PORTFOLIO 2020PM
Petra Mlýnkovå petra.mlynkova7@gmail.com +420 775724323
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about me/CV
language skills
czech language mother tongue first name: Petra english language B2/C1 active last name: Mlýnková german language B1 active date of birth: 15.5.1997 french language A1 passive place of birth: Opava chinese language úroveň 1 passive address: Janáčkova 14 Opava - Malé Hoštice computer skills 74705 AutoCAD education Revit 2016-now Faculty of Architecture BUT Brno Sketchup 2012-2016 Mendel Grammar School Opava Vray Lumion Rhinoceros work experiences Grasshopper 2019-now m2au (arch. studio) 2016-now Ateliér Zóna (arch. studio) Adobe Photoshop Adobe Illustrator volunteering Adobe InDesign 2020 organization of the event called Days of Architecture in Opava city
hobbies
painting, (choir) singing, playing the ukulele, football, poweryoga, 3D print, writing poems
01
ZAR - structural model
doc. Ing. arch. Jaroslav Drápal, CSc.
02 AT1 - Monocoque
06
03 AT2 - Dům u řeky Ing. Michal Palaščák
B.Arch. Martin Kaftan, MSc, Ph.D.
04
05
AT5 - Fort sci-fi
Ing. arch. Jan Mléčka, Ph.D. Ing. arch. Jiří Marek
AT4 - Czech embassy Ing. arch. Jiří Marek
AT3 - Embryological house Ing. arch. Ing. Jiří Vítek
07 BP - New Townhall, Brno Ing. arch. Jiří Marek
school work
examples of work 08
design manual
- modular bench Ing. arch. Nicol Gale
09
11
competitions
in the team of m2au studio
10
12
bathroom designs drawings/paintings
cover and graphic design of the book : Věž J. Fránka
m2au studio
13
superstudio 2019 competition
own work and creation
01 2016
ZAR - structural model doc. Ing. arch. Jaroslav Drรกpal, CSc.
Structural model of Breda department store in Opava by czech architect Leopold Bauer.
Made of glue and paper.
Model is now a part of doc. DrĂĄpal‘s collection.
02 2017
AT1 - Monocoque B.Arch. Martin Kaftan, MSc, Ph.D. coworker: Klára Podešvová an effort to create a self-supporting structure, inspiration in nature in a curled leaf, seashell, home, shelter, snuggling, safety construction is design on the basis of computer static analysis
power lines
compressive stress
tensile stress
This principle of creating a self-supporting envelope was also inspiration for later team realization (next pages)
02 2017
AT1 - Monocoque - realization B.Arch. Martin Kaftan, MSc, Ph.D. school studio team work
Studio awarded by the school award „CBF“
Team project based on studio work of the semester, implemented in the Podyjí National Park in a locality called Feuerberg (Fire Mountain). The structure was created by the process of „bandaging“ by bending and intertwining thin slats around the air mold until the overall strength for suspension was reached. The guideline for the design of the structure was the creation of static curves using computer simulation. On the site, the construction was completed by weaving laths around the trunks and branches of the supporting tree. This process provides an excellent ratio of weight and strength and at the same time a unique transformation of the interior space by articulation and penetration of sunlight through the structures.
03 2018
AT2 - Riverside house Ing. Michal Palaščák
Narrow plot in Brno; near the river shore of Svitava; offering a great place for creating a living parterre with a retail space and higher apartments for families with a view of the flowing water of the river. The proposal deals with the depth of the plot by striving for maximum solar gains from the east and west, flats that are stacked like lego cubes and connected to each other by raised and lower floors are solved both spatially and dispositionally, to have access to both of these parts of building - east and west, to get the maximum contact with both the river and the quiet park from inside the block.
04 2018/19
AT3 - Embryological house
Ing. arch. Ing. Jiří Vítek
coworking with Petr Malásek a Patrik Kučavík The study of Greg Lynn‘s work and his ideological project Embryological House (1997-2001) inspired us to our experiments of designing architecture or space based on human movements. The theory of choreographer named - Laban and his analysis was another inspiration, we also studied movements by using digital technologies, such as kinect motion sensing.
sensing and examining the space created by human motion
urban planning based on the growth algorithms
In the places with the potential of growth of the urban structure (based on analysis) we started the DLA algorithm and let it grow and just watched how the structure was filling in the gaps in the existing development. The structure has always grown gradually from the initial icosahedra (inspired by Laban‘s theory) and where new „arms“ were formed, ie. new icosahedry, we have launched next growth. This created a kind of uniform structure, which could be understood as a single complex or as individual buildings in the places of the newly emerging icosahedras. The height of this structure was affected by the amount of noise / fast / trains moving on the railway line near the development. The new development could also create an acoustic and hygienic barrier for the existing buildings.
architecture/urban structure designed by human motions
05 2019
AT5 - Czech embassy Ing. arch. Jiřà Marek
within the Inspirelli awards competition conceptual design of the Embassy of the Czech Republic in Addis Ababa, Ethiopia Firstly, a circle was formed. Its sections then meant individual parts of the Embassy. However, with a different meaning, there was a need to distinguish them from each other, especially operationally. The only space is not part of a circle at all, and that is the main embassy social hall. It is hidden in the core of this whole area.
