Alnethary, M.F.A., 2018: Petrology of the Hornfels Contact Zone around the Hrossatungur Gabbro in the Eroded Hafnarfjall Central Volcano, W-Iceland. Report 1, 67 pp.
Ng'ang'a, S.I., 2018: Wellbore stability – principles and analysis in geothermal well drilling. Report 2, 73 pp.
Souleiman Cheik, H., 2018: Feasibility study for implementation of a binary power plant in Lake Abhe geothermal area with a particular hot arid climate, Djibouti. Report 3, 73 pp.
Kamunya, K.M., 2018: δD AND δ18O systematics in geothermal fluids, Olkaria geothermal system, Kenya. Report 4, 32 pp.
De Freitas, M.A., 2018: Numerical Modelling of Geothermal Reservoirs, with subsidence as an added calibration parameter: Case Study of the Svartsengi Geothermal System, SW Iceland. Report 5, 62 pp.
Khoirunissa, I., 2018: AERMOD Modeling of Hydrogen Sulfide (H2S) Concentration from Geothermal Power Plants in Ulubelu, Indonesia, and Hellisheidi-Nesjavellir, Iceland. Report 6, 65 pp.
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Atwa, V.O., 2018: Analysis of stuck pipe and fishing operations: Case study of Olkaria geothermal field in Kenya. Report 8, 32 pp.
Bodley, C., 2018: Project planning for geothermal exploration drilling in Saint Lucia. Report 9, 34 pp.
Bonyo, E.A., 2018: Scaling and corrosion mitigation in Olkaria IAU by condensate – brine mixing method. Report 10, 26 pp.
Candrikawati, M., 2018: Interpretation of thermal fluid chemistry data for Waesano geothermal water, East Nusa Tenggara, Indonesia. Report 11, 25 pp.
Cordero de Fuentes, L., 2018: Drying of bananas through geothermal steam, Berlin geothermal field, El Salvado. Report 12, 22 pp.
Didas, M.M., 2018: 1D joint inversion of MT and TEM data from Ngozi geothermal prospect, SW-Tanzania – an integrated interpretation of geoscientific results. Report 13, 46 pp.
Douglas, T., 2018: Feasibility of interconnectivity of geothermal energy from Nevis to other islands in the Caribbean region. Report 14, 18 pp.
Farooq, S.H., 2018: Origin of geothermal waters along the east coast of India. Report 15, 24 pp.
Figueroa Peñarrieta, Y., 2018: Geochemical and isotopic characteristics of the Laguna Colorada geothermal area – SW Bolivia. Report 16, 28 pp.
Kafuwe, A., 2018: Economic and financial analysis of revamping the Kapisya geothermal project, Zambia. Report 17, 20 pp.
Kigen, B., 2018: Design and cost feasibility to use electricity from the grid for KenGen drilling rigs. Report 18, 24 pp.
Lubuva, J., 2018: Design of slim well drilling programme for geothermal exploration: Case of Ngozi, Tanzania. Report 19, 22 pp.
Mahamoud Ahmed, M., 2018: Well design for the Asal geothermal field, Djibouti: A case study for well GLC-2. Report 20, 20 pp.
Maina, R.K., 2018: Casing design for high-temperature geothermal well using the African Union code of practice for geothermal drilling: A case study of Well OW 736a in Olkaria, Kenya. Report 21, 30 pp.
Mugo, N.N., 2018: Developing a training simulator for Olkaria wellhead power plants. Report 22, 28 pp.
Nugraha, A.S., 2018: Process design of micro hydro, expander, binary ORC and double-flash cycle using separator pressure of unit V in Lahendong geothermal field, Indonesia. Report 23, 42 pp.
Ren Xiaoqing 2018: Design of a hypothetical DDP-well in Tibet Yangyi, China. Report 24, 30 pp.
Sayco, J.G., 2018: 1D inversion of magnetotelluric data from Mainit geothermal area, Philippines. Report 25, 24 pp.
Sondakh, G.G., 2018: Dieng geothermal project: Risk assessment for a decision on 60 MW expansion. Report 26, 29 pp.
Urquizo, M., 2018: Strategic assessment of geothermal development in Ecuador. Report 27, 28 pp.
Verduguéz, P., 2018: Well flow testing in “Sol de Mañana” geothermal field in Bolivia. Report 28, 22 pp.
Wondifra Tadesse, T., 2018: 1D inversion of magnetotelluric data from Ashute, Butajira geothermal prospect, SE-Ethiopia and its geothermal implications. Report 29, 27 pp.
Xi Yufei 2018: Geophysical exploration in the Xinglin Bay geothermal field, SE-China. Report 30, 28 pp.
Zerihun Amanu, B., 2018: Strengthening of the geothermal sector in Ethiopia. Report 31, 22 pp.
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