News from the planning department – G+L 03/22

Building design
We summarize the planning news of the month for you.

We summarize the planning news of the month for you. (Photo: Daniel Gonzalez via Unsplash)

Do you also regularly suffer from acute information overload? We do too. That’s why you can find last month’s news here.

Do you also regularly suffer from acute information overload? We do too. That’s why you can find an overview of last month’s planning news here. We inform you about current discussions, news, projects and industry information for February 2022.

You can still apply for the Blue Compass until March 25. The prize is the highest state award that recognizes innovative solutions in the field of climate protection. The Blue Compass is awarded by the Federal Ministry for the Environment, Nature Conservation, Nuclear Safety and Consumer Protection together with the Federal Environment Agency. Last year’s winners included the manufacturer HanseGrand with its climate-friendly building materials for road construction.

Speaking of news on climate protection: Annalena Baerbock has appointed Jennifer Morgan as Special Envoy for International Climate Policy at the Federal Foreign Office. Jennifer Morgan was previously head of the environmental organization Greenpeace and began her work at the Foreign Office on 1 March 2022. The opposition criticized the decision: Goal-oriented policy should not be replaced by activism, said Jürgen Hardt, foreign policy spokesman for the CDU/CSU parliamentary group in the Bundestag.

In the climate debate, the building sector in particular must be given a major responsibility. After all, around 40 percent of emissions are caused by construction work and the operation of buildings. Architects for Future has therefore been committed to “sustainable change in the construction industry” since 2019. A4F launched a crowdfunding campaign in order to be able to continue its work in its own “building transition office” in the future.

NGOs such as Greenpeace and A4F are not the only ones pointing the way towards climate neutrality. In January 2022, the management consultancy firm McKinsey published “The net-zero transition: What it would cost, what it could bring” and shows what steps governments and companies need to take now to achieve net-zero greenhouse gas emissions.

In our online magazine 52 Theses, we published the thesis “We must not let our city centers die” last month. Luisa Balz, Lioba Lissner and Gasper Habjanic from hochC Landschaftsarchitekten responded to the thesis in a video statement; Irene Lohaus, co-founder of Lohaus Carl Köhlmos, outlines a vibrant city center of the future; Korbinian Lechner and Felix Lüdicke from raumzeug call for less consumption, more debate. Prof. Dr. Tobias Just from the IREBS Real Estate Academy explains why city centers will not die, and Ricarda Pätzold from Difu calls for crafts, education and culture to be brought back to the city center.

Online shopping is having a major impact on our city centers – and not just since coronavirus. The Federal Institute for Research on Building, Urban Affairs and Spatial Development shows how much people shop online in its BBSR-Analysen KOMPAKT series. We have summarized the news for you here.

Another pressing issue: affordable housing. The mayors of Germany’s three largest cities, Berlin, Hamburg and Munich, have joined forces and launched an initiative. They want to strengthen the municipal right of first refusal. One of the reasons for this is a ruling by the Federal Administrative Court.

Hong Kong is also planning to combat the long-standing housing shortage in the city. Last October, Carrie Lam presented the new “Metropolis Plan” for Hong Kong. Find out here what urban development is now on the agenda in Hong Kong after months of political unrest.

Dubai is also making big plans. At the beginning of 2021, Sheikh Mohammed presented the new Dubai 2040 urban master plan under the banner of “sustainability”. One component of the plan is the Hatta Master Development Plan, which envisages the development of the Hatta tourism area.

MVRDV’s latest coup appears to be in the making in Changhua County, Taiwan. The Dutch company is developing the so-called “Sun Rock” project for the state-owned energy company Taipower, which will house offices, a maintenance workshop, storage facilities and a public gallery. The goal: a carbon-free future. Here we present MVRDV ‘s project in Taiwan.

Our cities are “a playground where ground-breaking innovation can flourish”, the jury for theEuropean Capital of Innovation 2021award agrees. At the seventh edition of iCapital, Dortmund was named Innovation Capital. Dublin and Malaga were both awarded second prize, while Vilnius came third.

There are also some competition winners: studio grüngrau won the ideas competition for Nuremberg Gebersdorf. A climate-friendly district with living and working spaces is to be built there. The competition was organized by WBG Nürnberg. There were two winning teams in Berlin: Vogt Landschaftsarchitekten from Zurich and OS Arkitekter from Copenhagen. In a second round, they will further develop their ideas for the redesign of Molkemarkt Berlin. Another competition: the architecture firm Snøhetta impressed with its design for “Klyyga” in the Finnish capital. The Helsinki train station there is to be given a new look.

