A critical review on the effective utilization of geothermal energy
暂无分享,去创建一个
A. Inayat | F. Jamil | P. Akhter | M. Hussain | I. Shafiq | Sumeer Shafique | Asma Sarwer | Young-Kwon Park | Muhammad Ahmad
[1] T. Adebayo,et al. Socio-economic and technological drivers of sustainability and resources management: Demonstrating the role of information and communications technology and financial development using advanced wavelet coherence approach , 2022, Resources Policy.
[2] Wujie Zhang,et al. Can user reviews on online shopping websites contribute to user-involved green product innovation: a case study of household refrigerators , 2022, International Journal of Sustainable Development & World Ecology.
[3] T. Adebayo,et al. Dynamic effect of disintegrated energy consumption and economic complexity on environmental degradation in top economic complexity economies , 2022, Energy Reports.
[4] D. Morata,et al. Boron in geothermal energy: Sources, environmental impacts, and management in geothermal fluid , 2022, Renewable and Sustainable Energy Reviews.
[5] M. Dusseault,et al. A review of nanotechnology fluid applications in geothermal energy systems , 2022, Renewable and Sustainable Energy Reviews.
[6] S. Raza,et al. The roles of hydro, nuclear and biomass energy towards carbon neutrality target in China: A policy-based analysis , 2022, Energy.
[7] Husam Rjoub,et al. Another look at the nexus between economic growth trajectory and emission within the context of developing country: fresh insights from a nonparametric causality-in-quantiles test , 2022, Environment, Development and Sustainability.
[8] P. Bourne-Webb,et al. A critical review on the current knowledge of geothermal energy piles to sustainably climatize buildings , 2022, Renewable and Sustainable Energy Reviews.
[9] Hakim SAIBI,et al. Geothermal renewable energy prospects of the African continent using GIS , 2022, Geothermal Energy.
[10] Gi Woong Yun,et al. Differences in public perceptions of geothermal energy based on EGS technology in Korea after the Pohang earthquake: National vs. local , 2021 .
[11] L. H. San,et al. A Preliminary Geothermal Prospectivity Mapping Based on Integrated GIS, Remote-Sensing, and Geophysical Techniques around Northeastern Nigeria , 2021, Sustainability.
[12] G. Axelsson,et al. Geological controls on geothermal resources for power generation , 2021, Nature Reviews Earth & Environment.
[13] J. Nathwani,et al. Environmental, economic, and social impacts of geothermal energy systems , 2021, Renewable and Sustainable Energy Reviews.
[14] J. Lund,et al. Direct utilization of geothermal energy 2020 worldwide review , 2020, Geothermics.
[15] W. Heijman,et al. The contribution of the geothermal resources to local employment: Case study from Poland , 2021 .
[16] M. Sadeghzadeh,et al. Renewable hybrid energy systems using geothermal energy: hybrid solar thermal–geothermal power plant , 2020, International Journal of Low-Carbon Technologies.
[17] P. Jennings,et al. Geothermal energy resources: potential environmental impact and land reclamation , 2020, Environmental Reviews.
[18] A. Olabi,et al. Geothermal based hybrid energy systems, toward eco-friendly energy approaches , 2020, Renewable Energy.
[19] Konstantinos P. Tsagarakis,et al. Shallow geothermal energy under the microscope: Social, economic, and institutional aspects , 2020 .
[20] Mohammad A. Abdelwahhab,et al. Geothermal application of spectral gamma ray logging in the South Kansas Subsurface, USA. , 2019, Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine.
[21] A. Buyuksarac,et al. Thermal structure of the Cappadocia region, Turkey: a review with geophysical methods , 2019, Mediterranean Geoscience Reviews.
[22] B. Rezaie,et al. Geothermal technology: Trends and potential role in a sustainable future , 2019, Applied Energy.
