Showing posts with label random bits of science. Show all posts
Showing posts with label random bits of science. Show all posts

Friday, August 19, 2016

Solar Flares and Why We Care

What’s a Solar Flare?
By Anna Voelker

Solar flares are massive bursts of energy that are characterized by brightening observed on the Sun. They are the largest explosions in our solar system and can emit energy across the entire electromagnetic spectrum!

This is an image of a flare occurring on the Sun, as viewed by the Solar Dynamics Observatory (SDO). SDO is a spacecraft that looks at the sun in a variety of wavelengths and temperatures to help scientists see and study different solar events. For example, this wavelength,131 angstroms, allows the brightening associated with flares to be extremely visible. Follow the link below to view a NASA video of this flare seen in multiple wavelengths:

http://svs.gsfc.nasa.gov/vis/a010000/a012200/a012224/APPLE_TV_12224_4.17.16.flare_appletv_subtitles.m4v   




Solar flares are classified in units of X-ray flux, which describes the amount of energy each flare emits over a given area. A C-class flare has a flux value with a magnitude of 10e-6 W/m^2, M-class 10e-5 W/m^2, and X-class 10e-4 W/m^2. For comparison, the energy released by a flare can be 10 million times greater than the energy released in a volcanic explosion!
(See http://hesperia.gsfc.nasa.gov/sftheory/flare.htm for more details.)


Above is a graph that allows us to measure flare intensity using data from the Geostationary Operational Environmental Satellite (GOES) spacecraft. The vertical axis is X-ray flux and the horizontal axis is time (Universal Time or greenwich mean time, the time zone used as the official scientific time). Displayed in the top right-hand corner is the date, time, and X-ray flux value corresponding to wherever one moves their cursor along the graph. Shown here is the peak time and flux value of a flare that occurred on August 7. The maximum X-ray flux value of this flare was 1.37e-5 W/m^2, which we classify as an M1.3 flare.
This data can be accessed by going to iswa.gsfc.nasa.gov and selecting “GOES Primary X-ray flux Timeline” under the eleventh tab in the magnetosphere section. 

Flares are very important to monitor and understand because they can cause radio blackouts and are associated with solar energetic particles (SEPs), which can damage spacecraft electronics and pose a threat to astronaut safety. Flares emit radiation that travels at the speed of light and SEPs travel at relativistic speeds of up to 80% the speed of light. This means that by the time we see a flare the radiation is already here and particles may be well on their way. This is why flare forecasting (trying to predict flares before they occur to provide advanced notice) is an important and ongoing scientific pursuit. 

Why BARREL Cares
By Alexa Halford

One of the very cool things about BARREL is that with only one primary science experiment we can see and study events not just in the Earth’s magnetosphere, but also on the Sun. When you have an explosive event such as a flare on the Sun, X-rays are produced. Some of these X-rays are scattered in all directions. As long as BARREL is in the line of sight, or in other words, in sunlight, we can capture the X-rays and study various aspects of the flare. Very few instruments have previously looked in the energy range that we look at, and thus we can add to the science knowledge of this part of the flare process.
We also care about documenting when BARREL is seeing X-rays associated with a solar flare so that we don’t mistakenly try to associate them with geomagnetic activity. One could say that the X-rays from the flare are a contamination of our data since we’re most interested in X-rays produced by radiation belt electrons in our atmosphere. I like to think of it not as contamination but a wonderful surprise. With this we get to study yet another field and do so much more research than we ever hoped for. Who would have thought (and probably lots of people did) that this small little set of balloons would be able to study not just the Earth’s radiation belt, not just solar energetic particles, but also help us understand the flare process often associated with the start of some of the larger space weather events! It’s just so cool! One instrument, relatively cheap balloons, and so much science! Who couldn’t love them!
Do you have any questions about flares? Want to learn more about what other space phenomenon flares can cause or what causes a flare in the first place? Feel free to ask your questions by commenting below! 













Special thanks to Dustin Mayfield-Jones!


Friday, August 12, 2016

SPEDAS Webinar!

This announcement just came out in the GEM Messenger. I'm re-posting it here as it's incredibly important if you are in the space physics community and use IDL (a programing language that many space physicist use to process, analyze and visualize data).

SPEDAS is a set of programs, functions, and procedures packaged together that are often used by the community. This project got it's start from the THEMIS project, and although I don't know the whole story, someone once told me that they figured we shouldn't keep re-invinting the wheel so why not share the programs often needed to process and display the data. Anyway, this program sharing project from THEMIS has grown and now includes many current missions, including BARREL.

Over the past umpteen years, THEMIS has held workshops at conferences to share how to use their software. This has been great, but always sort of geared for the beginner. I believe these new webinars will be for both beginners as well as starting to dive into the more advanced bits.

Anyway, if you are interested in learning more about SPEDAS, see the advert below.

Dear Space Physics community:

The Space Physics Environment Data Analysis Software (SPEDAS) development team would like to invite you to participate in two Webex presentations we'll be holding later this month.

On Wednesday August 24, at 10am Pacific time, we'll be hosting a tutorial, live demo, and Q & A session on the SPEDAS software package and its capabilities. For more information on SPEDAS please look at: http://spedas.org  and http://spedas.org/wiki

On Wednesday August 31 at 10am Pacific, we'll be hosting another session focusing on using SPEDAS to analyze MMS data. This MMS session will assume some familiarity with SPEDAS, so those who haven't used SPEDAS before might want to consider participating in both sessions. For more information on that software please see: http://spedas.org/wiki/index.php?title=MMS

If there are any particular questions or topics of general interest that you'd like to see covered in either session, please send your suggestions to Jim Lewis, jwl@ssl.berkeley.edu, and we'll try to work them in.

See below for agendas and Webex connection info.

Jim Lewis, Eric Grimes, Vassilis Angelopoulos and the SPEDAS team

==========
SPEDAS Session:  SPEDAS general tutorial and live demo

Webex details:
URL: https://uclaigpp.webex.com/uclaigpp

Time: August 24 @10AM Pacific Daylight Time (scheduled for 2hrs) Meeting name = SPEDAS webinar Password = goSP3D@S Phone to use: 1-888-921-8686 Conference ID/pass = 3107947090 and press # International callers dial: 001-678-259-1049

Tentative agenda:
* SPEDAS overview and general concepts:  Missions supported, local and remote data repositories, load routines, data analysis and manipulation routines, tplot variables, plotting data, GUI capabilities
* Simple examples of using the command line to load data.
* Examples of how to access or modify the underlying data and metadata for tplot variables
* Plotting data with tplot (both line plots and spectrograms); changing tplot options
* Command line data manipulation routines: coordinate transformations, support data, data manipulation, use of the 'calc' routine to operate directly on tplot variables, crib sheets
* How to start the SPEDAS GUI;  how to import and plot existing tplot variables
* Loading data via the SPEDAS GUI: missions with SPEDAS plugins can be loaded via "Load Data" panel, other missions available via generic "Load Data from CDAWeb" panel.
* Plotting in the SPEDAS GUI;  how to change GUI plot options
* Data processing and analysis in the GUI: Data Analysis panel, summary plots, ISEE 3D tool, 'Calculate' panel
* Exporting GUI plots to postscript files for further editing or inclusion in papers.

==========
MMS Plug-ins Session:  Processing MMS data with SPEDAS

Time: August 31, 10am-12pm Pacific Daylight Time
URL: https://uclaigpp.webex.com/uclaigpp
Meeting name = MMS Plug-ins webinar
Password = R3c0nnect!
Phone to use: 1-888-921-8686
Conference ID/pass = 3107947090 and press # International callers dial: 001-678-259-1049

Tentative agenda:
1) Introduction to FPI, HPCA load routines, standard keywords
2) Loading and Plotting the Particle Data
3) Spectra from the Particle Distributions
4) Particle Slices (2D/3D slices)
5) Questions

Tuesday, August 9, 2016

BARREL Daily update Aug. 9th 2016

Hej och god morgon (Hi and good morning), 

Update Summary

Important news about MMS. MMS has extended their burst collection region to include that of the BARREL locations. However, this also includes everything at higher L-values as well I believe. If you have say a magnetometer array, or riometer or a satellite that has seen something interesting in this region please contact them (Allison Jaynes or Drew Turner) within ~24 hours so that they can gather the data. 

Although we haven't yet had a CME, here's a fantastic tool to look at predicted arrival times. Different research groups will submit their modeled runs and predictions and then after the event has arrived (or missed us) a scoreboard is created to see which models captured which aspects of the solar event. http://kauai.ccmc.gsfc.nasa.gov/CMEscoreboard/ . (see below, but this may be very useful for the coming week, fingers crossed) These research models serve two purposes. 1st) as they are shown to be more and more accurate they can be turned into forecasting tools that NOAA and others use. 2nd) It helps us determine what physics we've got right, what we're missing, and how different modeling techniques affect the results and which ones are better for different processes ect. 

The stratospheric winds are  currently still very fast and westward which gives estimate flight times of only 1-3 hours if we were to launch tomorrow.  So, we are NOT going to attempt to launch tomorrow.  

The good news is that the upper level wind predictions for a few days from now show that it is starting to change. So, we may soon be are entering turnaround in the next couple of days which would give us a first possible launch Saturday evening (Aug 14) in order to be up at float altitude for the conjunction with Van Allen Probes early in the morning on Aug. 15th. 

In talks with the CCMC crew, it sounds like there is likely going to be an active region which has the possibility of producing Earthward directed CME's coming around the Earthward side of the disk. If this region were to explode and produce such a CME, it would likely hit us in about a weeks time, so fingers crossed that we get some great space weather in time for the Sunday conjunction

News from Kiruna

Next possible launch date - Evening of Aug. 14th for the early morning conjunction on Aug. 15th

Payloads up:
none
Payloads coming/which came down:
none

News from Van Allen Probes:
Summary
The lapping event is happening I think tomorrow. (this is when the two spacecraft come very close together. Interesting science often comes out of these events. Specifically, we can see if the waves or particle populations observed at the spacecraft are the same or different. This allows us to determine the scale size, or how large the different regions are.)
News from MMS: 
MMS team needs to know within 24 hours if you would like them to download data. E-mail Drew Turner or Allison Jaynes if you would like them to collect data in a specific region/time for conjunction studies.  

Space Weather  from Spaceweather.com, SWPC.noaa.gov,  and Kyoto (possibly others as well)
May be an EMIC wave around noon but it's unclear if it's band limited or just part of the broad band waves. 

(EMIC waves are a type of wave that ends up affecting how quickly relativistic, or very high energy, electrons are lost into the Earth's upper atmosphere. This lost population of electrons produces X-rays which can be observed by the BARREL instrumentation as well as creates changes in the upper atmospheric chemistry.)

EMIC waves observed around noon at Kilpisjarvi, IVALO, and maybe a few others but they become incredibly faint. 

Just a reminder Riometers are not my area of expertise, but it does look like there may have been precipitation from around 15 UT - 23 UT yesterday. 

NOAA GOES Electron Flux:
Some activity but fairly nominal levels. 

NOAA GOES Proton Flux:
nominal levels.

ACE Solar wind speed: 
Vsw =  617.3 km/s

ACE Solar proton density:
density =  1.8 protons/cm^3

(High solar wind speeds, when combined with high densities can compress the Earth's magnetosphere and generate waves and ultimately loss of radiation belt particles to the Earth's atmosphere as well as loosing some of the radiation belt particles back out to space. When you then combine this with a strong southward Bz component (see below) you often get geomagnetic storms. When you have geomagnetic storms you often get aurora. The stronger the storm the further equator ward you are likely to see the aurora!) 

Sunspot number from SDO/HMI: 
91 and Sunspot AR2571 has a beta-gamma complexity which means that there is at a slightly higher chance for an M-class solar flare. Currently it looks like if we were so lucky for it to produce a CME, it may be Earth directed. There are a few more larger sunspot regions which are coming around the disk and may produce Earth directed CMEs in a few days giving a potential arrival time of about 1 week from now. This is all speculative at the moment but stay tuned! 

NOAA GOES Flare activity:
6-hr max C2 
24 hr max C8

NOAA/SWPC Kp:
kp =   3 with a 24 hour max of kp = 4

ACE SW magnetic field:
Bz = 4.3 nT South
Btotal =  5.6 nT

ESA/NASA/SOHO Coronal hole news
The high speed stream has reached the Earth and the solar wind velocity is expected to stay high until about August 12th according to the WSA-ENLIL models housed at SWP NOAA. However, if Bz continues to fluctuate we may not expect a geomagnetic storm associated with the HSS. Hopefully though we'll get some nice substorm activity. 

Realtime Kyoto AE:
Possibly substorm around 4:00UT and 9:30 UT today. 

Realtime Kyoto Dst:
Very quiet. 

Min favoritämne i skolan är matte
My favorite subject in school is math. 

And because today's word is math, and we all love math, a few more 

enkel matematik
simple math

matematiskt problem
mathematics problem

Svara på matematiktalet
Answer the math problem

Hej då och god kväll från Kiruna (Good bye and good evening from Kiruna), 

Saturday, August 6, 2016

Introductions: Arol Johnson

Today we introduce Arlo Johnson. Welcome to the team Arlo! 



Arlo Johnson is a graduate student at Montana State University working with Dr. John Sample. He got his bachelor’s degree in physics at the University of Montana in 2010, and his master’s degree at Montana State in 2012. Arlo began his physics studies in solid state materials science, but outside of school he was always thinking and reading about space. Because of this he switched his focus to space science when he became involved in the FIREBIRD satellite project in the fall of 2015, and joined the BARREL team last winter. His research is focused on combining the observations of these two projects. Space has always fascinated Arlo, and becoming a space scientist is a childhood dream come true.

Friday, August 5, 2016

Introductions: Daniel Lein

Today we introduce Daniel Lein. Welcome to the team Daniel. 




Daniel Lein is a sophomore in Engineering Sciences with a focus on Electrical Engineering at Dartmouth College. He has been interested in aerospace, especially rocketry, for as long as he can remember, and he was introduced to the BARREL project and space physics by Prof. Robyn Millan, who was his physics professor for two terms. He joined the BARREL team this past spring, initially just to help out with the preparations for the 2016 campaign in Kiruna. As he became more interested in space physics and balloon experiments, he decided to join the team for part of the campaign in Sweden, and he hopes to continue work in the field of space physics by examining and analyzing data collected from this and previous campaigns. When he’s not working, Daniel enjoys alpine ski racing, SCUBA Diving, reading, and watching American football. After his time at Dartmouth, he hopes to continue on to graduate school and work in the aerospace industry.

Thursday, August 4, 2016

Introductions: Michael Greer

Today we introduce Michael Greer. He's currently a mechanical engineering student at the University of Houston. He's currently a team member of the USIP II VLD IRIG-B instrument team as well as the software team leader. 

Michael Greer is an undergraduate engineering student studying at the University of Houston. From a young age, he was always interested in the space sciences and decided to become an engineer to contribute to the field of astronautics. During his junior year at the University of Houston, Michael became involved with the newly reformed UH chapter of the American Institute of Aeronautics and Astronautics (AIAA). As a member of the AIAA, he joined the chapter’s rocket design team and eventually went on to become the Vice President of the chapter. Through the AIAA, Michael learned about USIP and applied to join it. USIP offered an excellent opportunity to learn about the scientific research process and to be exposed to NASA related work. After joining the VLF/IRIG-B team in USIP, Michael focused on the engineering challenge of designing a digital circuit that generates an analog time code signal using the IRIG-B protocol.


In the future, Michael hopes to continue doing space related engineering and to eventually work with NASA or other aerospace organizations as a propulsion engineer. 

You can follow Michael throughout the campaign on twitter @MichaelLGreer 

Wednesday, August 3, 2016

Introductions: Sapna Shekhar

Today we introduce one of the fantastic laddies from the BARREL team, Sapna. I just want to take this moment to point out that at Dartmouth, the majority of the BARREL team is comprised of women. It's a rare thing to find in science and is really kind of cool to see! Actually the group of researchers in space physics at Dartmouth has always seemed to have quiet a few women; Prof. Robyn Millan (our PI), Prof. Kristina Lynch, Prof. Mary Hudson, and of course all their post docs, grad students, and undergrads, all great women researchers to aspire to. But back to Sapna... 


Sapna Shekhar is a Graduate student at Dartmouth College working for Prof. Robyn Millan. Here research mostly revolves around comparison of BARREL data with Low Earth orbiting satellites. She did her undergraduate work at Delhi University, master’s work at Indian Institute of Technology Madras in India and joined BARREL in the summer of 2012. She got interested in space physics through getting involved in a student satellite initiative at Indian Institute of Technology Madras called IITMSAT. She has also been involved in a short term project in Machine learning in space physics during the summer of 2015 with a software company. She is deeply interested in making a career in software support for space missions in future. You can find out more about her here http://physics.dartmouth.edu/people/sapna-shekhar

Tuesday, August 2, 2016

Introductions Christian Currier Behrend

Today we introduce christian Currier Behrend. Welcome to the team!

