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首页> 外文期刊>Journal of hydrometeorology >Using stable water isotopes to evaluate basin-scale simulations of surface water budgets
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Using stable water isotopes to evaluate basin-scale simulations of surface water budgets

机译:使用稳定的水同位素来评估盆地水平模拟地表水预算

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Two rare but naturally occurring isotopes of water, H-1(2) O-18 and (HHO)-H-1-H-2-O-16, are becoming of practical use in diagnosis of climate and earth system model performance. Their value as tracers and validation tools in hydrological subsystems derives from the systematic and different ( from each other and from the most abundant water isotope: (HHO)-H-1-H-1-O-16) paths and residence times they exhibit as a result of phase change, chemical exchange, and diffusive differentiation. Applications of the simulation of stable isotopic behavior to resolving uncertainty in global climate or earth system models, including river isotopic characterization of basin changes and plant-respired oxygen isotope "tagging,'' are limited until more basic criteria such as conservation, current mean climate, and capture of observed variability are demonstrated. Here the authors assess the simulation of isotopic fluxes in basin-scale hydrology, focusing on the representation of land surfaces in numerical models as the current mechanism for incorporating water isotopes. They find that surface water budgets are still rather poorly simulated and inadequately constrained at the scale of large basins, yet surface energy partition can be apparently well captured by models with inadequate land surface parameterization. Despite this, simulations of fluxes and reservoirs of the isotopes (H2O)-O-18 and (HHO)-H-1-H-2-O-16 are demonstrated here to have diagnostic utility in evaluating surface energy and water budgets. The hypothesis that aspects of basin water budgets and fluxes are explained and improved by isotopic investigation is demonstrated.
机译:两种罕见但天然存在的水,H-1(2)O-18和(HHO)-H-1-H-2-2-16,正在成为诊断气候和地球系统模型性能的实际用途。它们作为水文子系统中的示踪剂和验证工具的价值来自系统和不同的(来自彼此和来自最丰富的水同位素:(HHO)-H-1-H-1-O-16)他们所展示的路径和停留时间由于相变,化学交换和扩散分化。稳定同位素行为模拟以解决全球气候或地球系统模型的不确定性,包括盆地变化的河同位素表征和植物呼吸氧同位素“标记”,直到更基本的标准,如保护,目前的平均气候展示了观察到的变异性的捕获。这里的作者评估了盆地水文中同位素通量的模拟,重点是数值模型中陆地表面的表示作为掺入水同位素的机制。他们发现地面水预算是在大盆地的规模上仍然仍然相当差,但在大盆地的规模中,表面能量分区可以通过陆地表面参数化的模型显然很好地捕获。尽管这一点,同位素(H2O)-O-18的助熔剂和储存器的模拟(H2O)-O-18 (HHO)-H-1-H-2-O-16在此进行说明,以在评估表面ZH中具有诊断效用ERGY和水预算。通过同位素调查解释和改善了盆地水预算和助熔剂的各方面的假设。

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