Large Landscape Gardens: Fundamentals, History, and Significance

Building design
A landscaped garden and park complex designed around the theme of the Grand Landscape Garden
A street with flowers planted along a concrete wall—an example of urban greening. Photo: rumanamin/Unsplash

Anyone who enters a large landscape garden experiences nature as a work of art: vast lawns that gently give way to groups of trees, winding paths that continually draw the eye in new directions, bodies of water that reflect the sky, and sightlines that stretch across hills and valleys. The large landscape garden is one of the most influential inventions in European garden design—a design philosophy that, since the 18th century, has fundamentally redefined the relationship between people, nature, and space, and continues to shape open-space planning to this day.

  • What defines a grand landscape garden and how it differs from other types of gardens
  • How the landscape garden emerged historically and which intellectual movements shaped it
  • Which design principles and design elements underlie the landscape garden
  • What plant selection and vegetation techniques are characteristic of large-scale landscape gardens
  • How care, maintenance, and historic preservation are organized for historic landscapes
  • The significance of the landscape garden for contemporary urban development and open-space planning
  • What common misunderstandings and mistakes occur in planning and maintenance
  • How large-scale landscape gardens are being reevaluated in the context of climate adaptation and biodiversity

Definition and Classification: What Is a Large Landscape Garden?

The large landscape garden, known in English-speaking countries as a “landscape garden” or “English landscape garden,” is a type of open space that deliberately eschews the formal, geometric garden design of the Baroque and Renaissance periods and instead takes an idealized natural landscape as its design basis. It is characterized by meandering paths and shorelines, freely shaped bodies of water, irregularly arranged groups of trees and shrubs, expansive lawns, and a carefully staged sequence of spatial impressions. The word “large” refers not only to the area—which in fact often spans several hundred to over a thousand hectares—but also to the conceptual aspiration: the garden as a reflection of a complete, internally coherent landscape.

The large landscape garden differs fundamentally from the Baroque palace garden in its design logic. While the Baroque garden controls and organizes nature through symmetry, axes, parterres, and topiary (the pruning of trees and shrubs into geometric shapes), the landscape garden simulates the random, the organic, and the picturesque. This simulation, however, is by no means random: It is based on precise design decisions and the deliberate use of topography, vegetation, water, and architecture to create specific moods, visual relationships, and spatial experiences. In this sense, the landscape garden is a highly refined art form that conceals its methods.

Typologically, the large landscape garden can be distinguished from smaller landscape-style home gardens, 19th-century public parks, and modern city parks, even though all these types have emerged from it or been influenced by it. The decisive difference lies in scale and intention: the large landscape garden is a total work of art that reinvents an entire landscape, whereas the 19th-century city park primarily served social and hygienic purposes, and the landscape-style private garden merely borrows formal elements.

Historical Origins: England, the Enlightenment, and Criticism of the Baroque

The roots of the grand landscape garden lie in early 18th-century England, where a combination of philosophical, literary, and political currents gave rise to a new aesthetic of nature. The Enlightenment, with its trust in reason and the observation of nature, stood in productive tension with the contemporary longing for the sublime and the picturesque—that is, for landscapes that evoke awe, vastness, and irregularity. Poets such as Alexander Pope, philosophers such as Anthony Ashley Cooper, the third Earl of Shaftesbury, and painters such as Claude Lorrain and Nicolas Poussin—whose landscape paintings served as direct models—shaped the aesthetic program of the new garden style.

The gardens at Stowe (Buckinghamshire), Stourhead (Wiltshire), and Rousham (Oxfordshire) are considered key early examples. At Stowe, Charles Bridgeman, William Kent, and finally Lancelot “Capability” Brown—who would become the most influential landscape architect of the 18th century—worked in succession. Brown earned his nickname “Capability” from his habit of identifying the “capabilities” of a site for improvement. His style, characterized by meandering lakes, gently undulating lawns, clusters of trees, and belts of trees along the edges, became the epitome of the English landscape garden and influenced hundreds of gardens throughout Great Britain.

At the same time, a theoretical debate developed about the picturesque, led primarily by William Gilpin, Uvedale Price, and Richard Payne Knight. These authors criticized Brown’s style as too smooth and too orderly and called for a rougher, wilder garden aesthetic more closely aligned with painting. This debate is important for understanding the grand landscape garden because it shows that the style was not a uniform doctrine but a dynamic field of aesthetic debate.

The landscape garden style reached Germany in the second half of the 18th century, initially through travelogues and publications, then through direct commissions of English gardeners and the work of local designers such as Friedrich Ludwig von Sckell, who laid out the English Garden in Munich, and Peter Joseph Lenné, who had a decisive influence on the Potsdam park landscape surrounding the New Garden and Sanssouci Park. Prince Franz von Anhalt-Dessau created the Wörlitz Park, the first significant landscape garden project on German soil, which is now a UNESCO World Heritage Site. In these German gardens, the English landscape style is often combined with Enlightenment-era educational programs: temples, inscriptions, monuments, and symbolic structures transform the garden into a walk-through total work of art with a moral and political message.

Design Principles and Design Elements of the Grand Landscape Garden

The grand landscape garden employs a range of design elements that, when combined, create its characteristic spatial experience. The most important element is the staging of visual relationships: the path through the garden is a sequence of images that the designer has deliberately composed. Axial views open up onto temples, bridges, or bodies of water; groups of trees and shrubs frame vistas and block unwanted views; hills and depressions create moments of surprise when, after an ascent, a sweeping view suddenly opens up.

Water plays a central role. Natural or artificially created lakes and ponds with irregular, curved shores are a hallmark of the style. Capability Brown was famous for transforming rivers into expansive lakes through damming, which gave the impression of natural bodies of water. The reflection of the sky and the surrounding vegetation on the water’s surface significantly enhances the sense of depth in the space. Bridges, islands, and shoreline plantings complement the body of water as design elements.

Vegetation is conceived not as individual plants but as mass and volume. Solitary trees—that is, freestanding individual trees with distinctive shapes or sizes—provide focal points within the lawn. Groups of trees and shrubs of varying sizes and compositions structure the space and create a layering of foreground, middle ground, and background reminiscent of landscape painting. Belts of trees and shrubs along the garden’s edges enclose the grounds from the outside and create the impression of a self-contained world. The lawn itself, referred to in the original English as “lawn,” is not merely leftover space but a design element: it connects the groups of trees and shrubs, guides the eye, and gives the garden its sense of expansiveness.

Architectural features—such as temples, grottoes, ruins, bridges, obelisks, and similar structures—complete the picture. They are not functional buildings but rather convey meaning: they allude to ancient models, literary themes, or the client’s worldview. Ruins, whether genuine or artificially created, are a particularly characteristic element because they symbolize transience and the superiority of nature over human creation—a central theme of Enlightenment aesthetics.

Plant Selection and Vegetation Design in the Landscape Garden

The use of plants in large landscape gardens follows different principles than in formal gardens. The focus is not on the individual plant with its botanical characteristics, but on the effect of the mass of plants within the space. For woody plantings, native tree species were and continue to be used predominantly; in Central Europe, these include oak, beech, hornbeam, linden, ash, maple, and alder, supplemented by introduced species such as plane tree, horse chestnut, and various conifers, which have been widespread in European landscape gardens since the 18th century.

Creating woody plantings in the landscape garden style requires thinking in terms of long time frames. A tree planted today as a solitary specimen will not fully unfold its spatial impact until decades later. Capability Brown is said to have remarked that he worked for posterity, not for the present. This temporal dimension is a fundamental difference from architecture: the landscape garden is never finished; it changes continuously through the growth, aging, and loss of trees and shrubs. Professional care and maintenance must guide this process without destroying the original design concept.

The lawns of historic landscape gardens were originally maintained through grazing by sheep and cattle, which also served an ecologically valuable purpose. With the invention of the lawn mower in the 19th century and the increasing mechanization of maintenance, maintenance practices changed fundamentally. Today, those responsible for maintenance face the challenge of balancing the preservation of the historic character, the demands of visitor use, and the goals of promoting biodiversity. Extensive meadow management with infrequent mowing, the creation of wildflower strips, and the promotion of old-growth wood in groups of trees and shrubs are strategies that are increasingly being incorporated into modern maintenance concepts for historic landscape gardens.

The introduction of exotic woody plants, particularly rhododendron species and conifers from North America and East Asia, was a significant expansion of the plant repertoire in the 19th century. Many historic landscape gardens today contain significant collections of these species, which have since acquired historical value in their own right. At the same time, Rhododendron ponticum has become an invasive problem in Atlantic-influenced regions of Great Britain and Ireland, threatening the ecological integrity of historic sites. This tension between historical authenticity and ecological responsibility is a central theme in today’s preservation of landscape gardens.

Maintenance, Preservation, and Management Concepts for Historic Sites

Historic landscape gardens pose special challenges for heritage conservation because their heritage value lies not in solid materials but in a living, ever-changing composition of vegetation, topography, water, and architecture. The challenge lies in preserving the spirit of the original design without freezing the growth of the vegetation or reducing the site to an artificial state. Maintenance concepts for historic landscape gardens must therefore be based on a careful historical analysis that evaluates sources such as original plans, paintings, engravings, travelogues, and plant lists.

In Germany, historic garden conservation has established itself as a distinct discipline situated at the intersection of landscape architecture, historic preservation, and garden history. The Florence Charter, a document adopted in 1981 by the International Council on Monuments and Sites (ICOMOS), defines principles for the preservation of historic gardens and parks. It emphasizes that the historic garden is a living monument that requires continuous care, and that restoration measures must be based on documented sources.

Practical maintenance tasks in historic landscape gardens include the regular inspection and care of tree and shrub populations, the preservation and restoration of water features and ornamental structures, the maintenance of lawns and paths, and the management of visitor flows. The latter is a particularly complex task in heavily visited sites such as the English Garden in Munich or Sanssouci Park in Potsdam, where user needs, historic preservation, and ecological goals must be balanced. Foot traffic, soil compaction, and damage to the root systems of old trees caused by visitors are real threats that are mitigated through route guidance, signage, and, if necessary, temporary closures.

Significance for Contemporary Open-Space Planning, Climate Adaptation, and Biodiversity

The large landscape garden is not a museum relic, but rather a reference model that remains highly relevant for today’s open-space planning and urban development. Its fundamental principles—the linking of open spaces into contiguous green spaces, the use of topography and water as design elements, and the creation of spatial diversity through the alternation of open and enclosed areas—are reflected in modern concepts such as the Green Belt, Green Infrastructure, and the 21st-century city park.

In the context of climate adaptation, this type of landscape garden offers specific advantages. Extensive stands of trees and shrubs create cooling effects through evaporation and shading, which are increasingly in demand in overheated cities. Extensive lawns and water bodies help regulate the urban water cycle by absorbing, temporarily storing, and gradually releasing rainwater. The topography of many historic landscape gardens—with hollows, depressions, and ponds—corresponds in its basic structure to the principle of the “sponge city” (a concept of water-sensitive urban planning), which is currently being discussed as a response to increasing heavy rainfall events.

For biodiversity, large-scale landscape gardens—with their stands of mature trees, extensive lawns, bodies of water, and wooded edges—serve as valuable habitats. Old oaks, beeches, and linden trees, with their hollows, cracks, and dead branches, provide habitat structures for bats, woodpeckers, beetles, and numerous other species that can hardly find a place in intensively used urban landscapes. Promoting deadwood, adopting a more extensive approach to lawn care, and creating riparian buffer zones are measures that can enhance the ecological value of historic landscape gardens without compromising their character.

At the same time, open-space planning must critically reflect on what the grand landscape garden historically also was: an instrument of land acquisition and social segregation. Many of the most significant English landscape gardens were created through the enclosure and transformation of common land—a process that displaced villages and dispossessed farmers. This socio-historical dimension is essential to a complete understanding of the type, even if it does not negate its aesthetic and ecological value.

The Grand Landscape Garden as an Enduring Design Model

The large landscape garden established a design philosophy that extends far beyond its historical context of origin. The idea that open space is designed not through geometry but through reflection on spatial sequences, visual relationships, movement, and atmosphere remains a fundamental principle of landscape architecture to this day. Anyone planning a city park, a park complex, or a large-scale open space works—consciously or unconsciously—with techniques developed in 18th-century English landscape gardens.

The strength of this typology lies in its adaptability. The large landscape garden can serve simultaneously as a recreational space, a nature conservation area, a climate buffer, a cultural heritage site, and a source of urban identity. It requires its planners and caretakers to think in the long term, to understand ecological processes, and to exercise aesthetic judgment that transcends short-term trends. This combination makes it a challenging yet rewarding field of practice for landscape architecture.

The great historic gardens—from Stourhead to Wörlitz to the English Garden in Munich—are not only testaments to a bygone era of garden art, but also living laboratories where one can observe how vegetation, topography, water, and architecture have interacted over the centuries. Anyone who walks through these gardens with a knowledgeable eye learns more about open-space planning than from many textbooks. The grand landscape garden remains what it has been since its inception: a design model of extraordinary depth and durability.

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Signal Iduna Park: architecture meets urban stadium art

Building design
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Woman text on glass in the Xie Zilong Photography Museum, Changsha. Photo by K Hsu.

Signal Iduna Park: a legend made of concrete, steel and passion – and a lesson in urban stadium art that is much more than just soccer architecture. Anyone talking about the future of large public buildings cannot ignore Dortmund’s soccer temple. Why? Because it combines urban planning vision, digital transformation and sustainable architecture in one stadium – and because every architect who plans stadiums today must be measured against this unique building.

  • Signal Iduna Park is the largest stadium in Germany and the epitome of modern stadium architecture.
  • The evolution from a pure soccer arena to an urban multifunctional venue is a textbook example of contemporary urban planning.
  • Digital technologies and AI-supported tools are revolutionizing operations, security and the fan experience.
  • Sustainability remains both a challenge and a driver of innovation – from energy efficiency to the circular economy.
  • Today, planners and operators need far more than just floor plan knowledge: Data competence, process understanding and the courage to have visions.
  • The discussion about commercialization, identity and urbanity is shaping the architectural debate surrounding stadiums.
  • Signal Iduna Park is an example of the global transformation of sports venues into urban hubs.
  • The future lies in integrative, digital and resilient stadium concepts – with Dortmund as a blueprint.

Stadium architecture today: between goosebumps and infrastructure machine

Anyone standing in Signal Iduna Park for the first time immediately senses that it’s not just about soccer. The concentrated energy of the “Yellow Wall” has long since become a symbol for a new generation of stadiums. But while fans celebrate ecstatically, planners, architects and operators have completely different tasks to deal with. In Germany, Austria and Switzerland, stadium architecture has matured in recent decades from a pure sports venue to an urban infrastructure machine. The days of pure concrete bowls are over. Today, a stadium has to be multifunctional, permeable and integrated into the urban space. Signal Iduna Park shows how a building not only creates identity, but also functions as an urban hotspot – from an event space to a mobility hub.

Technical development is progressing rapidly. Modern arenas have long since become networked ecosystems in which digital control, security technology, building automation and visitor analytics go hand in hand. In Dortmund, the stadium has been repeatedly expanded, adapted and technically upgraded over the decades – from the renovation of the stands to the integration of digital access systems and high-speed WiFi for 80,000 people. This is not a luxury, but the standard for large-scale urban buildings, which must function as catalysts for urban development. The trend is similar in Austria and Switzerland, albeit often on a smaller scale and with greater integration into the respective urban landscape. The fundamental challenge remains: How can architecture, technology and urban society be successfully combined in a stadium project?

Signal Iduna Park is not only an architectural focus, but also a social laboratory. New forms of fan participation, mobility concepts and even neighborhood dialogues are being tested here. A stadium as a city in miniature is a reality in Dortmund. But not all that glitters is gold: the debate about commercialization, noise protection, traffic flows and sustainability is in full swing. While cities such as Munich or Basel think of new stadiums as urban development projects, Dortmund remains a pioneer for emotional identity and urban density. The big question: how can this balance between myth and machine also be ensured in future buildings?

