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Hydropower is found to be one of the most reliable and inexpensive
options for renewable energy which was now widely been adopted by
many countries to substitute fossil fuel sources. This Brief
highlights the impact of climate change on hydropower plants,
especially on the turbine design, as turbines are responsible for
optimal conversion and regular energy production. The vulnerability
of turbines is analyzed with the help of Artificial Neural
Networks, followed by Multi Criteria Decision Making methods for
development of intelligent indices to represent the level of
vulnerability of turbines due to the change in climate.
The increase in GHG gases in the atmosphere due to expansions in
industrial and vehicular concentration is attributed to warming of
the climate world wide. The resultant change in climatic pattern
can induce abnormalities in the hydrological cycle. As a result,
the regular functionality of river watersheds will also be
affected. This Brief highlights a new methodology to rank the
watersheds in terms of its vulnerability to change in climate. This
Brief introduces a Vulnerability Index which will be directly
proportional to the climatic impacts of the watersheds. Analytical
Hierarchy Process and Artificial Neural Networks are used in a
cascading manner to develop the model for prediction of the
vulnerability index.
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