TY - JOUR AU - Bello, Ch AU - Konaxis, I TI - Insights into the ‘landscape perspective’ : unravelling the spatio-temporal distribution of farm stays in Italy as a contribution to rural tourism analysis JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 44 PY - 2025 IS - 4 SP - 773 EP - 792 PG - 20 SN - 1048-5236 DO - 10.13052/spee1048-5236.4446 UR - https://m2.mtmt.hu/api/publication/36847373 ID - 36847373 AB - By combining hospitality with traditional farming to promote sustainable economic diversification, farm stay has emerged as a pivotal element in the rural development of Southern Europe. Based on this assumption, we have investigated the spatio-temporal evolution of farm stay across Italy between 2003 and 2023, highlighting regional differences and the underlying drivers of growth and change. The study specifically explores the socioeconomic, environmental, and political factors shaping spatial distribution (and temporal patterns) of farm stays in Italy, taken as both a response to changing tourism preferences and a proactive strategy toward rural resilience. The study identifies Tuscany and Trentino-Alto Adige as regional leaders because of strong cultural assets, environmental appeal, and robust infrastructure leading to high accessibility from the largest metropolitan regions of Italy. Meanwhile, regions such as Molise and Aosta Valley, often constrained by geographic isolation, weak policy support and demographic decline, continue to exhibit low farm stay density – despite the increasing tourism potential. The recent expansion and consolidation of farm stays in Southern Italy, and especially in Apulia and Sicily, is also noteworthy, and may reflect successful rural revitalization strategies and investment in sustainable tourism. The empirical findings of this study definitely underscore farm stay’s potential to reinforce local identity, support small-scale agriculture, and contribute to territorial cohesion in Mediterranean Europe. LA - English DB - MTMT ER - TY - JOUR AU - Ge, Bi AU - Shang, Zhenyan TI - A New Grey Prediction Model and Its Application in Renewable Energy Consumption JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 2024 PY - 2024 SP - 939 EP - 960 PG - 22 SN - 1048-5236 DO - 10.13052/spee1048-5236.4347 UR - https://m2.mtmt.hu/api/publication/35496214 ID - 35496214 AB - Renewable energy is an energy resource that can be used continuously. At present, international oil prices continue to rise, the problem of global climate change is becoming increasingly prominent, and renewable energy and clean energy have ushered in a new round of development opportunities. Based on the new gray prediction model, this paper forecasts the consumption of renewable energy and further analyzes the sustainable development of renewable energy. In this paper, the combinatorial optimization method of cumulative order, background value coefficient, and initial conditions, parameter optimization combination, parameter combinatorial optimization process of the gray prediction model, and parameter optimization mechanism based on the PSO algorithm are proposed, and the reduction error analysis is carried out. The consumption of wind power and photovoltaic renewable energy is forecasted, and three different forecasting methods as exponential smoothing method, time series analysis method, and new gray forecasting method are compared, and the wind speed, irradiation intensity, and load are forecasted by these three different forecasting methods. Compared with the time series analysis method and the exponential smoothing method, the RMSE of the new grey prediction method is reduced by 127.12% and 160.59%, and the error rate is reduced by 3.16% and 4%, respectively. Based on the consumption forecast of renewable energy, this paper analyzes its sustainability from three directions economy, resource supply, and environment, and finally gives energy policy recommendations. LA - English DB - MTMT ER - TY - JOUR AU - Xu, Xiaofeng TI - Modeling and Energy Flow Calculation of Integrated Energy System Based on Partial Differential Equation Model JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 43 PY - 2024 IS - 4 SP - 979 EP - 1006 PG - 28 SN - 1048-5236 DO - 10.13052/spee1048-5236.4349 UR - https://m2.mtmt.hu/api/publication/35495654 ID - 35495654 AB - This paper discusses the modeling and energy flow calculation method of integrated energy system based on partial differential equation model. By constructing a model that integrates power, heat, and natural gas networks, we analyze in detail the process of energy transmission, conversion, and storage in the system. In the process of modeling, the influence of compressor in constant compression ratio, constant outlet pressure and constant natural gas flow is specially considered, and the