Nature-Based Solutions, Biomimicry, and Flood Management Lessons Learned from the U.S and Europe

On 29  March 2024, the insight session on Nature-Based Solutions, Biomimicry, and Flood Management Lessons Learned from the U.S. and Europe was held, delivered by thematic experts from Jacobs company.

This insight session was organized by Connective Cities and the Resilience Initiative Africa’s Southern Africa component, and presented to the Connective Cities global community, encompassing urban practitioners, national government actors, researchers from academia, non-governmental organizations, and local community members.

The insight session was kicked off with a presentation from Mr. Andrew Potts on Blue-Green Stormwater Infrastructure. Mr. Potts holds 24 years of expertise encompassing green stormwater infrastructure (GSI), stormwater management, water resources, and sustainable site design, and spoke in depth about his experiences in implementing Blue-Green Stormwater Infrastructure in cities across the United Kingdom and the United States.

The goal of Blue-Green Stormwater Infrastructure is to manage stormwater at the source by combining man-made “blue” infrastructure such as pipes and culverts, with nature-based “green” infrastructure such as green roofs and bioswales. The combination of such infrastructures offers a more resilient and sustainable method of managing urban stormwater runoff and peak flow rates, enhancing water quality and biodiversity within urban areas. Mr. Potts referred to several examples from his work in implementing Blue-Green Stormwater Infrastructure:

Sidmouth Amphitheater, UK

  • Sidmouth, a town on England’s southwest coast, has endured regular stormwater floods, with overland flow paths flowing to a low point immediately in the town’s center, leaving 150 residential and commercial properties at risk.
  • Jacob’s team along with the local government worked jointly to develop flood prevention measures that would not only address Sidmouth’s challenges with draining water from the town center but also create a new public space for the surrounding local communities.
  • The Amphitheater was hence developed a floodwater storage area. Water from the highways and the streets running through the town would drain into the amphitheater. In days without heavy rainfall, the amphitheater acts as a public space, hosting many of the town’s events and festivals. During heavy rainfall days, however, the amphitheater acts as a valuable source of water storage, being able to hold 700 cubic meters of water.

Examples from the US.

  • The development of Rodney Cook, Sr. Park in Atlanta Georgia by creating a multi-functional public space within the neighborhood not only allowed for an effective medium of stormwater drainage but also created a space for residents to enjoy.
  • At the Rams Head Center of the University of North Carolina – Chapel, 1-acre blue-green roof plaza on top of a multistory parking garage along with a 56,000-gallon cistern below the sidewalks, to efficiently drain stormwater during heavy rainfall events.

Mr. Potts also spoke on how to effectively plan and design Blue Green Stormwater infrastructure, talking about various design criteria such as:

  • External factors – Changing precipitation patterns, incorporating flood models into the design, addressing seasonal variation in infiltration rates and groundwater models.
  • Basic factors – The project site of the infrastructure planned, the scale of the project, the level of maintenance required, geotechnical considerations, and cost implications.

Complementing the input from Mr. Potts, Mr. Chris Allen further gave a presentation on Biomimicry, exploring how to quantify nature’s benefits through ecosystem intelligence. Examples such as micro-bioretention and bioactive walls were mentioned. Mr. Allen has over 30 years of consulting and strategic management experience and collaborates with technical teams worldwide to incorporate Regenerative and Nature-Based Solutions into planning and design for diverse clients.

Over 3.8 billion years, nature has devised highly efficient answers to most of the problems we face. Biomimicry is a design and innovation strategy that takes inspiration from nature’s inventiveness, leveraging its patterns, methods, and effective approaches to improve and innovate solutions that promote ideal conditions for all living forms to thrive. When applied to built environments, biomimicry produces design solutions that mimic the life-sustaining benefits, also known as ecosystem services, supplied by natural habitats. As a result, these buildings assist the surrounding ecosystems by providing socioeconomic and environmental benefits such as improved air and water quality, better carbon absorption, and increased biodiversity. The overall goal is for buildings to function similarly to neighboring undisturbed ecosystems, providing equivalent benefits to the natural landscapes they surround.

Mr. Allen gave an example of how Ford Motor Company in their Michigan Central Station had implemented biomimicry measures to not only improve local water quality but also led to positive outcomes in carbon cycling and biodiversity. Ford Motor Company carried out the following measures:

  • The implementation of restoration workdays, where employees of the company would embark on restoring the wetlands in the surrounding areas of the Michigan Central Station. Employees contributed to the development of bioretention ponds, restored the local streambanks, planted native species of plants along the wetlands, and developed bioswales to drain stormwater
  • Local forests were also restored, and recreational trails were developed along the local forests to improve the habitats for birds. Additionally, pollinator gardens were developed. To regreen the Central station, the areas previously allocated for employee parking were redeveloped into forest areas, with the planting of native forest trees.
  • A mix of blue and green stormwater infrastructures was also implemented in the central station with the development of subsequent green and blue roofs to intercept and collect precipitation. Eco-machines were also installed to treat stormwater that fell on the blue-green roofs, feeding into either stormwater cisterns or drained into the local wetlands. Footpaths around the campus and the newly developed parking lots were built on pervious surfaces, to allow water to drain into the ground.

