#

Volumetric resource assessment

Skoða venjulega færslu

dc.contributor LaGeo is
dc.contributor Jarðhitaskóli Háskóla Sameinuðu þjóðanna is
dc.contributor United Nations University is
dc.contributor United Nations University, Geothermal Training Programme is
dc.contributor.author Sarmiento, Zosimo F. is
dc.contributor.author Benedikt Steingrímsson 1947 is
dc.contributor.author Guðni Axelsson 1955 is
dc.date.accessioned 2018-09-24T14:14:53Z
dc.date.available 2018-09-24T14:14:53Z
dc.date.issued 2018
dc.identifier.issn 1670-794x
dc.identifier.uri http://hdl.handle.net/10802/16522
dc.description Presented at SDG Short Course III on Geothermal Reservoir Characterization: Well Logging, Well Testing and Chemical Analysis organized by UNU-GTP and LaGeo, in Santa Tecla, El Salvador, September 16-22, 2018. is
dc.description.abstract Geothermal resource assessment is the estimation of the amount of thermal energy that can be extracted from a geothermal reservoir and used economically for a period of time, usually several decades. Various methods have been developed for this purpose. At early stages of geothermal development, when available data are limited, relatively simple methods are used in assessing the reservoirs. But as more information are gathered on the reservoir parameters and experience is gained in producing energy from the reservoir, sophisticated numerical computer models are used to simulate the geothermal reservoir in the natural state and the response to utilization which eventually will determine the generating potential of the reservoir. The main focus in this paper is on the volumetric method (stored heat calculations) and the key elements that constitute a thorough evaluation of a geothermal resource. Calculation of the geothermal energy reserves based on the range of values of the various reservoir parameters can be carried out using Monte Carlo simulation. It applies a probabilistic method of evaluating reserves or resources that captures uncertainty. Given the complexity and heterogeneity of the geological formations of most geothermal reservoirs, this method is preferred as opposed to the usual deterministic approach which assumes a single value for each parameter to represent the whole reservoir. Instead of assigning a “fixed” value to a reservoir parameter, numbers within the range of the distribution model are randomly selected and drawn for each cycle of calculation over a thousand iterations. is
dc.format.extent 1 rafrænt gagn (15 bls.). is
dc.language.iso en
dc.publisher United Nations University is
dc.relation.ispartof 991010134069706886
dc.relation.ispartofseries United Nations University., UNU Geothermal Training Programme, Iceland. Short Course ; SC-26
dc.relation.uri https://orkustofnun.is/gogn/unu-gtp-sc/UNU-GTP-SC-26-34.pdf
dc.subject Jarðhiti is
dc.title Volumetric resource assessment en
dc.type Bók is
dc.identifier.gegnir 991010134869706886


Skrár

Skrá Stærð Skráartegund Skoða Lýsing
UNU-GTP-SC-26-34.pdf 1.257Mb PDF Skoða/Opna Heildartexti

Þetta verk birtist í eftirfarandi flokki:

Skoða venjulega færslu

Leita


Fletta