The other buildings are then layered according to their importance. For example, the residence is closer to the center, which also opens up the possibility of a larger private garden - private gardens are always located outside the circle. Inside, one large public space is created around the embassy hall, which can also be used for larger events, where the outdoor representative dining rooms of the office or residence can also be connected there.
There are three access roads with gatehouses leading to the building, one main / representative from the south, then from the northeast - for the residence and the residential building of the employees of the Embassy. The third - east road is for the departure of vehicles during larger events. As a friendly gesture to the locals, social housing is also built here - 4 apartments with social and hygienic facilities. It is located in the west of the plot and is separated from the complex itself by a path and protective walls. The consular and visa part on the southeastern side of the plot is outside the embassy itself. In the basement there are warehouses and technical facilities, such as the air conditioning engine room. Rainwater retention technology is connected from the roof to the basement.
06
AT5 - Fort Science-Fiction
2019/20
school studio team work, coworking with „Pevnost poznání“, Olomouc
Ing. arch. Jan Mléčka, Ph.D. Ing. arch. Jiří Marek
Olomouc: Future Forest Extreme temperatures, floods, deep fractures in soil hard as stone. Those are potential scenarios for the fertile region of Haná. How does a hundred year old town face the ongoing and upcoming climate change? The green belt inserted in the very heart of the historical city of Olomouc is indeed a belt of hope for its citizens. However, sustainable future only lies ahead if we return to the ancient natural rhythms that will bring nature and life back into play. Students of Faculty of Architecture at Brno university of Technology have planted a riparian forest in the city centre as well as in the context of scientific, cultural and spiritual development. Futuristic technologies based on current research generate a science fiction park – the vision thereof unprecedented in terms of the future of the planet and societies.
06
AT5 - Fort Science-Fiction
2019/20
partial project - energy solution of the whole project, water turbines
Ing. arch. Jan Mléčka, Ph.D. Ing. arch. Jiří Marek
smart grids, decentralization Our urban area is energetically self-sufficient, with annual energy consumption around 470 000 kWh and production 1 125 320 kWh. The daily energy excess will be used to pump water into the designed water tank, the purified water from the root treatment plant will be cleaned with nanoparticles to drinking water during the process. The water will supply our territory and the surrounding area. A larger surplus will also be used to charge - for example electric vehicles. Houses, as well as the mentioned electric vehicles, can also be understood as batteries, an energy storage. Why should we build huge batteries underground, when we have individual smaller devices, that can be charged at times with higher energy gain and save energy this way.
Due to the smart grid connection to the transmission system of the city, a larger surplus of energy can subsidize the city in times of increased energy demand and thus reduce its price. Energy production could also be easily controlled by the sluice gates of the vortex turbines. The system control take place in control units - which are a part of the keeper‘s dwelling.
gravitation vortex turbines As the water gets into different situations, it reacts on each differently. It cannot be compressed and it changes its shape according to the object in which it is. Water flow has its own power and energy. And when we give her the opportunity, she can also give us the power of her current. This is a simplified principle of a gravitational vortex turbine. It shapes the water with its semicircular spiral shape, the water thus creates a vortex that rotates the turbine blades together with the generator. We do not need such a high slope, only its strength and flow of at least 1 m3 / s. Turbine connects directly - tangent to the river, into which it then flows again, does not interfere with its circulation, does not retain it anywhere, as other hydroelectric power plants, let it flow fort(h)...
The principle of the turbines follows the principle of blind arms of rivers. During dry seasons, when the water in the main riverbed is less, the turbine arm is turned into a dead arm and the turbine stops. In the period when the river has the highest flow, arms are flooded and the energy production is the highest. How much energy is produced is dependent on the flow rate. There are 7 of these turbines in our urban area, so they should always cover all the daily traffic energy requirements of the area. Eenergy made out of one turbine if it worked 20 hours and 360 days / year: P (kW) = Q (m3 / sec) x H (m) x 5 (50% of the gravitational constant) P = 4x1x5 = 20kW / day E = 400 kWh / day E = 144,000 kWh / year our 7 turbines - 1MWh / year consumption of our area / year: E = 470,000 kWh / year
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07 2020
Bachelor thesis Špica! New Townhall, Brno Ing. arch. Jiří Marek
axonometric diagram of the supporting structure
železobetonová nosná konstrukce střechy ztužující jádra konstrukce - nosné stěny
monolitický železobetonový skelet typických podlaží
stropní železobetonová deska uspořádání železobetonových průvlaků železobetonové sloupy
konstrukce bílé vany
hlubinné založení celé stavby pomocí pilot
08 2019
Design manual a modular bench Ing. arch. Nicol Gale
coworkers: Monika Briestenská, David Erik Bernátek, Pavla Nesvadbíková, Andrea Polanská
09 2019 - now
coworking on competitions (Czech Chamber of Architects, international competitions...)
within m2au studio work
coworked on projects as NĂšKIB Campus Brno 2th prize in the International competition Residence VysoÄ?any 2th prize in the International competition and other...
10
Cover and graphic design of a book „VÄ›Ĺžâ€œ („Tower“) by Jakub FrĂĄnek
2020
11 2014-2016
Paintings/drawings
12 2017-now
Interior design - bathrooms
13 2019
superstudio competition 2019 house for Plečnik‘s dog coworker: Pavla Nesvadbíková we were in the final of the competition!
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