After sharing the example of the Ford Motor Company, Mr. Allen then presented two tools that could be used by the participants to utilize and implement biomimicry solutions in their own cities:

The Positive Performance Methodology

  • An assessment and innovation technique to assist business clients in developing and implementing regenerative best practices, thereby enhancing the overall well-being of ecosystems and the communities that rely on them.
  • Using local intact ecosystems as inspiration and a benchmark against which future performance is measured, it guides organizations and design teams in developing place-based, regenerative design approaches that provide an array of benefits for ecosystems, communities, and businesses.

The Ecosystem Intelligence Identification and Inventory Tool

  • The Ecosystem Intelligence Identification and Inventory tool has been developed to identify and quantify the ecosystem services supplied by a site. Data produced by the tool can be used to to visualize cost-benefit potential for optimizing natural landscape and built-environment performance, or be used for various engineering and finance models, as a crucial source of evidence-based planning.

The insight session held, acted as a valuable input for the Learning Process on Flood Risk Management for Risk-informed Urban Development, giving participating cities innovative and unique perspectives on solutions that could be implemented within their urban catchments. Not only did the insight session provide the participants with different perspectives on combatting urban flooding but also to shift the paradigm of urban risk management away from a single hazard focus, more towards a multi-hazard focus and systemic approach towards risk management.

The recording and the soft copies of the presentations delivered by the team at Jacobs can be accessed through the following link – https://community.connective-cities.net/en/node/1464.

Connective Cities and the Resilience Initiative Africa would like to thank the speakers from Jacobs for their excellent and engaging inputs. Should you be interested in similar events, we would welcome you to our upcoming insight sessions:

  • Showcasing the Amman Urban Observatory – 24/04/2024
  • Application of the Sponge City Concept in the Sub-Saharan Africa context – 16/05/2024
  • Harnessing Artificial Intelligence for Risk-Informed Urban Development and Climate Action in the SADC region – 20/06/2024

City-to-city collaboration is key to streamlining climate neutrality and decentralized energy production

Together with the Connective Cities, the Association of German Cities organized a side event in the German Pavilion at the COP28 World Climate Conference in Dubai on the question of “What solutions are there for sustainable and decentralized energy generation and supply at local level”. On 6 December at 2 p.m. local time, representatives from German and African cities (Cologne, Bonn, eThekwini and Abuja) discussed their local innovations for climate-friendly energy solutions.

In her keynote speech, Katja Dörner, Vice-President of the German Association of Cities, Mayor of Bonn, and ICLEI Co-Chair for Climate Action, emphasized the importance of a socially just and participatory approach to a climate and energy transition. She emphasized that the voice of cities in climate negotiations is essential to achieve global goals.

She showed how the city of Bonn can achieve climate neutrality by 2035 and called on the federal level to make swift changes to support the local level. The EU and the German federal level must create the framework for a climate-friendly energy transition. She again emphasized the importance of making climate protection and adaptation a mandatory task for local authorities.

Dresden and Brazzaville embrace urban gardening

For Dresden and Brazzaville, urban gardening is a shared field of interest with future potential. Following a dialogue event by Connective Cities and reciprocal visits, the two cities and their partner institutions made use of a virtual exchange format to explore various possibilities for cooperation in the field of urban gardening – as part of their push for sustainable urban development.

Tree trenches for quality of life in Hagen

The German City of Hagen lies on the edge of the Sauerland low mountain range and has a hilly topography. Four rivers – the Ruhr, the Volme, the Lenne and the Ennepe – run through the city. As a result, large parts of the city are at risk of flooding, especially during heavy rainfall events. As part of a pilot project, specially developed innovative tree trenches (or tree drains) are now being planted. These are designed to make the city safer, more climate-resilient and thus more liveable.

Water sensitive urban planning – how can heavy rain and storm water be better managed?

Heavy rain and storm water events such as those in the Ahr valley in Germany in 2021 or in Pakistan, Australia or South Africa in 2022 cause streams to swell to raging torrents. They flood roads, destroy houses and bridges and important infrastructure. Yet not only do they cause damage worth billions – they also lead to loss of life. They occur suddenly, and can only be predicted at short notice. Due to climate change, these events will continue to increase in frequency and severity worldwide.

