2 min readfrom Frontiers in Marine Science | New and Recent Articles

Tidal dynamics in Kompong Som Bay, Cambodia: an FVCOM modeling study

Our take

This study presents a comprehensive FVCOM modeling approach to enhance the understanding of tidal dynamics in Kompong Som Bay, Cambodia, over the period from April 2018 to April 2019. By evaluating model performance against local ADCP and tide-gauge data, we successfully captured the region's complex tidal patterns. Findings reveal a mixed tide with notable diurnal dominance, varying tidal ranges, and distinct current structures.
Tidal dynamics in Kompong Som Bay, Cambodia: an FVCOM modeling study
To improve the limited quantitative understanding of tidal hydrodynamics in Kompong Som Bay (Cambodia), we developed a three-dimensional FVCOM model for the Gulf of Thailand with local refinement in the bay and simulated April 2018–April 2019. Model performance was evaluated using a 25-hour ADCP record in the bay, supplemented by a half-month hourly tide-gauge record at Ko Lak and published K1 harmonic constants at six additional stations. The model reproduces observed tidal elevations and currents well (elevation Skill ≈ 0.99; current-speed Skill ≈ 0.80–0.95). Harmonic analysis indicates a mixed tide with strong diurnal dominance (K1/O1 > M2/S2), with semidiurnal constituents locally enhanced toward the northern inner bay. The annual-mean tidal range increases from ~0.4–0.5 m offshore to ~0.6 m in the outer bay and ~0.7 m in the northern inner bay, with maximum tidal range locally exceeding 1.2 m. Depth-averaged currents show a “strong-at-the-mouth, weak-in-the-inner-bay” structure, with peak speeds of ~0.6–0.9 m/s in bay-mouth passages and much weaker currents across the bay interior; ellipses transition from more rotary motion offshore to predominantly reversing, channel-aligned flow inside the bay. Maximum bed shear stress exceeds ~0.1 Pa mainly in inter-island passages and headlands (maximum ~0.25 Pa), whereas most of the inner bay is <0.1 Pa and nearly half is <0.05 Pa. Tide-driven residual currents inferred from harmonic decomposition are generally weak (<0.03 m/s). An auxiliary ERA5 monthly climatological wind and sea-level pressure experiment is discussed to illustrate how seasonal atmospheric forcing may modify circulation pathways. Overall, the study provides an observation-informed tidal baseline for Kompong Som Bay.

Read on the original site

Open the publisher's page for the full experience

View original article