Parameterization of a calibrated geothermal energy pile model

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Cite
Caulk, Robert, et al. “Parameterization of a Calibrated Geothermal Energy Pile Model”. Geomechanics for Energy and the Environment, vol. 5, 2016, pp. 1-15, https://doi.org/10.1016/j.gete.2015.11.001.
Caulk, R., Ghazanfari, E., & McCartney, J. S. (2016). Parameterization of a calibrated geothermal energy pile model. Geomechanics for Energy and the Environment, 5, 1-15. https://doi.org/10.1016/j.gete.2015.11.001
Caulk, Robert, Ehsan Ghazanfari, and John S. McCartney. “Parameterization of a Calibrated Geothermal Energy Pile Model”. Geomechanics for Energy and the Environment 5 (2016): 1-15. https://doi.org/10.1016/j.gete.2015.11.001.
Caulk R, Ghazanfari E, McCartney JS. Parameterization of a calibrated geothermal energy pile model. Geomechanics for Energy and the Environment. 2016;5:1-15.
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Refrences
Title Journal Journal Categories Citations Publication Date
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  • Technology: Engineering (General). Civil engineering (General): Engineering geology. Rock mechanics. Soil mechanics. Underground construction
82 2015
Evaluation of thermo-mechanical and thermal behavior of full-scale energy foundations Acta Geotechnica
  • Science: Geology: Petrology
  • Science: Geology: Mineralogy
  • Technology: Engineering (General). Civil engineering (General): Engineering geology. Rock mechanics. Soil mechanics. Underground construction
  • Science: Geology
167 2015
Coupled Axisymmetric Thermo-Poro-Mechanical Finite Element Analysis of Energy Foundation Centrifuge Experiments in Partially Saturated Silt Geotechnical and Geological Engineering
  • Technology: Engineering (General). Civil engineering (General): Engineering geology. Rock mechanics. Soil mechanics. Underground construction
26 2014
Design tools for thermoactive geotechnical systems 2014
Performance Investigation of Multiple-Tube Ground Heat Exchangers for Ground-Source Heat Pump American Journal of Energy Engineering 4 2014
Citations
Title Journal Journal Categories Citations Publication Date
A critical assessment and summary on the low carbon energy pile technologies based on the life-cycle perspective: Challenges and prospects Applied Thermal Engineering
  • Science: Physics: Heat: Thermodynamics
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General): Mechanics of engineering. Applied mechanics
  • Technology: Mechanical engineering and machinery
  • Technology: Engineering (General). Civil engineering (General)
2024
A method for assessing non-uniformity of thermally induced stresses in the cross-section of energy piles Journal of Building Engineering 2024
Stress effects on thermal conductivity of soils and heat transfer efficiency of energy piles in the saturated and unsaturated soils Computers and Geotechnics
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
  • Technology: Engineering (General). Civil engineering (General): Engineering geology. Rock mechanics. Soil mechanics. Underground construction
  • Science: Geology
  • Technology: Engineering (General). Civil engineering (General)
  • Science: Mathematics: Instruments and machines: Electronic computers. Computer science
8 2023
Thermo-hydro-mechanical behavior of energy barrettes: Field experiments and numerical simulations Geomechanics for Energy and the Environment
  • Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade
  • Technology: Engineering (General). Civil engineering (General): Engineering geology. Rock mechanics. Soil mechanics. Underground construction
  • Science: Geology
  • Science: Geology: Petrology
  • Science: Geology: Mineralogy
  • Science: Geology
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2 2023
Numerical Study on Energy Pile Groups with Deep Penetration 1-U-Shape Heat Exchangers under Different Operation Modes International Journal of Geomechanics
  • Technology: Engineering (General). Civil engineering (General): Engineering geology. Rock mechanics. Soil mechanics. Underground construction
  • Technology: Engineering (General). Civil engineering (General)
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Citations Analysis
Category Category Repetition
Technology: Engineering (General). Civil engineering (General)33
Technology: Engineering (General). Civil engineering (General): Engineering geology. Rock mechanics. Soil mechanics. Underground construction24
Social Sciences: Industries. Land use. Labor: Special industries and trades: Energy industries. Energy policy. Fuel trade21
Science: Geology19
Technology: Environmental technology. Sanitary engineering12
Science: Geology: Petrology8
Science: Geology: Mineralogy8
Technology: Mechanical engineering and machinery: Renewable energy sources6
Technology: Building construction: Architectural engineering. Structural engineering of buildings4
Technology3
Science: Physics: Heat: Thermodynamics2
Technology: Mechanical engineering and machinery2
Technology: Engineering (General). Civil engineering (General): Mechanics of engineering. Applied mechanics2
Science: Mathematics: Instruments and machines: Electronic computers. Computer science2
Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials2
Science: Chemistry2
Technology: Engineering (General). Civil engineering (General): Environmental engineering1
Geography. Anthropology. Recreation: Environmental sciences1
Science: Biology (General): Ecology1
Technology: Chemical technology: Chemical engineering1
Technology: Electrical engineering. Electronics. Nuclear engineering: Electric apparatus and materials. Electric circuits. Electric networks1
Technology: Technology (General): Industrial engineering. Management engineering1
Science: Mathematics1
Science: Science (General)1
The category Technology: Engineering (General). Civil engineering (General) 33 is the most commonly referenced area in studies that cite this article. The first research to cite this article was titled Structural and Geotechnical Effects of Thermal Loads in Energy Walls and was published in 2016. The most recent citation comes from a 2024 study titled A method for assessing non-uniformity of thermally induced stresses in the cross-section of energy piles. This article reached its peak citation in 2022, with 10 citations. It has been cited in 23 different journals, 17% of which are open access. Among related journals, the Geomechanics for Energy and the Environment cited this research the most, with 8 citations. The chart below illustrates the annual citation trends for this article.
Citations used this article by year