Ability of Urban Planning Policy in Addressing Climate Change Adaptation and Mitigation

2022 ◽  
pp. 1-19
Author(s):  
Kiranmayi Raparthi

Climate change is a multidimensional observable fact and is regarded as one of the greatest challenges human society is facing in the 21st century. Urban researchers advocate that well formulated urban spatial planning policy has the ability to mitigate climate change and adapt to the adverse impacts of climate change. However, there has been limited research on analysing the extent to which spatial planning policies address climate change mitigation and adaptation. This chapter presents a qualitative evaluation of urban spatial planning polices in India by assessing planning policies against an evaluation framework. The analysis highlights that there are limited climate change mitigation and adaptation indicators in planning documents, and these indicators have been very limitedly integrated in the planning documents. This research supports the use of spatial planning policy as an effective tool in addressing climate change mitigation and has an implication for mainstreaming climate change mitigation and adaptation in urban planning.

2020 ◽  
Author(s):  
Nektarios Chrysoulakis ◽  
Zina Mitraka ◽  
Mattia Marconcini ◽  
David Ludlow ◽  
Zaheer Khan ◽  
...  

<p>Resilience has become an important necessity for cities, particularly in the face of climate change. Mitigation and adaptation actions that enhance the resilience of cities need to be based on a sound understanding and quantification of the drivers of urban transformation and settlement structures, human and urban vulnerability, and of local and global climate change. Copernicus, as the means for the establishment of a European capacity for Earth Observation (EO), is based on continuously evolving Core Services. A major challenge for the EO community is the innovative exploitation of the Copernicus products in dealing with urban sustainability towards increasing urban resilience. Due to the multidimensional nature of urban resilience, to meet this challenge, information from more than one Copernicus Core Services, namely the Land Monitoring Service (CLMS), the Atmosphere Monitoring Service (CAMS), the Climate Change Service (C3S) and the Emergency Management Service (EMS), is needed. Furthermore, to address urban resilience, the urban planning community needs spatially disaggregated environmental information at local (neighbourhood) scale. Such information, for all parameters needed, is not yet directly available from the Copernicus Core Services mentioned above, while several elements - data and products - from contemporary satellite missions consist valuable tools for retrieving urban environmental parameters at local scale. The H2020-Space project CURE (Copernicus for Urban Resilience in Europe) is a joint effort of 10 partners from 9 countries that synergistically exploits the above Copernicus Core Services to develop an umbrella cross-cutting application for urban resilience, consisting of individual cross-cutting applications for climate change adaptation/mitigation, energy and economy, as well as healthy cities and social environments, at several European cities. These cross-cutting applications cope with the required scale and granularity by also integrating or exploiting third-party data, in-situ observations and modelling. CURE uses DIAS (Data and Information Access Services) to develop a system capable of supporting operational applications and downstream services across Europe. The CURE system hosts the developed cross-cutting applications, enabling its incorporation into operational services in the future. CURE is expected to increase the value of Copernicus Core Services for future emerging applications in the domain of urban resilience, exploiting also the improved data quality, coverage and revisit times of the future satellite missions. Thus, CURE will lead to more efficient routine urban planning activities with obvious socioeconomic impact, as well as to more efficient resilience planning activities related to climate change mitigation and adaptation, resulting in improved thermal comfort and air quality, as well as in enhanced energy efficiency. Specific CURE outcomes could be integrated into the operational Copernicus service portfolio. The added value and benefit expected to emerge from CURE is related to transformed urban governance and quality of life, because it is expected to provide improved and integrated information to city administrators, hence effectively supporting strategies for resilience planning at local and city scales, towards the implementation of the Sustainable Development Goals and the New Urban Agenda for Europe.</p>


2014 ◽  
Vol 12 ◽  
Author(s):  
Chee Ping Ngang ◽  
Joy Jacqueline Pereira ◽  
Halimaton Saadiah Hashim

