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The Wildlife Trusts

The Wildlife Trusts

3 Projects, page 1 of 1
  • Funder: UK Research and Innovation Project Code: NE/N017374/2
    Funder Contribution: 25,243 GBP

    This project will provide a novel citizen science approach to collecting and interpreting data about domestic gardens in order to co-develop an action plan with project partners to prioritise greening solutions within and beyond domestic gardens. Domestic gardens offer a valuable source of green infrastructure (GI) within an urban environment. They are important patches of greenspace that can provide connectivity between larger areas of GI (parks, recreation grounds etc), therefore improving the functioning of ecosystems and the services they provide, such as reducing surface water runoff thereby reducing flood risk, and lowering urban temperatures. While individually, a domestic garden may appear insignificant, collectively domestic gardens contribute up to 30% of greenspace within the urban matrix, which becomes especially important at the city scale. In spite of this, the quantity and quality of green infrastructure provision by domestic gardens is not well-evidenced. This has implications for the future resilience of an urban environment and the health and well-being of its citizens. Current data over-estimates the amount of vegetation within private gardens, which leads to subsequent inaccuracies in environmental model outputs (e.g. surface water runoff in an extreme rainfall event), and in the identification and prioritisation of areas of GI need, inhibiting effective action on-the-ground. Furthermore, the general public are often unaware of the environmental value of their own private garden and how they can improve it. This project will address these issues directly by: 1. Inviting city residents to complete an online survey about their own garden, the results of which will be amalgamated to create maps of domestic garden greenspace both in terms of quantity and quality. Survey respondents will be given a score for the environmental quality of their garden based on their responses to the survey, together with some information as to how their garden could be improved in relation to biodiversity, climate regulation and improving air quality. 2. Validating the survey responses using high resolution satellite data. The combination of the satellite data with the survey responses will be used to establish a classification scheme for different garden types, which can then be extrapolated to the wider city area. 3. Modelling how the vegetation within a domestic garden impacts surface runoff, temperature reduction and air quality. This will be done across multiple scales, from an individual garden to the neighbourhood-level and eventually at the city-scale. 4. Developing an action plan for GI solutions within the city based on the findings from the previous objectives and existing, larger-scale, green infrastructure datasets. Manchester is the test city for this project; the proposal has been developed in partnership with Manchester City Council, Red Rose Forest, Southway Housing, Lancashire Wildlife Trust and additional members of the Manchester a Certain Future Green Infrastructure Strategy Group (Environment Agency, BDP, Groundwork, National Trust). The project outputs will allow these end-users to develop a more robust plan for GI under current and future climate scenarios. Consequently, project outputs will contribute to enhancing the quality of life for the local population and to improving the resilience of the Manchester City environment. Further impact will occur at the individual level (improving individual gardens based on the survey feedback, strengthening community cohesion), neighbourhood-level (the evidence created can be used for biodiversity/GI/ES offsetting for new housing developments, housing associations will use the project outputs for improving neighbourhoods and access to green space) and stakeholder-level (private developers can use the outputs to add value to residential areas and development, third sector organisations can use the maps for developing policy recommendations and actions).

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  • Funder: UK Research and Innovation Project Code: NE/N017374/1
    Funder Contribution: 96,813 GBP

