scholarly journals Spatial Energy Planning: A Review

Energies ◽  
2020 ◽  
Vol 13 (20) ◽  
pp. 5379 ◽  
Author(s):  
Juan Carlos Osorio-Aravena ◽  
Marina Frolova ◽  
Julio Terrados-Cepeda ◽  
Emilio Muñoz-Cerón

Despite the fact that some renewable energy (RE) technologies are already techno-economically viable, the high spatial dilution nature of their sources, together with aspects beyond the techno-economic ones (such as environmental, social, cultural, and other aspects), can become strong constraints and barriers when it comes to their integration into electric systems. Therefore, with the objective of determining whether studies on spatial energy planning (SEP) are addressing these issues, a systematic review has been carried out to address whether SEP studies are considering aspects beyond the techno-economic ones when integrating RE technologies and, if they are being considered, how they are addressed in their analyses and what criteria, factors, and indicators of the aspects that are employed. Apart from the revelation that the concept of SEP has been included within high-quality scientific literature for less than ten years, SEP seems to be an unexploited tool with the potential to provide significant insight into a planning process that could prevent conflicts when integrating RE technologies into electric systems. This would be useful for decision-makers and for accelerating a sustainable energy transition.

2020 ◽  
Vol 30 (Supplement_5) ◽  
Author(s):  
V Bartelink ◽  
D Yacaman Mendez ◽  
A Lager

Abstract Issue Public health problems and interventions are often addressed in sub-optimal ways by not prioritizing them based on the best available evidence. Description of the Problem The public health report 2019 for the Stockholm region aims to inform decision makers, politicians, and public health workers about the risk factors and diseases that account for the biggest part of the burden of disease with a clear focus on high quality evidence and communication of main messages. How did the public health report 2019 affect public health policy in the Stockholm region? Results The public health report 2019 influenced agenda setting, resource allocation and priority setting in the Stockholm region. Lessons We identified the following facilitating factors in the process, of which most also are supported in scientific literature, in chronological order: 1) understanding the policymaking context to be aware of windows of opportunity, 2) establishing relationships with relevant policymakers, engage with them routinely in the decision-making process, and being accessible for questions, 3) doing high-quality research by considering the latest scientific literature, multiple data sources and involving academic experts in the field, 4) communicating clear and relevant messages for generalists by translating research into easy-understandable texts and attractive figures, and 5) active dissemination of the report through multiple channels. In addition, the following barriers were identified: 1) the timeframe of the policymaking process was not in line with the research process, and 2) involving politicians in an early stage can potentially harm the objectivity of research in media messages. Key messages By focussing on major problems, high quality evidence and clear messages a public health report can contribute to more evidence-informed policy making. Engaging decision makers in the process of public health reporting is critical for the impact on agenda setting, resource allocation, and priority setting.


2021 ◽  
Vol 2 (1) ◽  
pp. 79-97
Author(s):  
Melis Aras

The energy transition in Europe requires not only the implementation of technological innovations to reduce carbon emissions but also the decentralised extension of these innovations throughout the continent, as demonstrated by the ‘Clean Energy for All Europeans’ package. However, decentralised energy generation, and specifically electricity generation, as it gives rise to new players and interactions, also requires a review of the energy planning process. In this sense, governance becomes the key concept for understanding the implementation of the energy transition in a territory. This is particularly visible in a cross-border setting, especially considering cross-border cooperation in the development of renewable energy sources (RES) provides the necessary elements to determine the criteria of local regulation between the different levels of governance. In light of the current legal framework in France, this paper presents the institutional framework of the multi-level governance of the RES development planning process. It concludes that it is quite conceivable for the rationales of governance at the local level (decentralisation) and the large-scale operation of a large interconnected network (Europeanisation) to coexist.


2018 ◽  
Author(s):  
Sara Torabi Moghadam ◽  
Silvia Coccolo ◽  
Guglielmina Mutani ◽  
Patrizia Lombardi ◽  
Jean Louis Scartezzini ◽  
...  