Today, planners are faced with the task of designing far more than just grandstands. It is about quality of stay, integration into the urban context, sustainable choice of materials and technical resilience. Signal Iduna Park provides numerous blueprints for this: from the design of the fan curves to traffic logistics and flexible event areas. The architectural debate always revolves around the question of how much stadium a district can take – and how much city a stadium needs. The answer lies somewhere between urban planning courage and technical finesse.

In Switzerland, for example, new arenas are often part of larger development areas; in Austria, small but fine stadiums shape the local identity. But an international comparison shows: Anyone who understands stadium architecture as part of urban transformation inevitably ends up in Dortmund. There, stadium construction is becoming an art form – with all the opportunities and risks for urban planners, architects and investors.

Digital transformation: when the stadium becomes a smart arena

Signal Iduna Park is not only physically impressive, but also a digital pioneer. While soccer fans are still discussing the VAR, planners have long been working with digital twins, AI-supported visitor control and real-time data. In practice, this means that sensor technology measures visitor flows, controls air conditioning and optimizes security concepts. Digitalization turns the stadium into a learning system that can react flexibly to weather, capacity and threats. Such smart stadium approaches are still rare in Germany and Switzerland, but they are becoming the new standard. Dortmund shows how digital tools not only make operations more efficient, but also personalize the experience for visitors.

A look behind the scenes reveals: Where a stadium attendant with a bunch of keys used to rule, AI systems now monitor access control, fire safety and escape routes. Predictive maintenance, i.e. the predictive maintenance of building technology, has long been part of everyday life. Energy requirements, water consumption and waste volumes are analyzed and optimized in real time. This saves costs and resources – and increases reliability during operation. For architects and operators, this means a new form of responsibility: they must not only build, but also think digitally. The necessary expertise ranges from data analysis to IT security.

Digitalization also opens up new scope for sustainability. Intelligent control systems adapt lighting, heating and ventilation to actual needs. Smart mobility solutions guide travel, reduce emissions and relieve the burden on the neighborhood. Dortmund was an early adopter of digital visitor guidance, mobile ticketing systems and automated access control – a model that is now also being copied in Vienna and Zurich. The trick is to dovetail technology and architecture in such a way that they reinforce each other. Not everything that is digital is automatically better. But without digitalization, a stadium is simply no longer up to date.

Of course, there are also risks. Dependence on IT infrastructure, data protection issues and the danger of technocratic overcontrol are real challenges. Critics warn of the transparent fan, algorithmic discrimination and the commercialization of experience data. Architects and operators are called upon to ensure transparency and control. Signal Iduna Park relies on openness and dialog – an approach that should set a precedent. Because only if fans, the city and operators work together to build the digital future will the stadium remain a space for experiences and not just a data mine.

Ultimately, the digital transformation is turning the stadium into an urban hub that extends far beyond sport. Anyone shaping this transformation must think about technology, space and people together – and keep asking themselves who actually owns the new stadium. Dortmund has found a pretty clear answer to this question: It belongs to everyone who fills it with life.

Sustainability and the circular economy: from energy guzzler to green role model?

Stadiums have long been regarded as ecological problem cases. Huge concrete buildings, high emissions, energy wastage – the image was bad, the reality often even worse. But Signal Iduna Park is an example of how sustainability and stadium construction can go hand in hand today. Even during the numerous extensions and conversions, the planners focused on resource-saving materials, reuse and energy efficiency. Photovoltaic systems, rainwater harvesting and intelligent building technology have long been standard. In Germany, Austria and Switzerland, such measures are now mandatory – but Dortmund remains a reference point for innovative solutions.

A central topic is the circular economy. Signal Iduna Park demonstrates how components can be replaced on a modular basis, resources recovered and building materials recycled. This is not only ecologically sensible, but also economically attractive. Anyone planning stadiums today has to keep an eye on the entire life cycle: from the choice of materials to the construction phase and dismantling. This is where technical expertise pays off. Architects, civil engineers and operators need a deep understanding of sustainable building materials, energy and waste management and the integration of renewable energies.

The challenges are enormous: a stadium is an energy guzzler if it is operated incorrectly. Only intelligent concepts that combine architecture, technology and user behavior can effectively reduce emissions and resource consumption. In Dortmund, LED technology, efficient heating systems and sustainable mobility concepts were implemented early on. Cooperation with the city, local companies and research institutions creates synergies that extend far beyond the stadium walls. In this way, Signal Iduna Park is becoming a testing ground for urban sustainability.