No prize, but a success nonetheless: South Tyrol’s traditional irrigation system in Vinschgau, the Waalwege, is now on the national list of intangible cultural heritage. With the positive assessment of the application and the inclusion in the national register, the first important stage has now been reached.

Controversial projects in the Netherlands

The Ijmuiden lock went into operation at the end of January 2022 in the presence of the Dutch King Willem-Alexander. At 500 meters long, 70 meters wide and 18 meters deep, it is the largest sea lock in the world. But it came at a price: not only did it cost twice as much as planned, it now also threatens to salinize the local fresh water.

Will the Koningshaven Bridge in Rotterdam, built in 1878, have to make way for Jeff Bezos ‘ superyacht? The Amazon founder is having a gigantic three-master built there, but it will be too big to pass under the bridge – Rijksmonument since 2000 – on its way to the sea. The project meets with resistance, as the industrial monument is a listed building.

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Designing wind energy: Architects between nature and technology

Building design
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Impressive shot of a large white building with a high spire, photographed by Mohammed Nasim

Shaping wind energy? Sounds like provincialism, concrete and protest. But if you take a closer look, you will realize that the future of wind power is an architectural, technical and social challenge of European significance. Architects are suddenly caught between the aesthetics of nature, the art of engineering and the energy transition. What can they contribute if wind farms are to be more than just monocultures of steel in the future? And: Are Germany, Austria and Switzerland ready for the next generation of wind energy?

  • Wind turbines are shaping the landscape and becoming an architectural statement – with the growing influence of designers.
  • The DACH region faces the task of integrating wind power in a structurally, technically and socially acceptable way.
  • Innovations in materials, turbine construction and digital planning are fundamentally changing the design process.
  • Artificial intelligence and BIM are revolutionizing site selection, operation and maintenance – and demanding new skills from planners.
  • Sustainability is a must: from carbon footprints to species protection, the requirements are becoming more stringent.
  • Architects must mediate between acceptance, aesthetics and function.
  • Criticism of the current approach to wind energy: lack of design, lack of participation, regulatory proliferation.
  • Visionary concepts show that wind power and good architecture need not be a contradiction in terms.
  • The debate is taking place internationally – with growing pressure to innovate coming from Scandinavia, the Netherlands and the Far East.

Wind power in the DACH region: between expansion target and acceptance crisis

Wind power has developed from a niche topic to a political issue in Germany, Austria and Switzerland. While Germany has set ambitious expansion targets and is mass-producing wind farms, Austria remains cautious and Switzerland is hesitant about large-scale expansion – the resistance is too great, the criticism of landscape destruction and lack of co-determination too loud. The current situation is a paradox: on the one hand, wind energy is seen as the backbone of the energy transition, while on the other, projects are regularly blocked by citizens’ initiatives, nature conservation associations and local authorities. The real problem is rarely the technology, but almost always the design. Wind turbines are seen as foreign bodies, as anonymous industrial objects in the open landscape. The role of architects? Long marginalized, they are now urgently needed – as mediators between technology and context.

The pressure is greatest in Germany. The Federal Republic wants to obtain the lion’s share of its electricity from wind power by 2030, but approval procedures take years and public acceptance is declining. In Austria, the challenges are similar, but the topography and the importance of landscape conservation make the issue even more sensitive. In Switzerland, wind energy is discussed almost exclusively in the context of the Alps, where sensitivity to interference is particularly high. Anyone who talks to planners, authorities and energy companies always hears the same credo: without new design approaches, wind power in Central Europe will reach its social and ecological limits.

But what does this mean in concrete terms? In future, sites for wind farms will no longer be allocated solely on the basis of wind potential and grid connection, but must be integrated into local cultural spaces, respect visual axes and seek dialog with local residents. The time of the anonymous standard turbine is over. Design competitions, participatory planning processes and design concepts are gaining in importance. Anyone who sees wind power as a purely engineering discipline has not recognized the signs of the times. It has long been about more: about identity, appreciation and the sustainability of entire regions.

The debate about wind energy in the DACH region is therefore a litmus test for the role of architecture in the age of the energy transition. Those who continue to dismiss design as a “nice to have” will fail. The call for architectural quality is not a fad, but a necessity – for acceptance, ecology and regional value creation. The reality? Engineering offices still dominate, but this is changing rapidly. The first research laboratories are being set up at universities, local authorities are holding design competitions and manufacturers are discovering the topic of branding.

