Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Sunquakes of Solar Cycle 24

View through CrossRef
Abstract The paper presents results of a search for helioseismic events (sunquakes) produced by M-X class solar flares during Solar Cycle 24. The search is performed by analyzing photospheric Dopplergrams from the Helioseismic Magnetic Imager. Among the total number of 500 M-X class flares, 94 helioseismic events were detected. Our analysis has shown that many strong sunquakes were produced by solar flares of low M class (M1–M5), while in some powerful X-class flares helioseismic waves were not observed or were weak. Our study has also revealed that only several active regions were characterized by the most efficient generation of helioseismic waves during flares. We found that the sunquake power correlates with the maximum value of the soft X-ray flux time derivative better than with the X-ray class, indicating that the sunquake mechanism is associated with high-energy particles. We also show that the seismically active flares are more impulsive than the flares without helioseismic perturbations. We present a new catalog of helioseismic solar flares, which opens opportunities for performing statistical studies to better understand the physics of sunquakes as well as the flare-energy release and transport.
Title: Sunquakes of Solar Cycle 24
Description:
Abstract The paper presents results of a search for helioseismic events (sunquakes) produced by M-X class solar flares during Solar Cycle 24.
The search is performed by analyzing photospheric Dopplergrams from the Helioseismic Magnetic Imager.
Among the total number of 500 M-X class flares, 94 helioseismic events were detected.
Our analysis has shown that many strong sunquakes were produced by solar flares of low M class (M1–M5), while in some powerful X-class flares helioseismic waves were not observed or were weak.
Our study has also revealed that only several active regions were characterized by the most efficient generation of helioseismic waves during flares.
We found that the sunquake power correlates with the maximum value of the soft X-ray flux time derivative better than with the X-ray class, indicating that the sunquake mechanism is associated with high-energy particles.
We also show that the seismically active flares are more impulsive than the flares without helioseismic perturbations.
We present a new catalog of helioseismic solar flares, which opens opportunities for performing statistical studies to better understand the physics of sunquakes as well as the flare-energy release and transport.

Related Results

Solar Trackers Using Six-Bar Linkages
Solar Trackers Using Six-Bar Linkages
Abstract A solar panel faces the sun or has the solar ray normal to its face to enhance power reaping. A fixed solar panel can only meet this condition at one moment...
Characteristics of Sunquake Events Observed in Solar Cycle 24
Characteristics of Sunquake Events Observed in Solar Cycle 24
<p>Helioseismic response to solar flares ("sunquakes") occurs due to localized force or/and momentum impacts observed during the flare impulsive pha...
ANALYSIS OF THE OPERATION MODE OF THE SOLAR POWER PLANT
ANALYSIS OF THE OPERATION MODE OF THE SOLAR POWER PLANT
The article examines the load change schedule of the solar power plant in the Ukraine-Moldova energy union. The analysis of data averaged at minute and 15-minute intervals in the p...
Sunquakes and starquakes
Sunquakes and starquakes
AbstractIn addition to well-known mechanisms of excitation of solar and stellar oscillations by turbulent convection and instabilities, the oscillations can be excited by an impuls...
Statistical Study of the Occurrence of Coronal Holes in the Solar Corona During Solar Cycle 24
Statistical Study of the Occurrence of Coronal Holes in the Solar Corona During Solar Cycle 24
In this article we look at: (a) the occurrence of coronal holes as a function of the different phases of solar cycle 24, (b) the variability of the annual number of coronal holes f...
SUNTRACKER
SUNTRACKER
A SUNTRACKER (illustrated in figure1), is a Concentrating Solar Power (CSP) unit, in the category of solar dish engines. The novel solar dish engine module (shown in figure 2) is d...
Solar Enhanced Oil Recovery Application to Kuwait's Heavy Oil Fields
Solar Enhanced Oil Recovery Application to Kuwait's Heavy Oil Fields
Abstract Solar Enhanced Oil Recovery: Application to Kuwait's Heavy Oil Fields Thermal enhanced oil recovery (EOR) is poised to make a large contribut...
Solar Physics paper
Solar Physics paper
Abstract This study examines the complex relationships among high-energy solar particle events (SEPs), solar flares, and coronal mass ejections (CMEs) at the onset of Solar...

Back to Top