Stasinopoulos, Athanasios

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Stasınopoulos, Athanasios
Stasinopoulos, Thanos N.
Stasinopoulos, T.N.
Job Title
Email Address
athanasios.stasinopoulos@ieu.edu.tr
athan.stasin@gmail.com
Main Affiliation
06.01. Architecture
Status
Current Staff
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Turkish CoHE Profile ID
Google Scholar ID
WoS Researcher ID

Sustainable Development Goals

11

SUSTAINABLE CITIES AND COMMUNITIES
SUSTAINABLE CITIES AND COMMUNITIES Logo

2

Research Products

4

QUALITY EDUCATION
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1

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8

DECENT WORK AND ECONOMIC GROWTH
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1

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12

RESPONSIBLE CONSUMPTION AND PRODUCTION
RESPONSIBLE CONSUMPTION AND PRODUCTION Logo

2

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9

INDUSTRY, INNOVATION AND INFRASTRUCTURE
INDUSTRY, INNOVATION AND INFRASTRUCTURE Logo

1

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15

LIFE ON LAND
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1

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6

CLEAN WATER AND SANITATION
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1

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1

NO POVERTY
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1

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7

AFFORDABLE AND CLEAN ENERGY
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2

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10

REDUCED INEQUALITIES
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0

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14

LIFE BELOW WATER
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1

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2

ZERO HUNGER
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1

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13

CLIMATE ACTION
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1

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5

GENDER EQUALITY
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0

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16

PEACE, JUSTICE AND STRONG INSTITUTIONS
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0

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17

PARTNERSHIPS FOR THE GOALS
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0

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3

GOOD HEALTH AND WELL-BEING
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0

Research Products
Documents

9

Citations

33

h-index

4

Documents

2

Citations

12

Scholarly Output

7

Articles

2

Views / Downloads

11/144

Supervised MSc Theses

2

Supervised PhD Theses

0

WoS Citation Count

12

Scopus Citation Count

15

WoS h-index

2

Scopus h-index

2

Patents

0

Projects

0

WoS Citations per Publication

1.71

Scopus Citations per Publication

2.14

Open Access Source

2

Supervised Theses

2

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JournalCount
-- 37th PLEA Conference, Sustainable Architecture and Urban Design: (Re)Thinking Resilience, PLEA 2024 -- 2024-06-26 through 2024-06-28 -- Wroclaw -- 2147912
Engıneerıng Constructıon And Archıtectural Management1
Journal of Green Buıldıng1
PLEA 2020 - 35th PLEA Conference on Passive and Low Energy Architecture Planning Post Carbon Cities, Proceedings -- 35th PLEA Conference on Passive and Low Energy Architecture Planning Post Carbon Cities, PLEA 2020 -- 1 September 2020 through 3 September 2020 -- A Coruna -- 1964031
Current Page: 1 / 1

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Scholarly Output Search Results

