A mass-weighted isentropic coordinate for mapping chemical tracers and computing atmospheric inventories

We introduce a transformed isentropic coordinate M theta(e), defined as the dry air mass under a given equivalent potential temperature surface (theta(e)) within a hemisphere. Like theta(e), the coordinate M-theta e follows the synoptic distortions of the atmosphere but, unlike theta(e), has a nearly fixed relationship with latitude and altitude over the seasonal cycle. Calculation of M-theta e is straightforward from meteorological fields. Using observations from the recent HIAPER Pole-to-Pole Observations (HIPPO) and Atmospheric Tomography Mission (ATom) airborne campaigns, we map the CO2 seasonal cycle as a function of pressure and M-theta e, where M-theta e is thereby effectively used as an alternative to latitude. We show that the CO2 seasonal cycles are more constant as a function of pressure using Moe as the horizontal coordinate compared to latitude. Furthermore, short-term variability in CO2 relative to the mean seasonal cycle is also smaller when the data are organized by M-theta e and pressure than when organized by latitude and pressure. We also present a method using M-theta e to compute mass-weighted averages of CO2 on a hemispheric scale. Using this method with the same airborne data and applying corrections for limited coverage, we resolve the average CO2 seasonal cycle in the Northern Hemisphere (mass-weighted tropospheric climatological average for 2009-2018), yielding an amplitude of 7.8 +/- 0.14 ppm and a downward zerocrossing on Julian day 173 +/- 6.1 (i.e., late June). M-theta e may be similarly useful for mapping the distribution and computing inventories of any long-lived chemical tracer.

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Related Links

Related Dataset #1 : Jena CarboScope: Atmospheric CO2 inversion

Related Dataset #2 : Multi-laboratory compilation of atmospheric carbon dioxide data for the period 1957-2018; obspack_co2_1_GLOBALVIEWplus_v5.0_2019_08_12

Related Dataset #3 : HIPPO Merged 10-Second Meteorology, Atmospheric Chemistry, and Aerosol Data. Version 1.0

Related Dataset #4 : HIPPO MEDUSA Flask Sample Trace Gas And Isotope Data. Version 1.0

Related Dataset #5 : ATom: Merged Atmospheric Chemistry, Trace Gases, and Aerosols

Related Dataset #6 : ATom: Simulated Data Stream for Modeling ATom-like Measurements

Related Dataset #7 : θ-Mθe Lookup Table (ERA-Interim)

Related Software #1 : yumingjin0521/Mthetae: θ-Mθe Lookup Table Computation Method

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Author Jin, Y.
Keeling, R. F.
Morgan, E. J.
Ray, E.
Parazoo, N. C.
Stephens, Britton
Publisher UCAR/NCAR - Library
Publication Date 2021-01-12T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2025-07-11T19:10:42.843951
Metadata Record Identifier edu.ucar.opensky::articles:24116
Metadata Language eng; USA
Suggested Citation Jin, Y., Keeling, R. F., Morgan, E. J., Ray, E., Parazoo, N. C., Stephens, Britton. (2021). A mass-weighted isentropic coordinate for mapping chemical tracers and computing atmospheric inventories. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d75d8w7r. Accessed 07 August 2025.

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