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Modelling climate-change impacts on stream temperature of Formosan landlocked salmon habitat

机译:模拟气候变化对台湾内陆鲑鱼栖息地河流温度的影响

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摘要

A physics-based model is provided for predicting the impact of climate change on stream temperature and, in turn, on Formosan landlocked salmon {Oncorhynchus masou formosanus) habitat. Because upstream watersheds on Taiwan Island are surrounded with high and steep mountains, the influence of mountain shading on solar radiation and longwave radiation is taken into account by using a digital elevation model. Projections using CGCM2 and HADCM3 models and CCCM and GISS models provided information on future climatic conditions. The results indicate that annual average stream temperatures may rise by 0.5℃ (HADCM3 short term) to 2.9℃ (CGCM2 long term) due to climate change. The simulation results also indicate that the average suitable habitat for the Formosan landlocked salmon may decline by 333 m (HADCM3 short term) to 1633 m (CGCM2 long term) and 166 m (HADCM3 short term) to 1833 m (CGCM2 long term) depending on which thermal criterion (17℃ and 18℃ respectively) is applied. The results of this study draw attention to the tasks of Formosan landlocked salmon conservation agencies, not only with regard to restoration plans of the local environment, but also to the mitigation strategies to global climate change that are necessary and require further research.
机译:提供了基于物理的模型,用于预测气候变化对溪流温度以及进而对福尔摩沙内陆鲑鱼(Oncorhynchus masou formosanus)生境的影响。由于台湾岛上的上游流域被高而陡峭的山脉所包围,因此使用数字高程模型考虑了山体阴影对太阳辐射和长波辐射的影响。使用CGCM2和HADCM3模型以及CCCM和GISS模型的投影提供了有关未来气候条件的信息。结果表明,由于气候变化,年平均河流温度可能会升高0.5℃(HADCM3短期)至2.9℃(CGCM2长期)。模拟结果还表明,根据不同情况,福尔摩沙内陆鲑鱼的平均适宜生境可能下降333 m(HADCM3短期)至1633 m(CGCM2长期)和166 m(HADCM3短期)至1833 m(CGCM2长期),具体取决于对其应用热标准(分别为17℃和18℃)。这项研究的结果引起人们对福尔摩沙内陆鲑鱼保护机构的任务的关注,不仅涉及当地环境的恢复计划,而且还涉及到必要的,需要进一步研究的缓解全球气候变化的战略。

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