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Transient response of idealized glaciers to climate variations

机译:理想化冰川对气候变化的瞬态响应

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The transient response of glaciers to climate variations is investigated with a novel low-order model of an idealized glacier resting on uniformly inclined bedrock. The model consists of two volumes representing the accumulation and ablation areas, which are joined by a flux gate controlling mass flow according to the shallow-ice approximation. Under the assumption of a constant vertical mass-balance gradient, a volume-length scaling relation is derived which depends explicitly on mass-balance gradient and bedrock slope. Analytic expressions for the volume and area timescales are given, which are inversely proportional to the mass-balance gradient and a geometric factor which is the ratio between the vertical extent of the ablation area and the ice thickness at the equilibrium line. From the low-order model, a dynamical system in length and volume is obtained. Results from this system are in good agreement with solutions obtained from a transient finite-element model solving the full force-balance and mass-conservation equations. Under periodic forcing there are significant deviations of the length response, which show that the usual relaxation-type parameterization of length change is not well suited for short-term reactions. Switching on and off periodic climate forcing, the model glaciers show surprisingly large initial and final transient responses that have not been investigated before. These results are of significance for the interpretation of length and thickness changes observed on glaciers.
机译:冰川对气候变化的瞬态响应是用一种新型的低阶模型研究的,该模型基于均匀倾斜基岩上的理想冰川。该模型由代表蓄积区域和消融区域的两个体积组成,这两个体积由根据浅冰近似控制质量流的通量闸门相连。在垂直质量平衡梯度恒定的假设下,得出了体积-长度比例关系,该关系明确取决于质量平衡梯度和基岩坡度。给出了体积和面积时标的解析表达式,它们与质量平衡梯度和几何因子成反比,该几何因子是消融区域的垂直范围与平衡线处冰厚度之间的比率。从低阶模型获得长度和体积的动力学系统。该系统的结果与从瞬态有限元模型获得的解决方案完全一致,该模型解决了全部力平衡和质量守恒方程。在周期性强迫下,长度响应存在明显的偏差,这表明通常的长度变化的松弛型参数化不适用于短期反应。开启和关闭周期性气候强迫后,模型冰川显示出令人惊讶的巨大的初始和最终瞬态响应,而之前从未进行过研究。这些结果对于解释在冰川上观察到的长度和厚度变化具有重要意义。

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