The question remains: Are architects ready to enter the field of wind energy? The answer is a cautious yes – but the profession needs to evolve. Anyone designing wind power today needs technical expertise, communication skills and the willingness to work on an equal footing with a wide variety of stakeholders. The days when a wind farm was planned solely on the basis of economic criteria are over. Welcome to the new reality between nature, technology and building culture.

Innovation and digitalization: wind turbines as high-tech structures

Anyone who believes that wind power is a mature technology is vastly underestimating the innovative dynamism of this industry. The development of new turbines, foundations and rotors is running at full speed, driven by efficiency pressure, cost reduction and the goal of working economically even in difficult locations. For architects, this means that the planning principles are constantly changing. Today, each plant is individually modelled, optimized and designed using complex digital tools. Building Information Modeling (BIM) and digital simulation environments are now standard. As a result, design processes are data-driven and variants can be checked in real time. What used to be considered gray theory has long since become practice – provided you master the tools.

Artificial intelligence is the next game changer. It helps to precisely analyze wind conditions, identify optimal locations based on huge data sets and even predict maintenance cycles. Modern wind farms have long been networked systems that can react to weather, grid load and environmental conditions in real time. This is where architecture, engineering and IT merge to form a new discipline. For planners, this means that without digital expertise, they are quickly left behind. Traditional design thinking is being supplemented by algorithmic optimization, and visualizations are becoming interactive decision-making tools.

But digitalization is not an end in itself. It opens up the opportunity to design wind turbines not only efficiently, but also in a context-sensitive way. Digital tools allow visual axes to be simulated, shadows to be minimized and integration into existing infrastructures to be planned precisely. Participatory platforms make it possible to involve citizens at an early stage and integrate their concerns into the design process. This shifts the role of the architect from lone fighter to moderator of complex, digitally supported planning processes.

The innovation curve is pointing steeply upwards – also for materials. New materials such as carbon fiber-reinforced rotor blades, hybrid tower structures and modular foundations are opening up scope for design and making wind turbines lighter, more stable and more durable. The trend is moving away from a uniform look towards typological diversity: from low-noise turbines for residential areas to floating offshore turbines and vertical axis constructions for urban spaces. The design possibilities are growing – if architects are prepared to embrace the technology.

And what is happening internationally? Countries such as Denmark, the Netherlands and South Korea are demonstrating how digitally supported planning and creative ambition go hand in hand. Competitions, design guidelines and open data platforms are standard there. The DACH region can catch up here – if politicians and the industry have the courage to see digitalization as a design tool and not as a threat to established processes. Those who get on board now can play a decisive role in shaping the wind power of the future.

Sustainability reloaded: challenges and solutions for green wind power

Wind energy enjoys a reputation for being climate-friendly and low-emission. But the calculation is not quite that simple. The ecological footprint of modern wind turbines begins with the extraction of raw materials and only ends after dismantling. Anyone who takes sustainability seriously must consider the entire life cycle – from the choice of materials and production to dismantling and recycling. There are immense challenges here, but also opportunities for architects and planners. The CO₂ balance is not only decided at the electricity meter, but also at the design table.

The question of materials remains a key problem. Rotor blades made from composite materials are light and efficient, but difficult to recycle. New research is focusing on biodegradable resins, alternative fibers and recycling concepts – with initial success stories from Denmark and Germany. A lot is also happening in tower construction: wooden towers, modular reinforced concrete solutions and recycled concrete are being tested. Architects can exert influence by insisting on sustainable materials and transparent supply chains. The era of pure cost optimization is over – sustainability is becoming a competitive advantage.

Species protection is another hot topic. Wind farms are considered a danger to birds and bats, but intelligent shutdown systems and adaptive controls can minimize the risk. This shows that technical innovation and design integration are not opposites, but two sides of the same coin. Integrating wind turbines into landscape planning at an early stage, respecting visual axes and avoiding ecological hotspots can reduce conflicts and create acceptance. Architects are called upon to actively shape this interface between technology and nature.

Another field: social sustainability. Wind energy projects often meet with resistance due to a lack of participation and transparency. Those who involve the population at an early stage, create opportunities for identification and make design quality visible can reduce reservations. This is a great opportunity for architects: They can turn wind turbines into landmarks that create identity instead of destroying the landscape. The future belongs to projects that understand acceptance as part of sustainability – and make design a civic duty.

Finally, the challenge of dismantling remains. Many of the facilities in operation today are approaching the end of their service life. The issue of dismantling and subsequent use is becoming the crucial question for wind energy. Architects can show new ways forward here: from temporary structures and modular construction methods to concepts for conversion and continued use. The time of the eternal monoculture is over – the future of wind power is circular, flexible and challenging in terms of design.