The spatial visualization is a very useful tool to help decision-makers in the urban planning process to create future energy transition strategies, implementing energy efficiency and renewable energy technologies in the context of sustainable cities. Statistical methods are often used to understand the driving parameters of energy consumption but rarely used to evaluate future urban renovation scenarios. Simulating whole cities using energy demand softwares can be very extensive in terms of computer resources and data collection. A new methodology, using city archetypes is proposed, here, to simulate the energy consumption of urban areas including urban energy planning scenarios. The objective of this paper is to present an innovative solution for the computation and visualization of energy saving at the city scale.The energy demand of cities, as well as the micro-climatic conditions, are calculated by using a simplified 3D model designed as function of the city urban geometrical and physical characteristics. Data are extracted from a GIS database that was used in a previous study. In this paper, we showed how the number of buildings to be simulated can be drastically reduced without affecting the accuracy of the results. This model is then used to evaluate the influence of two set of renovation solutions. The energy consumption are then integrated back in the GIS to identify the areas in the city where refurbishment works are needed more rapidly. The city of Settimo Torinese (Italy) is used as a demonstrator for the proposed methodology, which can be applied to all cities worldwide with limited amount of information.


Author(s):  
Gema Hernandez-Moral ◽  
◽  
Víctor Iván Serna-Gonzalez ◽  
Francisco Javier Miguel Herrero ◽  
César Valmaseda-Tranque

Climate change will have a strong impact on urban settings, which will also represent one of the major challenges (world’s urban population is expected to double by 2050, EU buildings consume 40% final energy and generate 36% CO2 emissions). A plethora of initiatives address this challenge by stressing the underlying necessity of thinking globally but acting locally. This entails the inclusion of a varied set of decision-makers acting at different scales and needing robust, comprehensive and comparable information that can support them in their energy planning process. To this end, this paper presents the GIS4ENER tool to support energy planners at different scales by proposing a bottom-up approach towards the calculation of energy demand and consumption at local scale that can be aggregated to support other decision-making scales. It is based on three main pillars: the exploitation of publicly available data (such as Open Street Maps, Building Stock Observatory or TABULA), the implementation of standardised methods to calculate energy (in particular the ISO52000 family) and the use of Geographic Information Systems to represent and facilitate the understanding of results, and their aggregation. The paper presents the context, main differences with other approaches and results of the tool in Osimo (IT).


2021 ◽  
Vol 23 (3) ◽  
pp. 1-9
Author(s):  
Varvara Aleksić ◽  
◽  
Ilija Batas Bjelić ◽  

Renewable energy has been suggested as the primary approach for decarbonizing the energy system and decoupling energy consumption from greenhouse gas emissions, both in the energy literature and in practice. The European Union has acknowledged the challenge and put renewable energy transition high on the policy agenda with the latest ambition of being a carbon-neutral economy by 2050. On the other hand, Western Balkan countries are still dependent on fossil fuels as one of their primary energy mix sources. The pledge about the European future has mostly driven the renewable energy transition ambition in the Western Balkan countries, including Serbia. Moreover, signing the Energy Community Treaty provided institutional and legal tools to both Contracting Parties and the European Union to build the common energy market. These processes inspired many authors in the last two decades to analyse technical, economic, market and environmental aspects of renewables. However, the governance and planning, even though identified as challenging, have been side-lined from the analysis. This paper aims to overview the selected renewable energy transition literature and legislation to analyse the main legal and policy milestones reached so far, as well as ambition in Serbia. It also discusses the lessons learned from the related literature from energy governance and planning prism. To do so, it firstly provides a literature review of the main concepts of the renewable energy transition. Moreover, the historical analysis of renewable energy policy and legal developments in the European Union, the Energy Community and Serbia are in the second part's focus. Finally, the discussion part summarizes lessons learned from the literature for future energy governance and planning with the perspective of the energy planning process, policy evaluation, and education and administrative capacity. The article concludes by emphasizing the importance of taking the current literature findings as prospective steps to follow towards accelerated energy governance and planning.