accuracy of the model is verified by specific data. In terms of energy flow calculation methods, we compare the performance of the unified solution method and the decomposition solution method. Data analysis shows that the non-gradient descent iterative method, gradient descent iterative method and decomposition solution method show consistency in calculation accuracy, that is, the calculation results of the three methods are the same. However, in terms of computational efficiency, the gradient descent iterative method shows significant advantages. Specifically, under identical computing conditions, our analysis reveals that the gradient descent iterative method exhibits a convergence rate approximately 30% faster than the decomposition solution method, resulting in a notable reduction of around 25% in computational time. This pivotal observation serves as a solid foundation for selecting a more computationally efficient approach in practical applications. To further enhance the computational efficiency, we have delved into deriving the Jacobian matrix of the model and subsequently proposed an advanced gradient descent iterative calculation technique. Through the actual test, this method not only improves the calculation speed, but also ensures the stability and accuracy of the calculation. The research in this paper not only provides a strong theoretical support for the optimal operation of the integrated energy system, but also provides a valuable reference for future research in related fields. Through specific data analysis, we prove the effectiveness and practicability of the proposed method, laying a solid foundation for the sustainable development of integrated energy systems. LA - English DB - MTMT ER - TY - JOUR AU - Vassiliades, Constantinos AU - Kyriakides, Nicolas AU - Pissourios, Ioannis AU - Vardopoulos, Ioannis TI - Sustainable Architectural Innovations for Energy-Efficient Multi-storey Buildings Through a Novel Taxonomy and Evaluation Approach JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 43 PY - 2024 IS - 4 SP - 1195 EP - 1224 PG - 30 SN - 1048-5236 DO - 10.13052/spee1048-5236.43415 UR - https://m2.mtmt.hu/api/publication/36053487 ID - 36053487 N1 - Department of Architecture, Land and Environmental Sciences, Neapolis University Pafos (NUP), Pafos, 8042, Cyprus Foundation for Mediterranean Studies-MeDiterrate, Psychiko, Attica, 15452, Greece Export Date: 04 April 2025; Cited By: 0; Correspondence Address: C. Vassiliades; Department of Architecture, Land and Environmental Sciences, Neapolis University Pafos (NUP), Pafos, 8042, Cyprus; email: c.vassiliades@nup.ac.cy; CODEN: SEENE AB - In the contemporary urban landscape, cities grapple with pressing environmental challenges, particularly in energy consumption and ecological impact. This research recognizes the imperative for a paradigm shift in the design of multi-storey buildings to effectively address these challenges. Introducing a novel taxonomy and evaluation methodology tailored to multi-storey structures, this study delves into the intricate relationship among bioclimatic and environmental characteristics, architectural design, and ecological footprint. Through a meticulous analysis of twenty multi-storey buildings, the research discerns how these features become inherent to a building form and overall environmental impact, thereby influencing its energy efficiency and sustainability. Findings contribute to a systematic categorization of key parameters that shape energy efficiency and environmental impact in multi-storey constructions. The combination of both passive and active design strategies is at the forefront of the designers’ arsenal. This structured framework offers architects, urban planners, and policymakers valuable insights for informed decision-making, fostering the development of a new generation of multi-storey buildings that are both iconic and ecologically responsible. LA - English DB - MTMT ER - TY - JOUR AU - Arora, H. AU - Anwer, N. AU - Narula, S.A. TI - A Study of Corporate Sustainability Reporting Practices in the Indian Energy Sector JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 42 PY - 2023 IS - 3 SP - 529 EP - 562 PG - 34 SN - 1048-5236 DO - 10.13052/spee1048-5236.4235 UR - https://m2.mtmt.hu/api/publication/34443998 ID - 34443998 LA - English DB - MTMT ER - TY - JOUR AU - Traich, Maamar AU - Rahmane, Amal TI - A Decomposition Analysis of Algeria’s Residential Energy Consumption Change: (2000–2020) JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 43 PY - 2023 IS - 01 SP - 151 EP - 176 PG - 26 SN - 1048-5236 DO - 10.13052/spee1048-5236.4317 UR - https://m2.mtmt.hu/api/publication/34470871 ID - 34470871 AB - Between 2000 and 2020, the residential sector’s share of Algeria’s final energy consumption was 62.20% and 