Now showing 1 - 7 of 7
  • Master Thesis
    Environmental Sustainability in the Design of Iconic High-Rise Buildings
    (İzmir Ekonomi Üniversitesi, 2022) Aka, Tuğba; Stasınopoulos, Athanasios
    Kentleşmeye neden olan nüfus artışı dünyamızı çevreye ve insan yaşamına en büyük zararı veren büyük gri bir blok haline getirir. Yüksek binalar aynı şehirde minimum taban alanıyla maksimum insanın bir arada yaşamasını sağlayarak bina yerine kullanılacak alanların yeşillendirilmesine olanak tanıyor. Bu çalışma, enerji verimi sağlayan yüksek binaların tasarlanmasına yardımcı olan faktörleri içermektedir çünkü, yüksek katlı binalar inşaat sırasında ve sonrasında yüksek miktarda enerji tüketirler. Sürdürülebilir yüksek bina mimarisi arayışında, yüksek binalarda enerji verimliliğini incelemek çok önemlidir. Bu nedenle bu makale, minimum enerji tüketimi ile çevresel açıdan sürdürülebilir yüksek binalar elde etmeye yardımcı olan bazı tasarım özelliklerini içermektedir. Bu tasarım özellikleri yapılı form ve konfigürasyon, bina yönelimi, çift cidarlı cephe tasarımı, yeşil duvar tasarımı, su yönetimi teknolojileri, yenilenebilir enerji kaynakları ve malzeme seçimidir. Yüksek binaların işlevi ve bulundukları şehrin iklim koşulları bu özelliklerinin uygulanmasında önemli bir rol oynar. Bu çalışma farklı işlevlere ve iklim koşullarına sahip beş eko-ikonik yüksek binayı çevresel tasarım stratejilerinin nasıl uygulandığını anlamak için incelemiştir. Bu çalışmanın amacı, çevresel açıdan sürdürülebilir yüksek binalar inşa etmenin mümkün olup olmadığını anlamak ve bu tasarım yöntemlerinin nasıl uygulandığı incelemektir. Bu sebeple, çevresel açıdan sürdürülebilir yüksek binalar kapsamında derinlemesine araştırma yapılmıştır. Bu tezde yüksek yapıların tarihçesi, çevresel etkileri, sürdürülebilir mimari, yüksek yapılarda sürdürülebilirlik ve seçilmiş bina çalışmaları gibi konular kapsamlı literatür araştırması ve karşılaştırmalı yöntem kullanılarak incelenmiştir. İkonik yüksek binaların çevresel tasarım perspektifi dikkate alınarak çıkarımlar yapılmıştır. Bu tez, yüksek mimariye yeni bir bakış açısı kazandırılmış ve yüksek binalarda çevresel zararın ve enerji tüketiminin en aza indirilmesinde yol gösterici olmayı amaçlamıştır.
  • Article
    Citation - WoS: 10
    Citation - Scopus: 11
    A Survey of Solar Envelope Properties Using Solid Modelling
    (College Publishing, 2018) Stasinopoulos, Thanos N.
    Solar envelope is a concept for regulating solar access in urban planning. It is a roof-like imaginary surface over a given piece of land that controls the maximum allowed building height in order to avoid casting shadows on the neighbours during a specific period. The volume of solar envelopes regulates building density, depending on geometric attributes and time (plot size and proportions, orientation, ground slope, latitude, duration of insolation). This work compares the effect of such factors on the size of solar envelopes on a variety of land parcels, individually or in groups. Repeated applications of solid modelling are used to calculate in each case the values of 'Solar Volume Coefficient', i.e. the volume of a solar envelope per unit of its base as a measure for comparisons. Results show the influence of the various factors affecting the geometry of solar envelopes. Among other findings, it is also shown that solar envelopes generate urban densities lower than conventional urban regulations. The total volume of solar envelopes over an area ('Solar Building Potential') can be increased by raising the reference level of solar envelopes ('shadow fence' or 'solar fence'). Lower urban densities are compensated by facilitating solar applications, as well as by enhancing daylight, ventilation, and vistas in the urban context, thus creating new 'solar cityscapes' exemplified here on existing street patterns.
  • Master Thesis
    Comparison of Courtyards in Traditional Iranian Houses in Different Climates of Iran
    (İzmir Ekonomi Üniversitesi, 2023) Mousighichi, Pouya; Stasinopoulos, Athanasios
    İran'ın çeşitli iklimleri, insanların evlerinin mimari tasarımlarını ayarlayarak iklimsel farklılıklara uyum sağlamasını gerektirdi. Avlular, yüzyıllardır İran mimarisinin çok önemli bir özelliği olmuştur. Buna göre, geleneksel avlular, her bölgenin ikliminin ihtiyaçlarına göre özelleştirilerek, kendi çevreleriyle daha uyumlu hale getirildi. Geleneksel bir İran avlusunda, bölgenin çevresel özelliklerini ele alan rahat bir yaşam ortamı yaratmak için rüzgar, güneş ve enerji gibi başlıca çevresel özelliklerle uğraşmak çok önemli bir faktördür. Avlulu evlerin İran'ın farklı bölgelerindeki iklim adaptasyonu, yerel mimaride iklimin önemine ışık tutabilir ve dikkate değerdir. Bu nedenle, mevcut tez, İran'ın Köppen-Geiger sınıflandırması (kurak, karasal, ılıman) tarafından belirlenen üç iklim grubundaki geleneksel avludaki farklılıkları incelemektedir. Çalışmada öncelikle İran'ın kurak (Yezd), karasal (Tebriz) ve ılıman (Sari) iklimlerdeki etkili avlulu evlerinden bazı örnekler tanıtılmakta, özellikleri ve özellikleri üzerinde durulmaktadır. Daha sonra, bu önerilerin eski uygulamalarla ne ölçüde uyuştuğunu anlamak için, İklim Danışmanı [CC] yazılımı tarafından önerilen tasarım stratejilerine dayalı olarak her bir iklim tipinin özellikleri karşılaştırılır ve tartışılır. Sonuçlar, Yazd, Sari ve Tebriz'deki geleneksel avlulu evler ile CC tasarım önerileri arasında yakın bir uyum olduğunu ve kullanıcıların bir yıl içinde konfor süresini optimize ettiğini gösterdi.
  • Conference Object
    Remarks on Olgyay’s Quotes About Irradiation on Curved Roofs
    (Oficyna Wydawnicza Politechniki Wroclawskiej, 2024) Stasinopoulos, T.N.
