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On the relationship between responses in cloud water and precipitation to changes in aerosol

Item

Title (Dublin Core)

On the relationship between responses in cloud water and precipitation to changes in aerosol

Description (Dublin Core)

Climate models continue to exhibit strong sensitivity to the representation of aerosol effects on cloud reflectance and cloud amount. This paper evaluates a proposed method to constrain modeled cloud liquid water path (LWP) adjustments in response to changes in aerosol concentration <i>N</i><sub>a</sub> using observations of precipitation susceptibility. Recent climate modeling has suggested a linear relationship between relative LWP responses to relative changes in <i>N</i><sub>a</sub>, i.e., dln LWP / dln <i>N</i><sub>a</sub>, and the precipitation frequency susceptibility <i>S</i><sub>pop</sub>, which is defined as the relative change in the probability of precipitation for a relative change in <i>N</i><sub>a</sub>. Using large-eddy simulations (LES) of marine stratocumulus and trade wind cumulus clouds, we show that these two cloud regimes exhibit qualitatively different relationships between λ and <i>S</i><sub>pop</sub>; in stratocumulus clouds, λ increases with <i>S</i><sub>pop</sub>, while in trade wind cumulus, λ decreases with <i>S</i><sub>pop</sub>. The LES-derived relationship for marine stratocumulus is qualitatively similar but quantitatively different than that derived from climate model simulations of oceanic clouds aggregated over much larger spatial scales. We explore possible reasons for variability in these relationships, including the selected precipitation threshold and the various definitions of precipitation susceptibility that are currently in use. Because aerosol–cloud–precipitation interactions are inherently small-scale processes, we recommend that when deriving the relationship between λ and <i>S</i><sub>pop</sub>, careful attention be given to the cloud regime, the scale, and the extent of aggregation of the model output or the observed data.

Creator (Dublin Core)

Lebo, Z. J.
Feingold, G.

Date (Dublin Core)

2018-09-11

Type (Dublin Core)

Text

Format (Dublin Core)

application/pdf

Identifier (Dublin Core)

10.5194/acp-14-11817-2014
https://acp.copernicus.org/articles/14/11817/2014/

Source (Dublin Core)

eISSN: 1680-7324

Language (Dublin Core)

eng
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