Amdeberhan, Y. A conceptual reservoir model and production capacity estimate for the Tendaho geothermal field, Ethiopia. Report 1, 1-24. 
Arévalo, A.S.A. Environmental aspects of the Berlín geothermal power station in El Salvador. Report 2, 25-50. 
Druma, A.M. Dynamic climate model of a greenhouse. Report 3, 51-85. 
Gebregziabher, Z. Geology and hydrological alteration in wells TD-5 and TD-6, Tendaho geothermal field, Ethiopia. Report 4, 87-114. 
Gökgöz, A. Geochemistry of the Kizildere-Tekkehamam-Buldan-Pamukkale geothermal fields, Turkey. Report 5, 115-156. 
Guerra G., C.E. Cementing of geothermal wells. Report 6, 157-188. 
Kollikho, P.W. Hydrogen sulphide dispersion modeling for the Svartsengi geothermal power plant, SW-Iceland. Report 7, 189-215. 
Malolepszy, Z. Modelling of geothermal resources within abandoned coal mines, Upper Silesia, Poland. Report 8, 217-238. 
Mughal, M.N. Geothermal resources of Pakistan and methods for early stage exploration. Report 9, 239-254. 
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Pan Xiaoping. Geochemical characteristics of thermal fluid form the Xiaotangshang geothermal field, Beijing, China. Report 10, 280-317.
Pasvanoglu, S. Geochemical study of the Geysir geothermal field in Haukadalur, S-Iceland. Report 11, 281-318.
Sbita, L.B.B. Control systems for geothermal greenhouses in Tunisia, a study based on dynamic simulation. Report 12, 319-354.
Soltani-Hosseini, M. Simulation and performance analysis of the new geothermal co-generation power plant (OV-5) at Svartsengi, SW-Iceland. Report 13, 355-372.
Sun Zhanxue. Geothermometry and chemical equilibria of geothermal fluids from Hveragerdi, SW-Iceland, and selected hot springs, Jiangxi province, SE-China. Report 14, 373-402.
Wang Kun. Reservoir evaluation for the Wuqing geothermal field, Tianjin, China. Report 15, 403-422.
Were, J.O. Aspects of waste management and pollution control in Olkaria geothermal field, Kenya. Report 16, 423-460.
Yock Fung, Antonio. Chemical and isotopic studies in the Miravalles geothermal field, Costa Rica. Report 17, 461-499.
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