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Book of Full Papers - Symposium Hydro Engineering
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2.3. FINDINGS To determine the technological capability gap, the collected data was analyzed and the test results confirmed the existence of a technological gap for eight of the technologies. For this purpose, the level of existing capabilities and the level of capabilities required in each technology are specified. Then, the following test was carried out to test the technological capability gap in technologies with different required and existing capabilities [3]. There is no gap between the level of existing and required X technology technology: H0 There is a gap between the existing level of existing and required X technology technology: H1 Measurement of Indicators: For this purpose, a questionnaire was developed in three sections, the internal indicators including the technological gap, the duration of development and the cost of development, were examined in each part of the questionnaire [4]. The output of this step is shown in Table 3. Table 3 The degree of technological gap in each of the technologies required for power plant design Technology Title Available Technology level Technology level of the item need Technology gap Quantitative Relative amount Model simulation software 1.17 11.33 10.16 12% Hydrostatic calculations software 7.83 11.83 4.00 5% Structural Computing Software 3.42 12.08 8.66 10% Hydrodynamic Computing Software 1.50 16.67 15.17 18% Tank or Test channel 8.33 13.00 4.17 5% Isobaric by pass system 2.50 12.83 9.23 11% Wave Systems Damper 1.17 18.08 16.91 20% Cavitation tunnel 1.33 18 16.67 20% 752
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Book of Full Papers Symposium Hydro Engineering
Title
Book of Full Papers
Subtitle
Symposium Hydro Engineering
Author
Gerald Zenz
Publisher
Verlag der Technischen Universität Graz
Location
Graz
Date
2018
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-85125-620-8
Size
20.9 x 29.6 cm
Pages
2724
Keywords
Hydro, Engineering, Climate Changes
Categories
International
Naturwissenschaften Physik
Technik
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