41 experts from 16 cities and eight countries accepted the joint invitation of Connective Cities with Stadtentwässerungsbetriebe Köln (StEB Köln) and United Cities and Local Governments (UCLG) to this dialogue event in December 2022.

Twelve practical examples from five countries formed the starting point for an intensive peer consultation on which approaches can be used to minimise the risks of heavy rain and storm water events for people and municipal infrastructure. Existing projects were enriched and new project ideas emerged.

Water-sensitive urban planning – How can heavy rain and storm water be better managed?

Heavy rain and storm water events, such as those in Germany’s Ahr Valley in 2021 or in Pakistan, Australia and South Africa in 2022, cause streams to swell into raging torrents. They flood roads, destroy houses and bridges, as well as important infrastructure. Yet not only do they cause damage worth billions – they also lead to loss of life. They occur suddenly, and can only be predicted at short notice. Due to climate change, these events will continue to increase in frequency and severity worldwide.

Connective Cities organises opportunities for local government experts in Germany and worldwide to dialogue on relevant and current topics, in order to deepen development cooperation. 41 experts from 16 cities and eight countries accepted the joint invitation of  Connective Cities, Stadtentwässerungsbetriebe Köln (StEB Köln) and United Cities and Local Governments (UCLG) to this dialogue event.

Twelve practical examples from five countries formed the starting point for an intensive collegial discussion on which approaches can be used to minimise the risks of heavy rain and storm water events for people and municipal infrastructure. Existing projects were enriched and new project ideas emerged. The documentation provides insights into this consultation process.

Mangrove Forest as a line of defense in Quelimane City, Mozambique

The City of Quelimane is vulnerable to natural and anthropogenic disasters. As a response measure to events such as cyclones and the high winds, the city has adopted the increase of the mangrove forest as a defence mechanism. This has been achieved through sensitization campaigns to raise awareness on the importance of mangrove ecosystems as a unique, special and vulnerable ecosystem and to promote solutions for their sustainable management, conservation and use. The communities have also been supplied with the mangroves seedlings and trained on how to plant and nurture them. Successive years of natural coastal erosion and landscape changes for agricultural use, as well as urbanization, have reduced the extent of the mangrove forest in certain areas. This has exposed the coastal communities to the devastating negative effects of climate change, particularly sea level rise.

Quelimane population has most economic activities situated along the coast and is now experiencing, more than ever before, a major threat from the rising sea. Sea level rise, flooding, saline intrusion, land erosion and decreasing biodiversity are phenomena of which occurrences have increased due to the impacts of climate change.

In Quelimane, mangroves are growing along the riverbanks, in estuaries and further inland, as well as along the entire muddy coast. The most commonly known mangrove specie is Avicenia marina. Seeing that the loss of the mangrove negatively affects their standard of living, the community has actively been involved in the mangrove reforestation and, some neighbourhoods close to the mangrove, formed local mangrove management committees that oversee the use of the mangroves. Some committees proposed use of the mangroves for bee keeping which has been a co-benefit to the initial project. The fear of being stung by bees also keeps people away from the mangroves.

Voices from Connective Cities – Al-Maghazi Municipality

Al-Maghazi in Palestine is a small municipality that is home for many. In this video, the representatives of the municipality describe the municipality’s pursuit to fulfill its developmental role and improve living conditions for the local community despite the various challenges that are amplified by the siege that the Gaza strips suffers from since 14 years . Ms. Amani Ismail values the benefits of peer learning from Connective Cities network members, and has utilised the activities conducted by Connective Cities to develop a proposal for a community garden in Al-Maghazi. She hopes that all municipalities in Gaza district’s join Connective Cities network.

Watch video at YouTube:

https://youtu.be/Y7jClLfDFOw

Linear Parks in Campinas, Brazil

nterview with Gabriel Dias Mangolini Neves The city of Campinas, like many Brazilian cities, experienced rapid urban growth on the outskirts of the city due to rural exodus since the 1970s, which was largely unplanned in terms of urban planning and ecology. Campinas chose linear parks as a nature-based solution to solve several problems at once: More resilience against heavy rain and heat, more community life through public spaces with sports and leisure facilities. 49 parks are planned, two are already being implemented. Learn more about nature-based solutions in the interview with Gabriel Dias Mangolini Neves, Head and Environmental Engineer at the Secretariat of Green, Environment and Sustainable Development of the Municipality of Campinas.

Subtitles in German, English and Portuguese are available.

Watch video at YouTube:

https://youtu.be/s87ad6O-x88

Protecting viticulture and tourism against the impacts of climate change

In December 2021, the municipalities of Eltville and Tunuyán met online for a professional dialogue, which was also attended by representatives of scientific institutions from both countries. A total of 30 people took part in the event. The two sides decided to work together in the future within a climate partnership, in order to minimise the negative impacts of climate change on wine production and the tourism industry.