Energetic Efficiency and Sustainability DOI
María E. Raygoza-L., Jesús Heriberto Orduño-Osuna,

Mauricio Anaya-Romo

et al.

Advances in computational intelligence and robotics book series, Journal Year: 2025, Volume and Issue: unknown, P. 355 - 376

Published: Feb. 28, 2025

The 21st century faces a growing energy crisis driven by rapid population growth, urbanization and industrialization, particularly in emerging economies. Fossil fuels account for 80% of global consumption, which has led to increased greenhouse gas (GHG) emissions intensified climate change, increasing the need transition energy-efficient systems. Artificial intelligence (AI) emerges as platform address these challenges improving efficiency sustainability. Smart public policies can help harness potential AI promote ensure socio-environmental equity. Collaboration between government stakeholders is essential develop regulatory frameworks that enable an efficient transition. This paper explores applications sustainability, its socio-economic benefits opportunities involved implementing AI-based solutions policies.

Language: Английский

Sustainable architecture: Envisioning self-sustaining buildings for the future DOI Creative Commons

Azubuike Chukwudi Okwandu,

Dorcas Oluwajuwonlo Akande,

Zamathula Queen Sikhakhane Nwokediegwu

et al.

International Journal of Management & Entrepreneurship Research, Journal Year: 2024, Volume and Issue: 6(5), P. 1512 - 1532

Published: May 4, 2024

Sustainable Architecture: Envisioning Self-Sustaining Buildings for the Future explores imperative sustainable design practices in construction industry. With global environmental challenges becoming increasingly urgent, need buildings that are not just energy-efficient but also self-sustaining is paramount. This report delves into principles, technologies, and strategies can transform traditional structures reduce impact enhance quality of life. The begins by highlighting pressing architecture, emphasizing role contributing to carbon emissions, resource depletion, degradation. It then outlines key principles including energy efficiency, water conservation, waste reduction, use environmentally friendly materials. A major focus on innovative technologies be employed create buildings. These include passive such as orientation, shading, natural ventilation, well active like solar panels, rainwater harvesting systems, green roofs. Case studies successful from around world illustrate practical application these technologies. Finally, discusses barriers implementing cost considerations, lack awareness, regulatory hurdles. concludes with a call action stakeholders industry embrace work towards creating built environment regenerative, positively planet its inhabitants. "Sustainable Future" provides comprehensive overview drive transition more environment. serves valuable architects, designers, policymakers, anyone interested future. Keywords: Sustainability, Building, Future, Architecture.

Language: Английский

Citations

4

Technological innovations in liquefied natural gas operations: Enhancing efficiency and safety DOI Creative Commons

Chinwe Ozowe,

Ayemere Ukato,

Dazok Donald Jambol

et al.

Engineering Science & Technology Journal, Journal Year: 2024, Volume and Issue: 5(6), P. 1909 - 1929

Published: June 6, 2024

Liquefied natural gas (LNG) has emerged as a crucial component of the global energy mix, driving need for innovative technologies to enhance efficiency and safety in LNG operations. This abstract provides an overview key technological innovations operations, focusing on their impact safety. Efficiency operations is essential minimize costs reduce environmental impact. One significant innovation development advanced liquefaction processes, such use mixed refrigerant cycles dual which improve plants. Additionally, advancements boil-off re-liquefaction enable recovery re-use gas, further enhancing efficiency. Safety paramount due flammable nature LNG. Technological have significantly improved measures, including leak detection emergency shutdown systems. For instance, fiber-optic sensing technology enables real-time monitoring pipelines storage tanks, early capabilities. Furthermore, implementation robust management systems simulation response planning enhanced The integration digital technologies, artificial intelligence (AI) Internet Things (IoT), transforming AI algorithms can optimize plant by analyzing vast amounts data predict maintenance needs. IoT devices equipment performance conditions, In conclusion, are improvements revolutionizing making them more efficient, cost-effective, safe. These continued growth sustainability industry meeting demands. Keywords: Innovations, LNG, Operations, Enhancing Efficiency, Safety.

Language: Английский

Citations

4

Can machine learning reduce volatility in electricity markets? Lessons from the economic calculation debate DOI Open Access
Fuat Oğuz, Mustafa Çağrı Peker

Economic Affairs, Journal Year: 2025, Volume and Issue: 45(1), P. 62 - 77

Published: Feb. 1, 2025

Abstract The knowledge problem and volatility in electricity markets have long been central to policy debates energy markets. This study examines the successes limitations of machine learning addressing these issues, contributing existing literature. Machine has shown promise tackling specific technical aspects power markets, but its shortcomings forecasting customer behaviour managing decentralised, renewable‐driven systems highlight need for further refinement. While offers potential reducing certain market volatility, it is not a comprehensive solution broader challenges faced by market.

Language: Английский

Citations

0

Machine Learning for Waste-to-Energy: Optimization and Predictive Analytics DOI
Shakil Rana,

N. Thakur,

Divya Jyoti

et al.

Communications in computer and information science, Journal Year: 2025, Volume and Issue: unknown, P. 70 - 82

Published: Jan. 1, 2025

Language: Английский

Citations

0

Energetic Efficiency and Sustainability DOI
María E. Raygoza-L., Jesús Heriberto Orduño-Osuna,

Mauricio Anaya-Romo

et al.

Advances in computational intelligence and robotics book series, Journal Year: 2025, Volume and Issue: unknown, P. 355 - 376

Published: Feb. 28, 2025

The 21st century faces a growing energy crisis driven by rapid population growth, urbanization and industrialization, particularly in emerging economies. Fossil fuels account for 80% of global consumption, which has led to increased greenhouse gas (GHG) emissions intensified climate change, increasing the need transition energy-efficient systems. Artificial intelligence (AI) emerges as platform address these challenges improving efficiency sustainability. Smart public policies can help harness potential AI promote ensure socio-environmental equity. Collaboration between government stakeholders is essential develop regulatory frameworks that enable an efficient transition. This paper explores applications sustainability, its socio-economic benefits opportunities involved implementing AI-based solutions policies.

Language: Английский

Citations

0