1 - 13 |
Assessment of high enthalpy geothermal resources and promising areas of Chile Aravena D, Munoz M, Morata D, Lahsen A, Parada MA, Dobson P |
14 - 26 |
Sustainability evaluation of a medium scale GSHP system in a layered alluvial setting using 3D modeling suite Perego R, Guandalini R, Fumagalli L, Aghib FS, De Biase L, Bonomi T |
27 - 37 |
Regional crustal-scale structures as conduits for deep geothermal upflow Siler DL, Kennedy BM |
38 - 55 |
The structural evolution of the Radicondoli-Volterra Basin (southern Tuscany, Italy): Relationships with magmatism and geothermal implications Sani F, Bonini M, Montanari D, Moratti G, Corti G, Del Ventisette C |
56 - 66 |
A case study of the modeling of a hydrothermal reservoir: Khankala deposit of geothermal waters Farkhutdinov A, Goblet P, de Fouquet C, Cherkasov S |
67 - 76 |
Experimental verification and programming development of a new MDF borehole heat exchanger numerical model Woloszyn J, Golas A |
77 - 89 |
Characterization of subsurface processes estimation of reservoir temperature in Tural Rajwadi geothermal fields, Maharashtra, India Chatterjee S, Sharma S, Ansari MA, Deodhar AS, Low U, Sinha UK, Dash A |
90 - 106 |
A new reservoir model to support environmental monitoring of the Orakeikorako geothermal system O'Sullivan J, Arthur S, O'Sullivan M |
107 - 120 |
Initiation and propagation of fracture shearing during hydraulic stimulation in enhanced geothermal system Xie L, Min KB |
121 - 122 |
Correct energy conservation in geothermal wellbore simulation (vol 51, pg 429, 2014) McGuinness MJ |
123 - 133 |
Mathematical modelling of fines migration in geothermal reservoirs You ZJ, Yang YL, Badalyan A, Bedrikovetsky P, Hand M |
134 - 144 |
Numerical model for non-grouted borehole heat exchangers, Part 2-Evaluation Holmberg H, Acuna J, Naess E, Sonju OK |
145 - 145 |
Helium and carbon isotope composition of gas discharges in the Simav geothermal field, Turkey: Implications for the heat source (vol 57, pg 213, 2015) Karakus H |
147 - 147 |
SPECIAL ISSUE: Taupo Volcanic Zone Geothermal Systems, New Zealand: Exploration, Science and Development Preface Chambefort I, Bignall G |
148 - 167 |
Geothermal development history of the Taupo Volcanic Zone White BR, Chambefort I |
168 - 187 |
The volcanic, magmatic and tectonic setting of the Taupo Volcanic Zone, New Zealand, reviewed from a geothermal perspective Wilson CJN, Rowland JV |
188 - 204 |
Geophysics of the Taupo Volcanic Zone: A review of recent developments Hurst T, Heise W, Hreinsdottir S, Hamling I |
205 - 214 |
Gold and silver resources in Taupo Volcanic Zone geothermal systems Simmons SF, Brown KL, Browne PRL, Rowland JV |
215 - 224 |
A history of geothermal direct use development in the Taupo Volcanic Zone, New Zealand Climo M, Milicich SD, White B |
225 - 235 |
Sustainability of TVZ geothermal systems: The regulatory perspective Burnell J, van Campen B, Kortright N, Lawless J, McLeod J, Luketina K, Robson B |
236 - 251 |
Factors controlling large-scale hydrodynamic convection in the Taupo Volcanic Zone (TVZ), New Zealand Ratouis TMP, Zarrouk SJ |
252 - 265 |
A review of the Kawerau Geothermal Field, New Zealand Milicich SD, Clark JP, Wong C, Askari M |
266 - 280 |
Ngatamariki Geothermal Field, New Zealand: Geology, geophysics, chemistry and conceptual model Chambefort I, Buscarlet E, Wallis IC, Sewell S, Wilmarth M |
281 - 293 |
A review of the Rotokawa Geothermal Field, New Zealand McNamara DD, Sewell S, Buscarlet E, Wallis IC |
294 - 310 |
The Rotorua Geothermal Field: An experiment in environmental management Scott BJ, Mroczek EK, Burnell JG, Zarrouk SJ, Seward A, Robson B, Graham DJ |
311 - 324 |
Ohaaki geothermal system: Refinement of a conceptual reservoir model Mroczek EK, Milicich SD, Bixley PF, Sepulveda F, Bertrand EA, Soengkono S, Rae AJ |
325 - 346 |
Undeveloped high-enthalpy geothermal fields of the Taupo Volcanic Zone, New Zealand Simpson MP, Bignall G |
347 - 356 |
The geothermal heating system at Taupo Hospital, New Zealand Febrianto R, Thain I, Zarrouk SJ |