Spatial planning practice in Malaysia has given greater prominence to environmental matters since the amendment of the Town and Country Planning Act 1976 in 1995, in which sustainable development has become the core emphasis of all planning policies and plans. However, elements of climate change, which require being addressed in strategic planning, have not been explicitly incorporated into spatial plans that cover urban and rural areas at both state and local levels. This study presents a framework for the evaluation of the content of spatial plans in response to climate change adaptation and mitigation in the case of the Selangor River Basin, which may be considered the life support for the Kuala Lumpur Conurbation, the largest urban mega region in Malaysia. A content analysis of national, state and local level spatial plans reveals that the overall quality of plans is higher at the national level, but gradually declines towards lower tier plans, and that generally an equal emphasis has been paid to both climate change mitigation and adaptation. The findings support the argument that spatial planning provides a platform for coordinating mitigation and adaptation responses through its sustainable development policies, however, there is a need to reframe the scope of sustainable development in the country for this purpose.


2020 ◽  
Vol 375 (1794) ◽  
pp. 20190121 ◽  
Author(s):  
Callum M. Roberts ◽  
Bethan C. O'Leary ◽  
Julie P. Hawkins

Nations of the world have, to date, pursued nature protection and climate change mitigation and adaptation policies separately. Both efforts have failed to achieve the scale of action needed to halt biodiversity loss or mitigate climate change. We argue that success can be achieved by aligning targets for biodiversity protection with the habitat protection and restoration necessary to bring down greenhouse gas concentrations and promote natural and societal adaptation to climate change. Success, however, will need much higher targets for environmental protection than the present 10% of sea and 17% of land. A new target of 30% of the sea given high levels of protection from exploitation and harm by 2030 is under consideration and similar targets are being discussed for terrestrial habitats. We make the case here that these higher targets, if achieved, would make the transition to a warmer world slower and less damaging for nature and people. This article is part of the theme issue ‘Climate change and ecosystems: threats, opportunities and solutions’.


2014 ◽  
Vol 12 (4) ◽  
Author(s):  
Chee Ping Ngang ◽  
Joy Jacqueline Pereira ◽  
Halimaton Saadiah Hashim

Spatial planning practice in Malaysia has given greater prominence to environmental matters since the amendment of the Town and Country Planning Act 1976 in 1995, in which sustainable development has become the core emphasis of all planning policies and plans. However, elements of climate change, which require being addressed in strategic planning, have not been explicitly incorporated into spatial plans that cover urban and rural areas at both state and local levels. This study presents a framework for the evaluation of the content of spatial plans in response to climate change adaptation and mitigation in the case of the Selangor River Basin, which may be considered the life support for the Kuala Lumpur Conurbation, the largest urban mega region in Malaysia. A content analysis of national, state and local level spatial plans reveals that the overall quality of plans is higher at the national level, but gradually declines towards lower tier plans, and that generally an equal emphasis has been paid to both climate change mitigation and adaptation. The findings support the argument that spatial planning provides a platform for coordinating mitigation and adaptation responses through its sustainable development policies, however, there is a need to reframe the scope of sustainable development in the country for this purpose.


Author(s):  
Goaitske Iepema ◽  
Nyncke J. Hoekstra ◽  
Ron de Goede ◽  
Jaap Bloem ◽  
Lijbert Brussaard ◽  
...  

2021 ◽  
Vol 166 (1-2) ◽  
Author(s):  
Charlie Wilson ◽  
Céline Guivarch ◽  
Elmar Kriegler ◽  
Bas van Ruijven ◽  
Detlef P. van Vuuren ◽  
...  

AbstractProcess-based integrated assessment models (IAMs) project long-term transformation pathways in energy and land-use systems under what-if assumptions. IAM evaluation is necessary to improve the models’ usefulness as scientific tools applicable in the complex and contested domain of climate change mitigation. We contribute the first comprehensive synthesis of process-based IAM evaluation research, drawing on a wide range of examples across six different evaluation methods including historical simulations, stylised facts, and model diagnostics. For each evaluation method, we identify progress and milestones to date, and draw out lessons learnt as well as challenges remaining. We find that each evaluation method has distinctive strengths, as well as constraints on its application. We use these insights to propose a systematic evaluation framework combining multiple methods to establish the appropriateness, interpretability, credibility, and relevance of process-based IAMs as useful scientific tools for informing climate policy. We also set out a programme of evaluation research to be mainstreamed both within and outside the IAM community.


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