Implementation of the Distributed Thermal Response Test at Characteristic Geological Regions throughout Croatia

Soldo, Vladimir and Lepoša, Leon and Boban, Luka and Borović, Staša (2015) Implementation of the Distributed Thermal Response Test at Characteristic Geological Regions throughout Croatia. = Implementation of the Distributed Thermal Response Test at Characteristic Geological Regions throughout Croatia. In: World Geothermal Congress, 19.-24.09.2015., Melbourne, Australija.

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Abstract

Energy Strategy of the Republic of Croatia by 2020 relies on renewable energy resources as the one of main priorities. The use of geothermal energy sources is specifically encouraged. The EU IPA (Instrument for pre-accession assistance) project entitled Research and Promotion of the Use of Shallow Geothermal Potential in Croatia includes research in eight characteristic regions throughout the country. In this project a new method, the so called distributed thermal response test (DTRT) has been applied on a 100 m deep borehole heat exchanger (double U pipe) with 152 mm in the outer diameter of borehole. The fundamental difference from the TRT is the measurement of the carrier fluid temperature along the BHE using an optical fiber cable placed inside the BHE pipes. Hence, in DTRT vertical distribution of the ground thermal conductivity and borehole thermal resistance is determined along the borehole heat exchanger (BHE). With this method the undisturbed ground temperature profile along the BHE is also determined. The duration of the DTRT is about seven days. In the first three days the temperature is measured with no fluid circulation, followed by imposing a constant heat flux during the next 48 hours. Thermal properties of the ground are influenced by the soil and rock composition, porosity, moisture content and groundwater flow. This paper presents the results for the first region – the city of Osijek.

Item Type: Conference or Workshop Item (Lecture)
Keywords (Croatian): distributed thermal response test; ground thermal properties; heat pumps
Subjects: TECHNICAL SCIENCE > Mechanical Engineering
Divisions: 300 Department of Thermodynamics, Thermal and Process Engineering > 320 Chair of Thermal and Process Engineering
Indexed in Web of Science: No
Indexed in Current Contents: No
Date Deposited: 09 Feb 2017 12:31
Last Modified: 22 Feb 2017 09:52
URI: http://repozitorij.fsb.hr/id/eprint/7248

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