English

Changes in Sea-Level Pressure over South Korea Associated with High-Speed Solar Wind Events

Earth and Planetary Astrophysics 2015-05-28 v1 Space Physics

Abstract

We explore a possibility that the daily sea-level pressure (SLP) over South Korea responds to the high-speed solar wind event. This is of interest in two aspects: First, if there is a statistical association this can be another piece of evidence showing that various meteorological observables indeed respond to variations in the interplanetary environment. Second, this can be a very crucial observational constraint since most models proposed so far are expected to preferentially work in higher latitude regions than the low latitude region studied here. We have examined daily solar wind speed V{\rm V}, daily SLP difference ΔSLP{\rm \Delta SLP}, and daily log(BV2){\rm \log(BV^{2})} using the superposed epoch analysis in which the key date is set such that the daily solar wind speed exceeds 800 kms1{\rm kms^{-1}}. We find that the daily ΔSLP{\rm \Delta SLP} averaged out of 12 events reaches its peak at day +1 and gradually decreases back to its normal level. The amount of positive deviation of ΔSLP{\rm \Delta SLP} is +2.5 hPa. The duration of deviation is a few days. We also find that ΔSLP{\rm \Delta SLP} is well correlated with both the speed of solar wind and log(BV2){\rm \log(BV^{2})}. The obtained linear correlation coefficients and chance probabilities with one-day lag for two cases are r0.81r \simeq 0.81 with P>99.9P> 99.9%, and r0.84r \simeq 0.84 with P>99.9P> 99.9%, respectively. We conclude by briefly discussing future direction to pursue.

Keywords

Cite

@article{arxiv.1107.1841,
  title  = {Changes in Sea-Level Pressure over South Korea Associated with High-Speed Solar Wind Events},
  author = {Il-Hyun Cho and Young-Sil Kwak and Katsuhide Marubashi and Yeon-Han Kim and Young-Deuk Park and Heon-Young Chang},
  journal= {arXiv preprint arXiv:1107.1841},
  year   = {2015}
}

Comments

23 pages, 4 figure, accepted to Advances in Space Research