4.3 Article

Enthalpy balance theory unifies diverse glacier surge behaviour

Journal

ANNALS OF GLACIOLOGY
Volume -, Issue -, Pages -

Publisher

CAMBRIDGE UNIV PRESS
DOI: 10.1017/aog.2023.23

Keywords

Glacier modelling; glacier surges; subglacial processes

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This paper summarizes two distinct classes of glacier surges and proposes thermal switching and hydraulic switching as triggering factors. It also emphasizes the importance of enthalpy balance theory, providing a framework for understanding the spectrum of glacier surging behaviors.
It is commonly asserted that there are two distinct classes of glacier surges: slow, long-duration 'Svalbard-type' surges, triggered by a transition from cold- to warm-based conditions (thermal switching), and fast, shorter-duration 'Alaska-type' surges triggered by a reorganisation of the basal drainage system (hydraulic switching). This classification, however, reflects neither the diversity of surges in Svalbard and Alaska (and other regions), nor the fundamental dynamic processes underlying all surges. We argue that enthalpy balance theory offers a framework for understanding the spectrum of glacier surging behaviours while emphasising their essential dynamic unity. In this paper, we summarise enthalpy balance theory, illustrate its potential to explain so-called 'Svalbard-type' and 'Alaska-type' surges using a single set of principles, and show examples of a much wider range of glacier surge behaviour than previously observed. We then identify some future directions for research, including strategies for testing predictions of the theory against field and remote sensing data, and priorities for numerical model development.

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