Simulated stable water isotopes during the mid-Holocene and pre-industrial periods using AWI-ESM-2.1-wiso
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Published:2023-09-08
Issue:17
Volume:16
Page:5153-5178
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ISSN:1991-9603
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Container-title:Geoscientific Model Development
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language:en
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Short-container-title:Geosci. Model Dev.
Author:
Shi Xiaoxu, Cauquoin AlexandreORCID, Lohmann GerritORCID, Jonkers LukasORCID, Wang QiangORCID, Yang HuORCID, Sun YuchenORCID, Werner MartinORCID
Abstract
Abstract. Numerical simulations employing prognostic stable water isotopes can not only facilitate our understanding of hydrological processes and climate change but also allow for a direct comparison between isotope signals obtained from models and various archives. In the current work, we describe the performance and explore the potential of a new version of the Earth system model AWI-ESM (Alfred Wegener Institute Earth System Model), labeled AWI-ESM-2.1-wiso, in which we incorporated three isotope tracers into all relevant components of the water cycle. We present here the results of pre-industrial (PI) and mid-Holocene (MH) simulations. The model reproduces the observed PI isotope compositions in both precipitation and seawater well and captures their major differences from the MH conditions. The simulated relationship between the isotope composition in precipitation (δ18Op) and surface air temperature is very similar between the PI and MH conditions, and it is largely consistent with modern observations despite some regional model biases. The ratio of the MH–PI difference in δ18Op to the MH–PI difference in surface air temperature is comparable to proxy records over Greenland and Antarctica only when summertime air temperature is considered. An amount effect is evident over the North African monsoon domain, where a negative correlation between δ18Op and the amount of precipitation is simulated. As an example of model applications, we studied the onset and withdrawal date of the MH West African summer monsoon (WASM) using daily variables. We find that defining the WASM onset based on precipitation alone may yield erroneous results due to the substantial daily variations in precipitation, which may obscure the distinction between pre-monsoon and monsoon seasons. Combining precipitation and isotope indicators, we suggest in this work a novel method for identifying the commencement of the WASM. Moreover, we do not find an obvious difference between the MH and PI periods in terms of the mean onset of the WASM. However, an advancement in the WASM withdrawal is found in the MH compared to the PI period due to an earlier decline in insolation over the northern location of Intertropical Convergence Zone (ITCZ).
Funder
Bundesministerium für Bildung und Forschung National Natural Science Foundation of China
Publisher
Copernicus GmbH
Reference146 articles.
1. Bartlein, P. J., Harrison, S., Brewer, S., Connor, S., Davis, B., Gajewski, K., Guiot, J., Harrison-Prentice, T., Henderson, A., Peyron, O, Prentice, I. C., Scholze, M., Seppä, H., Shuman, B., Sugita, S., Thompson, R. S., Viau, A. E., Williams, J., and Wu, H.
Pollen-based continental climate reconstructions at 6 and 21 ka: a global
synthesis, Clim. Dynam., 37, 775–802, 2011. a, b, c, d, e, f 2. Berger, A.: Long-term variations of the earth's orbital elements, Celestial
Mech., 15, 53–74, 1977. a, b 3. Bhatla, R., Ghosh, S., Mandal, B., Mall, R., and Sharma, K.: Simulation of
Indian summer monsoon onset with different parameterization convection
schemes of RegCM-4.3, Atmos. Res., 176, 10–18, 2016. a 4. Bigg, G. R. and Rohling, E. J.: An oxygen isotope data set for marine waters,
J. Geophys. Res.-Oceans, 105, 8527–8535, 2000. a 5. Bombardi, R. J., Moron, V., and Goodnight, J. S.: Detection, variability, and
predictability of monsoon onset and withdrawal dates: A review, Int.
J. Climatol., 40, 641–667, 2020. a
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