[23] Inkyu Lee,et al. Systems analysis, design, and optimization of geothermal energy systems for power production and polygeneration: State-of-the-art and future challenges , 2019, Renewable and Sustainable Energy Reviews.
[24] Jonathan L. Ho,et al. GeoVision Analysis Supporting Task Force Report: Electric Sector Potential to Penetration , 2019 .
[25] A. Sowiżdżał,et al. Seismic Methods in Geothermal Water Resource Exploration: Case Study from Łódź Trough, Central Part of Poland , 2019, Geofluids.
[26] S. Pan,et al. Establishment of enhanced geothermal energy utilization plans: Barriers and strategies , 2019, Renewable Energy.
[27] Y. Noorollahi,et al. Review of two decade geothermal energy development in Iran, benefits, challenges, and future policy , 2019, Geothermics.
[28] Vikram Vishal,et al. Geothermal reservoir modeling in a coupled thermo-hydro-mechanical-chemical approach: A review , 2018, Earth-Science Reviews.
[29] G. Falcone,et al. Assessment of deep geothermal energy exploitation methods: The need for novel single-well solutions , 2018, Energy.
[30] Yuedong Yao,et al. Geothermal energy development by circulating CO2 in a U-shaped closed loop geothermal system , 2018, Energy Conversion and Management.
[31] W. Xiang,et al. Investigation of shallow geothermal potentials for different types of ground source heat pump systems (GSHP) of Wuhan city in China , 2018 .
[32] Muhammad Aziz,et al. Dry steam cycle application for excess steam utilization: Kamojang geothermal power plant case study , 2018 .
[33] A. Manzella,et al. Environmental and social aspects of geothermal energy in Italy , 2018 .
[34] Shyi-Min Lu,et al. A global review of enhanced geothermal system (EGS) , 2018 .
[35] G. Florides,et al. Characterisation of Ground Thermal and Thermo-Mechanical Behaviour for Shallow Geothermal Energy Applications , 2017 .
[36] Y. Noorollahi,et al. Thermo-economic modeling and GIS-based spatial data analysis of ground source heat pump systems for regional shallow geothermal mapping , 2017 .
[37] Wei Xiang,et al. A review of ground investigations for ground source heat pump (GSHP) systems , 2016 .
[38] R. Bertani. Geothermal power generation in the world 2010–2014 update report , 2016 .
[39] Jialing Zhu,et al. A review of geothermal energy resources, development, and applications in China: Current status and prospects , 2015 .
[40] Brynhildur Davidsdottir,et al. A sustainability assessment framework for geothermal energy projects: Development in Iceland, New Zealand and Kenya , 2015 .
[41] G. Axelsson,et al. Geothermal energy for sustainable development: A review of sustainability impacts and assessment frameworks , 2015 .
[42] Lygia Romanach,et al. Differences in Public Perceptions of Geothermal Energy Technology in Australia , 2014 .
[43] Abdul Waheed Bhutto,et al. Greener energy: Issues and challenges for Pakistan-geothermal energy prospective , 2014 .
[44] Wilfred A. Elders,et al. The concept of the Iceland deep drilling project , 2014 .
[45] Philipp Blum,et al. Review on life cycle environmental effects of geothermal power generation , 2013 .
[46] Q. Guo. Hydrogeochemistry of high-temperature geothermal systems in China: A review , 2012 .
[47] César R. Chamorro,et al. World geothermal power production status: Energy, environmental and economic study of high enthalpy technologies , 2012 .
[48] Petar Vasiljević,et al. Criteria for use of groundwater as renewable energy source in geothermal heat pump systems for building heating/cooling purposes , 2010 .
[49] Ryuichi Itoi,et al. Geothermal energy resources and development in Iran , 2009 .
[50] Abdeen Mustafa Omer,et al. Ground-source heat pumps systems and applications , 2008 .
[51] Wilfred A. Elders,et al. The Iceland Deep Drilling Project: a search for deep unconventional geothermal resources , 2005 .