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==== Energy System Transition ==== <div id="h3-3-siblings" class="h3-siblings"></div> '''C.2.10''' Within energy system transitions, the most feasible adaptation options support infrastructure resilience, reliable power systems and efficient water use for existing and new energy generation systems ( ''very high confidence'' ). Energy generation diversification, including with renewable energy resources and generation that can be decentralised depending on context (e.g., wind, solar, small scale hydroelectric) and demand side management (e.g., storage, and energy efficiency improvements) can reduce vulnerabilities to climate change, especially in rural populations ( ''high confidence'' ). Adaptations for hydropower and thermo-electric power generation are effective in most regions up to 1.5Β°C to 2Β°C, with decreasing effectiveness at higher levels of warming ( ''medium confidence'' ). Climate responsive energy markets, updated design standards on energy assets according to current and projected climate change, smart-grid technologies, robust transmission systems and improved capacity to respond to supply deficits have high feasibility in the medium- to long-term, with mitigation co-benefits ( ''very high confidence'' ). { 4.6, 4.7, Figure 4.28, Figure 4.29, 10.4, Table 11.8, 13.6, Figure 13.16, Figure 13.19, 18.3,CCP5.2, [https://www.ipcc.ch/chapter/spm#CCP5.4 CCP5.4] , CCB FEASIB, CWGB BIOECONOMY } <div id="Cross-cutting" class="h3-container"></div> <span id="cross-cutting-options"></span>
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