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Building Resilient Infrastructure Adapting to Changing Climate for Infrastructure Design in Coastal Belize

机译:在伯利兹沿海建立弹性基础设施并适应气候变化,以进行基础设施设计

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The outcome of the analysis showed that while the risks to assets is significant, energy and operational costs outweighed the cost of building climate resilience into the project design. In this island based setting where energy costs are high and material handling (i.e., sludge disposal) would incur significant transportation costs, climate resilient systems that are low energy and low carbon profile can be cost effective. This was a very favourable result for the client as the long-term sustainability of the assets and low on-going energy costs were two key factors that initially did not appear to be complementary. One key finding was that, as expected the cost of building climate resilient infrastructure significantly increased the overall capital cost of the systems. The significance of the incremental costs associated with climate resilient design can detract from the willingness of developing countries to consider climate change adaptation in infrastructure design. It is therefore critical for financiers to appropriately incorporate climate risks into financial analyses to demonstrate how the incremental cost to a project for climate resilient design is outweighed by the costs if the risks are not mitigated.
机译:分析结果表明,尽管资产风险很大,但是能源和运营成本超过了在项目设计中建立气候适应力的成本。在能源成本高昂且材料处理(即污泥处置)将基于该岛的环境中,将招致大量运输成本,因此低能耗,低碳特征的气候适应系统可能具有成本效益。对于客户而言,这是一个非常有利的结果,因为资产的长期可持续性和持续的能源成本低是最初看起来并不互补的两个关键因素。一个关键发现是,正如预期的那样,建设具有气候适应能力的基础架构的成本大大增加了系统的总体资本成本。与气候适应性设计相关的增量成本的重要性可能会削弱发展中国家在基础设施设计中考虑适应气候变化的意愿。因此,对于融资人而言,至关重要的是将气候风险适当地纳入财务分析中,以证明如果不减轻风险,那么如何利用气候抗灾设计项目的增量成本来抵消成本。

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