    This paper focuses on two quotes from Victor Olgyay's "Design with Climate" regarding the relationship between geometric properties and thermal performance in domes and vaults commonly used as roofs in warm regions. Specifically, the paper examines the statement that "the envelope of a hemispherical vault is roughly three times the surface of its base" and explores the assertion that "the radiation of high sun positions is diluted on a rounded surface". The study validates the first statement in geometric terms and then shifts attention to the latter, which has been extensively researched by various scholars. Building upon previous findings, the work confirms Olgyay's claim regarding insolation per unit surface area but challenges the assertion regarding total solar load. In fact, curved roofs receive more irradiation than horizontal roofs of the same footprint, depending on their Base to exposed Surface ratio. This correlation applies to all convex roof shapes, whether curved or not. © Copyright by Fundacja PLEA 2024 Conference, Wrocław 2024.
  • Article
    Citation - WoS: 2
    Citation - Scopus: 2
    Comparing Insolation on Building Facades in Five Different Climates
    (Emerald Group Publishing Ltd, 2023) Stasinopoulos, Athanasios
    Purpose The objective is to provide a quantitative insight on the dynamic nature of insolation on the building perimeter according to location, season and orientation. Such understanding is necessary for deciding on solar control strategies in diverse climatic environments, from low to high availability of insolation. Design/methodology/approach This study explores the seasonal changes of solar irradiation on building facades of various orientations at five locations with diverse climates (Reykjavik, London, Athens, Riyadh, Lagos). Solar data collected from the European PVGIS database is used to study the monthly distribution of global solar radiation incident on building facades at cardinal and ordinal orientations, as well as the proportions of its components. Findings The results illuminate the effects of the various factors on insolation. Among others: In all locations, horizontal surfaces receive more annual irradiation than any facade. In summer, east/west facades receive more radiation than south, hence solar protection on those directions is more important than on south. The beam fraction varies seasonally on south and north facades, but not so on east/west. Local atmospheric conditions can offset the importance of latitude on insolation levels and composition. Originality/value The paper utilises commonly available data to correlate insolation values and types under different factors across the globe, offering a better understanding on insolation for the design of greener buildings.
  • Conference Object
    Aqua-Punctures: Rainwater Harvesting for Urban Cooling Through Vegetation and Evaporation in Izmir
    (Oficyna Wydawnicza Politechniki Wroclawskiej, 2024) Stasinopoulos, T.N.; Çakir, N.S.
    Global warming and urban heat island [UHI] have become interconnected issues related to dehydration in many regions across the globe. To mitigate UHI, it is essential to transform solar heat into latent heat through evaporation rather than allowing it to contribute to the sensible heat in urban areas. This can be achieved by promoting vegetation-based evapotranspiration and implementing evaporative cooling techniques. One effective approach is rainwater harvesting, which moderates the water loss to the sea and facilitates evaporation during dry periods. Furthermore, the collected water can support plant growth and enhance their evapotranspiration process. In Izmir, a Mediterranean city in need of urban cooling, implementing a concept called 'Aquapuncture' can be beneficial. This concept involves creating multiple hubs throughout the city that utilize rainwater for passive cooling. This work focuses on describing the practical aspects and design strategies of these cooling units implemented as attractive and refreshing elements in urban design. The aim is to address the challenges faced by warm cities like Izmir and provide effective cooling solutions. By adopting these measures, it is possible to combat the adverse effects of global warming, mitigate the UHI effect, and create more pleasant and comfortable conditions in warm cities. © Copyright by Fundacja PLEA 2024 Conference, Wrocław 2024.
  • Conference Object
    Citation - Scopus: 2
    Geometric Forms and Insolation Ii a Reassessment of the Relation Between Shape and Solar Irradiation
    (University of A Coruna and Asoc, 2020) Stasinopoulos, Athanasios
    This work re-evaluates the results of an old research on the relation of solar energy received by various forms and their geometric properties. In that past work, measured data of horizontal radiation was used to calculate the insolation on various forms in London, Athens, and Riyadh according to the solar model by J.K.Page et. al. of 1986. The ratio between the average insolation on a given form and on horizontal is named 'Form Insolation Index' [m-index], showing the percentage of the available solar energy received by the form. A major finding was the linear relationship between the m-index of a form and the ratio between its base size and its exposed surface [B/F]. The present research is a simplified repetition of the old one, extended also to Reykjavik and Lagos. The main difference from the past is that solar energy data on inclined planes was not calculated from horizontal but taken from datasets provided by the Photovoltaic Geographical Information System (PVGIS). The new output confirmed the linear relationship between m-index and B/F ratio. An unexpected finding was that new radiation values are higher than those measured 30 years earlier, an increase attributed mainly to the stronger direct component. © PLEA 2020 - 35th PLEA Conference on Passive and Low Energy Architecture Planning Post Carbon Cities, Proceedings. All rights reserved.