46.05% respectively; this was much higher than the global average of 31%. This enables us to comprehend the factors that contribute to the rise in energy consumption in the residential sector and to carry out a quantitative analysis to determine the extent to which energy efficiency reduces energy consumption in the sector between 2000 and 2020. To accomplish this, we employ the decomposition analysis approach by using the Logarithmic Mean Divisia Index (LMDI). The results of the study showed that the energy subsidy factor had a strong impact on increasing residential energy consumption in Algeria, compared to the population growth factor. In addition, the energy intensity factor and the economic structure factor did not help reduce energy consumption levels. According to these findings, Algerian public policymakers should strictly implement the national energy program Horizon 2030 by rationalising energy use, eliminating subsidies gradually, and monitoring the implementation of energy efficiency measures in the residential sector. LA - English DB - MTMT ER - TY - JOUR AU - Martynets, Viktoriya AU - Opanasiuk, Yuliia AU - Matvieieva, Yuliia TI - How the Covid-19 Pandemic Affects Sustainable Development: The Impact on the Social, Economic and Energy Parameters of Sustainable Development JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 41 PY - 2022 IS - 4 SP - 425 EP - 456 PG - 32 SN - 1048-5236 DO - 10.13052/spee1048-5236.4144 UR - https://m2.mtmt.hu/api/publication/35603231 ID - 35603231 AB - The Covid-19 pandemic has been a challenge for all countries of the world. Although the most negative impact was on public health, the pandemic also caused damage to the economic, social and energy sectors.The research puts forward a hypothesis about the differentiation of countries due to the impact of the Covid-19 pandemic on the economic, social and energy parameters of sustainable development. A negative impact on indicators such as GDP, the number of unemployed, electricity generation was identified.The following methods were used in the article to analyze the impact of the Covid-19 pandemic on the economic, social and energy parameters of sustainable development: systems analysis, deductive approach, regression and correlation analysis and extrapolation.Theoretical and empirical research show that the economies of countries were not ready for the negative transformation processes caused by the quarantine restrictions. The after-effects of the pandemic will manifest themselves for the long period without concerted action of governments, businesses and the international community. It will negatively affect the social and economic development of countries and undermine the progress towards achieving the sustainable development goals until 2030.This article will be useful for researchers, political elite and international organizations while developing the anti-crisis programs and programs for the social and economic development of the countries. LA - English DB - MTMT ER - TY - JOUR AU - Ermini, B. AU - Prokopová, M. AU - Conte, A. AU - Tomao, A. TI - Land planning, agro-forest systems, and implications for ecosystem services: Insights from northern Italy JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 40 PY - 2021 IS - 1 SP - 1 EP - 24 PG - 24 SN - 1048-5236 DO - 10.13052/spee1048-5236.4011 UR - https://m2.mtmt.hu/api/publication/32908246 ID - 32908246 N1 - Polytechnic University of Marche, Italy Global Change Research Institute CAS, Bělidla 986/4a, Brno, 603 00, Czech Republic Council for Agricultural Research and Economics (CREA), Research Centre for Forestry and Wood (FL), Rome, 00166, Italy Council for Agricultural Research and Economics, Research Centre for Forestry and Wood, Viale S. Margherita, 80, Arezzo, 52100, Italy Department of Economics and Law, University of Macerata, Via Armaroli 43, Macerata, I-62100, Italy Export Date: 27 June 2022 CODEN: SEENE Correspondence Address: Tomao, A.; Council for Agricultural Research and Economics, Viale S. Margherita, 80, Italy; email: antonio.tomao@crea.gov.it LA - English DB - MTMT ER - TY - JOUR AU - Vokony, István AU - Kiss, József AU - Prikler, László TI - Industrial Energy Audit Anomalies: A Case Study JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 39 PY - 2019 SN - 1048-5236 UR - https://m2.mtmt.hu/api/publication/3344991 ID - 3344991 LA - English DB - MTMT ER - TY - JOUR AU - Hartmann, Bálint AU - Talamon, Attila AU - Sugár, Viktória TI - Renewable Energy Potentials in the Administrative Regions of Hungary JF - STRATEGIC PLANNING FOR ENERGY AND THE ENVIRONMENT J2 - STRAT PLAN ENERGY ENVIRON VL - 37 PY - 2017 IS - 2 SP - 33 EP - 57 PG - 25 SN - 1048-5236 DO - 10.1080/10485236.2017.11907881 UR - https://m2.mtmt.hu/api/publication/3316027 ID - 3316027 LA - English DB - MTMT ER -