Of course, there is also criticism. The construction of new stadiums still devours vast amounts of raw materials, and the “green stadium” often remains a marketing promise. But the trend is clear: without sustainability, there will be no more acceptance – neither from urban society nor from fans or investors. The pressure is growing to deliver real innovations instead of just collecting certificates. The discussion is similar in Austria and Switzerland, where sustainability is often considered on a smaller scale, with a focus on regional value creation and social integration.

A look at Signal Iduna Park shows this: Sustainability is not an add-on, but an integral part of modern stadium architecture. Anyone planning today must minimize the ecological footprint and break new ground in the process. From urban farming on the stadium roof to zero-emission operation – the visions are there. The challenge now is to implement them without losing the myth of the stadium.

Architectural discourse and global debates: How much city can a stadium take?

Signal Iduna Park not only stands for architecture, but also for a heated debate: How much city is actually in the stadium – and how much stadium does the city need? While in other countries mega arenas are built as solitary structures on greenfield sites, Dortmund focuses on integration, identity and urbanity. The stadium is part of urban life, a transportation hub, a meeting place and a symbol of cohesion. This fusion of architecture and urban development is causing a stir internationally. Similar concepts are being discussed in Vienna, Basel and Zurich, but Dortmund remains a defining style.

Criticism of the commercialization of stadiums is omnipresent. Naming rights, VIP boxes, event areas – the balance between economic success and social responsibility is a constant balancing act. Signal Iduna Park shows that identity and authenticity are also possible in a commercially used stadium. The architecture plays its part in this: Visual axes, open facades, flexible use and the famous standing grandstand as a haven for fan culture. Such elements are not a minor matter, but the core of modern stadium art.

Digitalization and sustainability bring new challenges to the architectural discourse. What happens when algorithms decide on admission, security and comfort? How much technology can the stadium experience tolerate without dehumanizing it? And how can ecological and social goals be reconciled with economic requirements? Signal Iduna Park is a laboratory for these questions – it shows that innovation and authenticity need not be a contradiction in terms. But it also shows that it takes courage to break new ground.

Internationally, people look to Dortmund. FIFA, UEFA and numerous architecture firms use the stadium as a reference for competitions, studies and research projects. The global debate is increasingly revolving around urban integration, flexibility and resilience. Today, stadiums have to be able to do more than just play soccer: they are event spaces, mobility hubs, green lungs and social meeting places. Signal Iduna Park embodies this development in a unique way.

The question remains: What will the stadium of the future look like? Modular, digital, sustainable and open to all – these are the industry buzzwords. Dortmund is well on the way to making this vision a reality. Any architect, planner or operator who wants to be an international player today cannot ignore the lessons learned in the Ruhr region. Signal Iduna Park is more than just a stadium – it is a statement for urban stadium art in the 21st century.

Conclusion: Signal Iduna Park as a blueprint for the stadium architecture of tomorrow

Signal Iduna Park is not a relic, but a laboratory for the future of urban stadium art. Here, architecture, technology and urban society merge to create a unique experience that goes far beyond soccer. Digitalization, sustainability and urban integration are no longer options, but a must for all those who build stadiums today – in Germany, Austria, Switzerland and worldwide. Anyone who studies Signal Iduna Park learns that stadium construction is more than just engineering. It is about identity, community and the ability to rethink the city. The arena in Dortmund thus remains both a benchmark and a reminder: you can build a stadium as a machine – or as a work of art for the city. The choice is ours.

“Enthusiasm, team spirit, courage and willingness to learn.”

Building design

The founders of AllesWirdGut Architektur are Friedrich Passler

Four students, three cities, four offices – every year, the Baumeister Academy sends talented architecture students to work in renowned offices. But who is actually behind it and what do the architects get out of our program? We ask: this time at AllesWirdGut Architektur, who took part in the Baumeister Academy for the first time in 2019. Franzisca Rainalter is already in the starting blocks, her […]

Four students, three cities, four offices – every year, the Baumeister Academy sends talented architecture students to work in renowned offices. But who is actually behind it and what do the architects get out of our program? We ask: this time at AllesWirdGut Architektur, who took part in the Baumeister Academy for the first time in 2019. Franzisca Rainalter is already in the starting blocks, her six-month internship at AllesWirdGut Architektur begins in September. We met her future boss Andreas Marth and talked to him about his work and the next generation of architects.

