...
首页> 外文期刊>Journal of Thermal Biology >Microclimate modelling of beach sand temperatures reveals high spatial and temporal variation at sea turtle rookeries
【24h】

Microclimate modelling of beach sand temperatures reveals high spatial and temporal variation at sea turtle rookeries

机译:海滩沙滩温度的微气候建模揭示了海龟新龟的高空间和时间变化

获取原文
获取原文并翻译 | 示例

摘要

The continual development of ecological models and availability of high-resolution gridded climate surfaces have stimulated studies that link climate variables to functional traits of organisms. A primary constraint of these studies is the ability to reliably predict the microclimate that an organism experiences using macroscale climate inputs. This is particularly important in regions where access to empirical information is limited. Here, we contrast correlative models based on both ambient and sea surface temperatures to mechanistic modelling approaches to predict beach sand temperatures at depths relevant to sea turtle nesting. We show that mechanistic models are congruent with correlative models at predicting sand temperatures. We used these predictions to explore thermal variation across 46 mainland and island beaches that span the geographical range of sea turtle nesting in Western Australia. Using high resolution gridded climate surfaces and site-specific soil reflectance, we predict almost 9 degrees C variation in average annual temperatures between beaches, and nearly 10 degrees C variation in average temperatures during turtle nesting seasons. Validation of models demonstrated that predictions were typically within 2 degrees C of observations and, although most sites had high correlations (r(2) > 0.7), predictive capacity varied between sites. An advantage of the mechanistic model demonstrated here is that it can be used to explore the impacts of climate change on sea turtle nesting beach temperatures as, unlike correlative models, it can be forced with novel combinations of environmental variables.
机译:生态模型的持续发展和高分辨率包装气候表面的可用性刺激了将气候变量与生物体的功能性状联系起来的研究。这些研究的主要限制是能够可靠地预测使用Macroscale气候投入的生物体经历的微气密。这在访问经验信息的区域尤其重要。这里,我们基于环境和海面温度的相关模型对机械建模方法,以预测海龟嵌套深度的深度海滩砂温度。我们表明机械模型与预测沙尘的相关模型一致。我们利用这些预测来探索跨越46个大陆和岛屿海滩的热变化,这些海滩横跨西澳大利亚西澳洲海龟的地理范围。采用高分辨率包装的气候表面和特定的土壤反射率,我们预测了海滩之间平均年度温度的近9摄氏度,平均气温变化近10摄氏度近10摄氏度。模型的验证证明预测通常在观察的2摄氏度范围内,尽管大多数位点具有高相关(R(2)> 0.7),位点之间的预测能力变化。这里证明的机械模式的优势在于它可用于探讨气候变化对海龟嵌套海滩温度的影响,与相关模型不同,它可以用新的环境变量的新组合。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号