A Novel Near-Surface Wave-Coherent Instantaneous Profiling System for Atmospheric Measurements
Author:
Stanek Mathew J.1,
Pastore Douglas M.1,
Hackett Erin E.1ORCID
Affiliation:
1. Department of Marine Science, Coastal Carolina University, Conway, SC 29526, USA
Abstract
Large knowledge gaps concerning the effect of ocean surface waves on near-surface vertical distributions of temperature and humidity exist due to practical limitations and sensor fidelity challenges of direct measurements. Measurements of temperature and humidity are classically made using rocket- or radiosondes and fixed weather stations and can utilize a tethered profiling system. However, these measurement systems have limitations when obtaining wave-coherent measurements near the sea surface. Consequently, boundary layer similarity models are commonly employed to fill in near-surface measurement gaps despite the documented shortcomings of the models in this region. Thus, this manuscript presents a near-surface wave-coherent measurement platform that measures high-temporal-resolution vertical distributions of temperature and humidity down to ~0.3 m above the instantaneous sea surface. The design of the platform is described along with preliminary observations obtained during a pilot experiment. Ocean surface-wave phase-resolved vertical profiles are also demonstrated from the observations.
Funder
Coastal Carolina University
The Under Secretary of Defense-Research and Engineering
National Defense Education Program (NDEP)/BA-1
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry