Threat by marine heatwaves to adaptive large marine ecosystems in an eddy-resolving model

Marine heatwaves (MHWs), episodic periods of abnormally high sea surface temperature, severely affect marine ecosystems. Large marine ecosystems (LMEs) cover similar to 22% of the global ocean but account for 95% of global fisheries catches. Yet how climate change affects MHWs over LMEs remains unknown because such LMEs are confined to the coast where low-resolution climate models are known to have biases. Here, using a high-resolution Earth system model and applying a 'future threshold' that considers MHWs as anomalous warming above the long-term mean warming of sea surface temperatures, we find that future intensity and annual days of MHWs over the majority of the LMEs remain higher than in the present-day climate. Better resolution of ocean mesoscale eddies enables simulation of more realistic MHWs than low-resolution models. These increases in MHWs under global warming pose a serious threat to LMEs, even if resident organisms could adapt fully to the long-term mean warming.

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Related Software #1 : lgan/cesm_sw_1.0.1: Some efforts on refactoring and optimizing the Community Earth System Model(CESM1.3.1) on the Sunway TaihuLight supercomputer

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Publication Date 2022-02-03T00:00:00
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Metadata Date 2025-07-11T16:06:46.760602
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Metadata Language eng; USA
Suggested Citation . (2022). Threat by marine heatwaves to adaptive large marine ecosystems in an eddy-resolving model. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7639t8z. Accessed 18 January 2026.

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