Architects between criticism and vision: designing instead of managing

The architecture of wind power is in a paradoxical situation: it is omnipresent, but almost invisible. Hardly any other infrastructure project has such a massive impact on the landscape – and is so little understood as a design task. The result: wind farms are rarely places of identification, but mostly symbols of heteronomy and technocracy. Critics accuse the industry of neglecting design, bypassing participation and making standards absolute. This does not have to remain the case. The visionaries among architects are calling for a new culture of wind energy – one in which design is seen as added value, not a cost factor.

There are prominent examples to the contrary. In Denmark, the Netherlands and increasingly also in Germany, wind farms are being built that enter into a dialog with the landscape, history and population. Artistic interventions, participatory design processes and regional design specifications show that wind turbines can be more than just functional technical structures. The architectural signature becomes a trademark, an invitation to identify with the energy transition. In urban contexts, vertical wind towers and hybrid façade systems are setting new standards for the integration of renewable energies into the cityscape.

But the criticism remains: Many planning processes are not transparent, there are few opportunities to have a say and the scope for design is restricted by standards and tenders. Anyone who sees wind energy as a social responsibility must question these structures. The demand: more competitions, more experimentation, more regional diversity. Architects can – and should – play the role of mediator between technology and society. This also means dealing with the downsides of wind power: Land consumption, species extinction, social division. Only those who lead this debate can shape it credibly.

The international debate is putting the DACH region under pressure to innovate. In Scandinavia, the Netherlands and Asia, wind farms are being built that act as cultural and tourist attractions. Architecture is becoming a value-adding factor there, not a cost problem. The DACH region needs to catch up – and can learn from the pioneers. The opportunity: to see wind energy as part of the building culture, not as a foreign body. This requires courage, creativity and the willingness to question established routines.

The vision? Wind turbines that are landmarks, create identity and make the dialog between man, technology and nature visible. Architecture can help to bring wind power out of the defensive and position it as a designable technology of the future. The time for excuses is over. Those who only manage wind energy will be slowed down. Those who shape it will give the energy transition a face.

Conclusion: Wind energy needs architecture – now!

Wind energy is more than just technology and statistics. It is a social project that can only survive with architectural and planning quality. The challenges in the DACH region are enormous: acceptance crisis, sustainability pressure, innovation backlog. But this is precisely where the opportunity lies for architects. Those who take design seriously, use digital tools and seek dialog with all stakeholders can create wind turbines that are more than just foreign objects. The future of wind energy will not be decided at the engineer’s drawing board, but in the interplay between technology, nature and building culture. The time to understand wind power as a design task is now. Those who miss it will be caught in the headwind.

More planning security and efficiency – the GROHE Rapido shower frame

Building design

The GROHE Rapido shower frame is an efficient solution among concealed shower systems. Credit: GROHE

The shortage of skilled tradespeople is presenting planners and architects with new challenges. Solutions that minimize installation effort and sources of error are particularly in demand for complex serial installations – such as concealed shower systems. The new GROHE Rapido shower frame is designed for speed, safety and simplicity and thus offers a number of advantages over conventional concealed shower systems.

With an installation depth of just 77 mm to the front edge of the tile and 67 mm to the front edge of the frame, the system is suitable for installation in almost any drywall. This makes the Rapido shower frame a versatile solution that can be easily used in both new builds and retrofits.

Another advantage of the GROHE Rapido shower frame is the greatly reduced installation time. Conventional concealed shower systems are often associated with complex and time-consuming installation processes and a corresponding amount of training. The pre-assembled components – such as the Rapido SmartBox and mixed water pipes – as well as the factory-tested tightness reduce the installation process to just a few steps that can be carried out by one fitter alone. Compared to the installation of a classic GROHE concealed shower system, this reduces the installation time by up to 60 percent.

The risk of typical installation errors is significantly reduced thanks to the sophisticated design and the pre-assembled and tested components. This increases planning reliability and minimizes the likelihood of problems after installation, especially in complex projects with series installations. GROHE provides a ten-year manufacturer’s guarantee, which underlines the confidence in the durability and reliability of the product.

Various bundles for pre-installation simplify the ordering process for the shower frame. Depending on the project, the shower frame can also be combined with all concealed fittings that are compatible with the pre-installed GROHE Rapido SmartBox.

GROHE offers two different frame variants – the mono shower frame for a single-jet overhead shower and the duo shower frame for a dual-jet overhead shower – each in combination with a hand shower. This gives you the flexibility you need to find the right model for every project.

www.grohe.de/de_de/rapido-duschrahmen/