    This project will provide a novel citizen science approach to collecting and interpreting data about domestic gardens in order to co-develop an action plan with project partners to prioritise greening solutions within and beyond domestic gardens. Domestic gardens offer a valuable source of green infrastructure (GI) within an urban environment. They are important patches of greenspace that can provide connectivity between larger areas of GI (parks, recreation grounds etc), therefore improving the functioning of ecosystems and the services they provide, such as reducing surface water runoff thereby reducing flood risk, and lowering urban temperatures. While individually, a domestic garden may appear insignificant, collectively domestic gardens contribute up to 30% of greenspace within the urban matrix, which becomes especially important at the city scale. In spite of this, the quantity and quality of green infrastructure provision by domestic gardens is not well-evidenced. This has implications for the future resilience of an urban environment and the health and well-being of its citizens. Current data over-estimates the amount of vegetation within private gardens, which leads to subsequent inaccuracies in environmental model outputs (e.g. surface water runoff in an extreme rainfall event), and in the identification and prioritisation of areas of GI need, inhibiting effective action on-the-ground. Furthermore, the general public are often unaware of the environmental value of their own private garden and how they can improve it. This project will address these issues directly by: 1. Inviting city residents to complete an online survey about their own garden, the results of which will be amalgamated to create maps of domestic garden greenspace both in terms of quantity and quality. Survey respondents will be given a score for the environmental quality of their garden based on their responses to the survey, together with some information as to how their garden could be improved in relation to biodiversity, climate regulation and improving air quality. 2. Validating the survey responses using high resolution satellite data. The combination of the satellite data with the survey responses will be used to establish a classification scheme for different garden types, which can then be extrapolated to the wider city area. 3. Modelling how the vegetation within a domestic garden impacts surface runoff, temperature reduction and air quality. This will be done across multiple scales, from an individual garden to the neighbourhood-level and eventually at the city-scale. 4. Developing an action plan for GI solutions within the city based on the findings from the previous objectives and existing, larger-scale, green infrastructure datasets. Manchester is the test city for this project; the proposal has been developed in partnership with Manchester City Council, Red Rose Forest, Southway Housing, Lancashire Wildlife Trust and additional members of the Manchester a Certain Future Green Infrastructure Strategy Group (Environment Agency, BDP, Groundwork, National Trust). The project outputs will allow these end-users to develop a more robust plan for GI under current and future climate scenarios. Consequently, project outputs will contribute to enhancing the quality of life for the local population and to improving the resilience of the Manchester City environment. Further impact will occur at the individual level (improving individual gardens based on the survey feedback, strengthening community cohesion), neighbourhood-level (the evidence created can be used for biodiversity/GI/ES offsetting for new housing developments, housing associations will use the project outputs for improving neighbourhoods and access to green space) and stakeholder-level (private developers can use the outputs to add value to residential areas and development, third sector organisations can use the maps for developing policy recommendations and actions).

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  • Funder: UK Research and Innovation Project Code: NE/N016971/1
    Funder Contribution: 61,668 GBP

    Green infrastructure (GI) is recognised globally as an essential component of liveable and sustainable places. It is generally defined as encompassing most vegetated elements in the built environment, for example trees, shrubs, wetlands and other planting. It is widely acknowledged that GI provides numerous benefits to health and well-being and there is a substantial body of research demonstrating these benefits. Despite this there is still considerable uncertainty amongst the multiple stakeholders of 'what good GI is'. Currently, there is no overarching benchmark or standard for GI. This Innovation Fund will address this by developing a national benchmark for GI. The Centre for Sustainable Planning and Environments at the University of the West of England, Bristol are already developing a local benchmark for GI with the Gloucestershire Wildlife Trust through a Knowledge Transfer Partnership. This benchmark is, however, focussed on local priorities in Gloucestershire and the West of England. This Innovation Fund will expand the local benchmark to ensure it can be used across England in a wider range of GI initiatives. This benchmark will allow an assessment of the process of GI creation, from policy, through to planning, design, delivery and long-term management, ensuring that current good practice has been adopted at all stages. The stakeholders, or end-users, for the national benchmark include planners, property developers, ecologists, urban designers, landscape architects, engineers, public health professionals, urban foresters, community safety officers and maintenance contractors. The objectives are as follows: - To work with a range of end-users to expand the local benchmark into a national benchmark and ensure that it is fit-for-purpose and user-friendly. - To apply this national benchmark to a series of GI demonstration projects including new commercial and residential developments and retrofitting initiatives across England to demonstrate its effectiveness. The national benchmark will then be formally launched and made available online for anyone to use for free. User documentation and reports detailing the demonstration projects will be available on a website for the benchmark. The outcome of the Innovation Fund is ultimately the delivery of high quality GI. This will maximise the benefits provided by GI including to nature conservation, health and well-being, economic growth, climate change adaptation and resilience. The key impacts include: Allowing developers to demonstrate to planning authorities, stakeholders and customers that they are providing high quality GI, which will act as a selling point for their developments. Enabling local authorities to communicate their expectations for GI in new developments and retrofitting projects (e.g. of social housing) and its maintenance; easily identify those planning applications that are meeting their requirements for the GI elements of developments; and demonstrate the quality of their own GI assets. Allowing built environment consultants to demonstrate compliance with a respected and recognised benchmark to their clients. Enabling policy makers to develop more effective policies, by being able to specify their expectations for GI at a national and local level in a range of contexts. This will improve clarity on the requirements for GI. Benefit residents and communities in both new and existing neighbourhoods who will gain from the provision of high quality GI and the associated benefits. This will ultimately improve, for example, their quality of life, health and well-being, environmental quality, resilience to climate change and the local economy. Benefit broader society which will have more consistent access to high quality GI and the associated positive outcomes from this including, for example, improved population health and well-being, inward investment, biodiversity, climate change adaptation and environmental justice.

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