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Institutional adaptation to cooling water scarcity for thermoelectric power generation under global warming

机译:全球变暖下热电发电对冷却水短缺的制度适应

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This article studies adaptation of institutional arrangements for water regulation to climate change. Power plants occasionally need to curtail production during heat waves, causing economic losses and putting power quality at risk. To avoid exacerbation of this problem due to climate change, the regulation of heat emissions from power plants may require adaptation. The analysis abstracts a mathematical model from a case study of the German Rhine catchment. The model compares three options for regulation with an analysis of transaction costs, and balances them with costs from environmental externalities. First, long-term and site-specific temperature caps lead to the comparatively lowest sum of social transaction and production costs if heat waves only increase in intensity. Second, a dynamic heat load plan performs better if heat waves only increase in frequency. Third, if both intensity and frequency of heat waves increase substantially, a specific contract between the environmental regulator and electricity producers (the minimum power plant concept) performs comparatively best. The article highlights economies of scale in transaction costs, and shows how institutional adaptation can depend on the speed of climate change. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文研究了水调节对气候变化的体制安排的适应性。发电厂有时需要减少热浪期间的产量,从而造成经济损失,并使电能质量面临风险。为了避免由于气候变化而加剧该问题,可能需要对发电厂的热量排放进行调整。该分析从德国莱茵河流域的案例研究中抽象出了一个数学模型。该模型将三种监管选择与交易成本分析进行比较,并将它们与环境外部成本相平衡。首先,如果热浪仅在强度上增加,则长期和针对特定地点的温度上限将导致社会交易和生产成本的总和相对较低。其次,如果热波的频率仅增加,则动态热负荷计划的效果会更好。第三,如果热浪的强度和频率都显着增加,则环境监管机构与电力生产商之间的特定合同(最低发电厂概念)表现最佳。这篇文章着重介绍了交易成本的规模经济,并展示了机构适应如何取决于气候变化的速度。 (C)2016 Elsevier B.V.保留所有权利。

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