Our Academy winner Franzisca Rainalter starts her six-month internship at AWG on September 1st. If you could/had to do an internship in an office again today. Where would you go?
Definitely to AllesWirdGut – to Vienna or Munich!

And why should you go to AWG?
In addition to a varied insight into the world of work and everyday architecture, we also offer all interns the opportunity to improve their own cooking skills. In addition to working in the various project teams, one of the tasks is to support our cook in the canteen for a week ata time. In addition to healthy, home-cooked food, you will also receive valuable tips on how to use a knife and fork!

The internship is also a good opportunity to introduce yourself to us and the office, to prove yourself and to make a lasting impression. For us, these six months offer an excellent opportunity to get to know good and talented students better – we are happy to make use of this when looking for and acquiring future employees.
Many in our team started as interns/volunteers and have returned to our team as employees after completing their studies and are now a permanent part of our team.

This is your first time at the Baumeister Academy. Why are you taking part?
Because we believe that the Academy creates a win-win situation for both sides and because we hope to get to know and appreciate excellent new people along the way.

What do you expect from your trainees?
Enthusiasm, team spirit, courage and a willingness to learn.

Can the absolute beginners, those who have just come from university and are starting in your office, do anything? What do they lack?
Beginners are characterized by a certain naivety and impartiality in their approach to projects and problems. We really appreciate that!
One of our office’s recipes for success has always been that we look for unconventional solutions and are certainly not satisfied with the first answer and solution that comes along – another reason why we never wanted to specialize in one area or typology with our office and work in as broad a field as possible.

“It’s always been like this, it has to be like this again” is a killer of any progress and any design concept. That’s why we also see problems as potential – because they force us to break out of established and familiar thought patterns.
Solutions and concepts are discussed with the respective project teams in weekly workshops. Everyone can contribute to this discussion and help shape it directly and immediately – in the end, it’s all about working out and honing the best idea, and we don’t care whether this idea is put forward by a senior architect or an intern.

“Definitely nine-to-five – or even shorter if we can get the ideas down on paper faster!”

Are you more the “nine-to-five” type or more the “eleven-to-midnight” type? And what about overtime in the office?
Definitely nine-to-five – or even shorter if you can get the ideas down on paper faster!
We have largely flexible working hours and are certainly not workaholics (anymore). Of course, there are deadlines, deadlines and the occasional pressure of deadlines, where things can get longer – but any overtime is compensated for at short notice.
Ideas and creativity require periods of relaxation and plenty of time to be inspired. This doesn’t happen if we just sit at a desk or behind a computer.

What caused the last big argument?
The great thing about our office partnership is that we haven’t had a big argument in 20 years. Of course, we discuss a lot and don’t always agree – but in what is now our “longest relationship”, we have always been able to agree on major decisions without arguing or voting. That is certainly a stroke of luck!

Generalist or specialist? What does a young architect need to be today?
Generalist and all-rounder!

“When we founded our office 20 years ago as fresh graduates, we couldn’t have imagined in our wildest dreams where we are today with our 80-strong team.”

What has been your greatest success?
AllesWirdGut!
When we jumped in at the deep end 20 years ago as fresh graduates straight out of university, inexperienced and naïve, and founded our office, we could never have imagined where we are today with our 80-strong team. And we are looking forward to developing this further.

You’ve been in the architecture business for a long time. Is there anything that can still surprise you today?
An open and enthusiastic counterpart (client, craftsmen, etc.), who is open to ideas and concepts, surprises us again and again – but at the same time it is also the stroke of luck that makes us still passionate about designing and building.

Your tip for budding architects?
Open your eyes and ears – and get out into the world!

The Baumeister Academy is an internship project of the architecture magazine Baumeister and is supported by GRAPHISOFT and BAU 2019.