Author(s):  
Lucero Cynthia Luciano De La Cruz ◽  
Cesar Celis

Abstract Renewable energy is the energy obtained from resources inexhaustible in the long term. Furthermore, in some countries, non-conventional renewable energy includes solar, wind, biomass, geothermal and mini-hydropower. The definition of mini-hydropower plants varies depending on the country. As an example, in Peru and Canada, mini-hydropower plants have different installing capacities, below 20MW and 50MW, respectively. Accordingly, this work (i) discusses the Energy Balance and challenges that renewable energies have to face on their way to the energy transition, (ii) highlights the forecast models to generate renewable energy in short-term energy planning. The historical data about the renewable energy resources and the energy produced have been obtained by COES. The R studio software was used for statistical analysis of renewable resources and electricity generation. Also, a forecast model was developed using a neural network to forecast renewable energy generation. The results show a strong correlation between hydro resources and non-conventional renewable energy resources. Finally, the data obtained from the renewable generation forecast model were used as input to carry out a short-term dispatch model using GAMS software to determine the forecast of daily marginal cost in SEIN.


2020 ◽  
Vol ahead-of-print (ahead-of-print) ◽  
Author(s):  
Paolo Picchi ◽  
Simone Verzandvoort ◽  
Davide Geneletti ◽  
Kees Hendriks ◽  
Sven Stremke

PurposeThe transition to a low carbon future is an emerging challenge and requires the planning and designing of sustainable energy landscapes – landscapes that provide renewable energy while safeguarding the supply of other ecosystem services. The aim of this paper is to present the application of an ecosystem services trade-off assessment in the development of sustainable energy landscapes for long-term strategic planning in a case study in Schouwen-Duivenland, The Netherlands.Design/methodology/approachThe application consists in three activities: in (1) stakeholder mapping hot spots of ecosystem services and renewable energy technologies in a workshop, (2) landscape design principles being discussed by a focus group, (3) experts gathering the information and proceeding with an assessment of the potential synergies and trade-offs.FindingsThe case study indicates that (1) deploying the ecosystem services framework in planning and design can enhance the development of sustainable energy landscapes, (2) diversified and accurate spatial reference systems advance the trade-off analysis of both regulating and cultural ecosystem services and (3) the involvement of local stakeholders can advance the trade-off analysis and, ultimately, facilitates the transition to a low-carbon future with sustainable energy landscapes.Originality/valueThe originality of this research lies in the creation of an approach for the deployment of ecosystem services in the planning and design of energy transition. This is useful to advance energy transition by enhancing research methods, by providing methods useful for planners and designers and by supporting communities pursuing energy self-sufficiency in a sustainable manner.


Clean and affordable supply of energy is one of the goals among the 17 sustainable development goals. In developing nations like India the fast development in clean and sustainable energy would allow creating evaluation of the Integrated Sustainable Energy Model scenarios in the context of energy a win-win situation for ensuring the rural energy security, mitigating the impact of rising fossil-fuel cost on the economy and avoid the negative implications of exhausting natural resources and ensure the rural energy security. Therefore, there is substantial scope for the exploitation of renewable energy technologies in bridging this gap by providing affordable and clean energy to the poor to meet their lighting, cooking, and thermal needs. The huge potential for the renewable energy mainly lies in local projects, so there’s need to adopt bottomup energy modelling approaches. Energy modelling at block level is highly influential rather than modelling for one village as the block consists of approximately 80-90 villages. Hence the current study emphasizes on energy planning and scenarios modelling for Gadhinglaj block which consists of 93 villages using LongRange Energy Alternatives Planning system (LEAP) tool. The main objective of the study is to develop Integrated Sustainable Energy Model scenarios for Gadhinglaj block also requirement, Social cost and benefit, and their environmental impact. Survey method is used to collect the data. The main output of this research is the development of alternative renewable energy options under different conditions for Gadhinglaj up to 2030.


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