Consequences of Tidal Dissipation in a Putative Venusian Ocean

Green, J. A. Mattias and Way, Michael J. and Barnes, Rory (2019) Consequences of Tidal Dissipation in a Putative Venusian Ocean. The Astrophysical Journal Letters, 876 (2). L22. ISSN 2041-8205

[thumbnail of Green_2019_ApJL_876_L22.pdf] Text
Green_2019_ApJL_876_L22.pdf - Published Version

Download (3MB)

Abstract

The solar tide in an ancient Venusian ocean is simulated using a dedicated numerical tidal model. Simulations with varying ocean depth and rotational periods ranging from −243 to 64 sidereal Earth days are used to calculate the tidal dissipation rates and associated tidal torque. The results show that the tidal dissipation could have varied by more than 5 orders of magnitude, from 0.001 to 780 GW, depending on rotational period and ocean depth. The associated tidal torque is about 2 orders of magnitude below the present day Venusian atmospheric torque, and could change the Venusian daylength by up to 72 days per million years depending on rotation rate. Consequently, an ocean tide on ancient Venus could have had significant effects on the rotational history of the planet. These calculations have implications for the rotational periods of similarly close-in exoplanetary worlds and the location of the inner edge of the liquid water habitable zone.

Item Type: Article
Subjects: STM Open Library > Physics and Astronomy
Depositing User: Unnamed user with email support@stmopenlibrary.com
Date Deposited: 05 Jun 2023 04:44
Last Modified: 18 May 2024 07:34
URI: http://ebooks.netkumar1.in/id/eprint/1560

Actions (login required)

View Item
View Item