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High resolution temperature data for ecological research and management on the Southern Ocean Islands

机译:用于南大洋群岛的生态研究和管理的高分辨率温度数据

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摘要

Southern Ocean Islands are globally significant conservation areas. Predicting how their terrestrial ecosystems will respond to current and forecast climate change is essential for their management and requires high-quality temperature data at fine spatial resolutions. Existing datasets are inadequate for this purpose. Remote-sensed land surface temperature (LST) observations, such as those collected by satellite-mounted spectroradiometers, can provide high-resolution, spatially-continuous data for isolated locations. These methods require a clear sightline to measure surface conditions, however, which can leave large data-gaps in temperature time series. Using a spatio-temporal gap-filling method applied to high-resolution (~1 km) LST observations for 20 Southern Ocean Islands, we compiled a complete monthly temperature dataset for a 15-year period (2001–2015). We validated results using in situ measurements of microclimate temperature. Gap-filled temperature observations described the thermal heterogeneity of the region better than existing climatology datasets, particularly for islands with steep elevational gradients and strong prevailing winds. This dataset will be especially useful for terrestrial ecologists, conservation biologists, and for developing island-specific management and mitigation strategies for environmental change.
机译:南大洋群岛是全球重要的保护区。预测其陆地生态系统将如何响应当前和预测的气候变化对其管理至关重要,并且需要在精细的空间分辨率下获得高质量的温度数据。现有数据集不足以实现此目的。遥感地表温度(LST)观测,例如由卫星安装的分光辐射计收集的观测值,可以为偏远地区提供高分辨率,空间连续的数据。这些方法需要清晰的视线以测量表面状况,但是,这可能会在温度时间序列中留下大量数据空白。使用时空缺口填充方法对20个南大洋群岛进行高分辨率(〜1 km)LST观测时,我们编制了一个完整的15年期间(2001-2015)的每月温度数据集。我们使用微气候温度的原位测量验证了结果。缝隙填充的温度观测比现有的气候学数据集更好地描述了该地区的热非均质性,特别是对于海拔梯度陡峭和盛行风的岛屿而言。该数据集对于陆地生态学家,保护生物学家以及为环境变化制定针对特定岛屿的管理和缓解策略特别有用。

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