainability #EnergyEfficiency #BuildingPerformance #PolitecnicodiTorino #GreenBuilding #EenergyAudit
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As this academic year coming to the end my 1 year TA experience has ended today. Learned a lot from everyone and hope them all the best for their brilliant journey. Also special thanks to professor Marika Mangosio for giving this opportunity to me. #polito #politecnicoditorino #BuildingEngineering #classOf2024
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I’m happy to share that I’m starting a new position at iiSBE Italia!
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🎓 Excited to share that I successfully completed TIMEPAC Academy Webinar Series I had the opportunity to gain my knowledge in building energy performance in European context . It was a fantastic learning experience, and I'm eager to apply these new insights to my projects. A big thank you to academy for delivering such valuable content! 💼 And a special thanks to my professors Vincenzo Corrado and Ilaria Ballarini for recommending this webinar. #EPC #Timepac #BuildingEnergyAssessment #EnergyAudit
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This is why you should examine every thing with simple math.
Physicist, Building scientist, HTflux founder, Solar and Thermal Radiation aficionado, Thermal Comfort and Urban Heat expert, Software developer
Yesterday, a nice article claimed that Stanford university and Elon Musk have developed a PV module that would harvest lunar light to generate up to 1.2 kWh per night. Really? You think it is an April Fools hoax? Can you prove it? It's actually not that hard and a fun challenge, so let's do this. Let’s go for max power and assume a nice full moon at 70° degrees elevation: 1.) the average solar radiation reaching the moon (same as for earth): 1360 W/m² 2.) solar radiation reflected by the moon’s surface using moon albedo: 1360x0.13=176.8 W/m² 3.) the avg. moon-earth distance is: 384400km and the moon radius 1737km -> the visible solid-angle of the moon-disk=6.414E-5. 4.) integrate over the hemisphere to determine lunar irradiance before the atmosphere = 6.414E-5*176.8/pi = 3.61E-3 W/m² 5.) the air-mass for 70° is 1.0642 and let’s assume a clear (dry) night sky, so 68.9% of the direct beam will pass the atmosphere and 6.9% will be diffuse radiation reaching the surface of the earth. 6.) irradiance on the horizontal PV module = direct + diffuse lunar radiation = 3.61E-3*0.689*cos(20°) + 3.61E-3*0.069 = 2.58E-3 W/m² So that finally gives us a lunar irradiance of 0.0026 W/m² on ideal conditions (high full moon on a clear night sky). With a PV efficiency of 20%, that yields 0.5mW/m² (milliwatt per square metre PV)... but I doubt that the electric conversion would work with such low currents anyway. Well, I guess it was an April Fools hoax then. 😉 Link to article: https://lnkd.in/dSSkACus #lunarPV #lunarirradiance
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Sharing an update on our project for the "Sustainable Design for Building Refurbishment" course. Together with my colleagues shahaboddin ghiasi Sina Kerij and Saba Chivai , we're focusing on the renovation of the "Centrale Termica" building in Ivrea, originally designed by architect Eduardo Vittoria nestled within the UNESCO World Heritage Site of #Ivrea, where the visionary efforts of the #OlivettiFoundation have left an indelible mark! 🏗️♻️ Under the guidance of Professor Marco Zerbinatti, we're exploring innovative solutions to enhance sustainability and functionality while preserving the building's historical significance. 🌿 In this transformative project, we're proposing a comprehensive refurbishment plan to repurpose the Centrale Termica into an "Innovation Factory." This plan spans across three floors and integrates various elements conducive to creativity and problem-solving. We're incorporating collaborative workspaces, cutting-edge technology such as foldable panels, rainwater harvesting systems, and innovative solutions like the "hydrogen storage" . Our goal is to streamline the innovation process within the refurbished Centrale Termica, empowering individuals and teams to develop solutions that address pressing societal challenges while honoring Ivrea's rich cultural heritage. 🌍✨ Stay tuned as we unveil our transformative refurbishment plan, seamlessly blending sustainability with architectural heritage, to realize the vision of an "Innovation Factory" across three floors within the historic Centrale Termica building! #Sustainability #BuildingRefurbishment #UNESCO #Ivrea #InnovationFactory #RefurbishmentPlan #HydrogenStorage #polito
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I'm thrilled to announce the launch of our new course: "Survey and Drawing Design for Urban Refurbishment at Sustainable Transition"! at #Polito This comprehensive course is designed to equip professionals with the skills and knowledge needed to drive positive change in urban environments, with a special focus on the historic city of #Carignano in Turin, Piedmont. 🏫 Refurbishing Schools for Sustainable Education: Our primary aim? To refurbish existing buildings, including schools catering to children aged 14 to 18, ensuring they become exemplary models of sustainability while preserving their historic character. 🔍 Key Aspects of the Project: 1️⃣ Pre-Design Assessment: Delve into the historic configurations of Carignano and its buildings, including the school premises, to understand their significance and heritage value. 2️⃣ Climatic Review: Conduct a thorough analysis of the local climatic conditions to inform sustainable design decisions. 3️⃣ Designing a New Gym: Integrate a state-of-the-art gymnasium into the school site, providing modern facilities to promote physical fitness and well-being among students. Noteworthy, the gym design incorporates innovative double skin facades, enhancing energy efficiency and aesthetic appeal. 4️⃣ Proximity to Carignano Duomo: Situated near the iconic Duomo of Carignano, our project embraces the rich cultural heritage of the area, blending modern sustainability with historic surroundings. 5️⃣ Collaborative Design Process: Embark on the design phase with sketches and expert guidance from Professor Giorgio Garzino and Mariapaola Vozzola, leveraging their expertise to create innovative solutions for sustainable urban refurbishment. 6️⃣ Design Developments and Details: Explore design developments and intricate details for the school and gym, incorporating cutting-edge sustainable technologies and architectural elements to create inspiring learning and recreational spaces. Thanks to my colleague shahaboddin ghiasi. #Sustainability #UrbanDevelopment #SustainableCities #UrbanPlanning #HistoricPreservation #EnvironmentalSustainability #GreenCities #SchoolRefurbishment #GymDesign #DesignProcess #DesignDevelopments
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Check it out!
I would be grateful if you could help our team to promote more by liking this post and leaving a comment and sharing it. These pictures and drawings are part of the latest project done by our team (SATA BIM). which is actually a small part of a larger interior design project whose images are presented as samples. All modeling, drawings and renderings are done in Autodesk Revit software. Also, in an integrated process, this project has been done in the BIM modeling process. SATA BIM #bim #bimmodeling #bimservices #bimcoordination #revitarchitecture #revit #revitstructure #revitbim #interdesign #architecturedesign
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