Christian Behrend is an undergraduate at the University of Houston  and the lead of the VLF/IRIG-B experiment and the thermal systems teams. After realizing his interests in aerospace, he decided to join the USIP-II to gain hands on experience developing scientific instrumentation. He became the secretary of the AIAA-UH chapter with the hopes of fostering student interest in aerospace and aeronautics. While working with the AIAA-UH, he also developed a curiosity in astronomy and has joined a collaborative effort to repair the university’s observatory. Throughout his time in the USIP-II he discovered his passion for the research environment. By studying and fabricating a VLF receiver, he hopes to learn more about project management, using laboratory equipment, understanding experimental methods, and electrical engineering.

You can follow Christian on twitter at @cbehrend0  and we look forward to hearing from you during the campaign!

BARREL Status Report #1 August 2, 2016

August 2, 2016

​Hello from Esrange in Sweden! The first installment of the BARREL team arrived Monday afternoon. Today we had our safety briefing and met with SSC personnel to review plans and make sure everything is in order. On the negative side, the bulk of our cargo got delayed by customs. We finally got it cleared last Thursday, but it’s still making it’s way from Stockholm to us. We know where it is and we’re told it will arrive tomorrow, so we should still be on schedule for a flight compatibility test on Friday. On the positive side, I guess we have a little time to rest after the long trip!

Schedule​:
Wed-Thurs: get first two payloads checked out and configured for flight
Friday: FCT with SSC equipment
Monday: Launch dry run and NASA Flight Readiness Review 11am eastern (by teleconference)

From now through the end of August, I will be sending status updates on most days. If anyone does NOT want to be on this email list, please let me know and I will remove you. If there is anyone who needs to be added, please let me know that also.

Here’s to a successful final BARREL campaign! 

Robyn

P.S. Our cheat sheet was still hanging up in our "office". Useful bits of information! 

Monday, August 1, 2016

Introductions: Samar Mathur

Before we start with today's introduction, quick update. Some of the team has made it to Sweden WooHoo! Also We have FIREBIRD Google Earth files in the dropbox for the team. Let the conjunction finding commence.

Today we introduce Samar Mathur. Welcome to the team!



Samar Mathur is a junior in mechanical engineering at the University of Houston. He was always interested in aerospace and astronomy, and that led him to join the AIAA and become the leader of the club’s Rocket Team. Dr. Bering was the advisor of the club, and through him Samar learnt about USIP. USIP has given him the opportunity to learn about subjects and fields that he would have never otherwise had in his schooling as well as the opportunities to have an active part in a research project. Soon after, Samar ran for president of the AIAA UH branch and managed to secure the position. Both organizations have been irreplaceable learning experiences. Outside of school, Samar loves watching and playing sports, reading, and playing video games. He hopes to work in the aerospace engineering industry in the future.

You can follow Samar on Twitter @mrmatuu . We look forward to hearing more from you during the campaign!

Friday, July 29, 2016

Introductions: Brett Velasquez

Today we start to meet the new team members who will be helping out in Sweden. Welcome all!





Brett Velasquez is the current team leader of the USIP-II groups tomography and TEC (total electron content) instrument. He is a physics major at the University of Houston and plant to dual major in electrical engineering. USIP-II presented a great opportunity to obtain hands on experience both in the lab and in electrical engineering. To better himself he signed up for USIP-II and was accepted and became a team leader for the TEC and tomography experiments. USIP-II has given him a great opportunity to work with professionals, lab equipment, and various facets of hardware and software fabrication that that would not be taught in class. He has also learned leadership and teamwork skills such as managing schedules and project responsibilities. He hopes to apply these skills and experiences to acquire more positions in his future fields of work.

Thursday, July 28, 2016

Introductions: Arian Ehteshami

Today we'll meet another of the Kiruna crew, Arian Ehteshami. Arian helped out in Kiruna last year as well with launching the balloons as well as helping out with two piggy back experiments from the University of Houston. He was the lead on the TEC experiment and helped out with the VLF experiment which flew twice last year.



Recently Arian graduated with a bachelor's of science in biomedical engineering-bielectrical concentration from the University of Houston. Currently he is a Mentor of USIP-II. Previous Lead on TEC experiment, member of Astrobiology experiment, and previous lead on VLF data processing tasks. His focus has primarily been in bioelectrical engineering which is composed of medical devices, optimizing biosignal filtration, brain machine interfaces and learning, biomarker detection. and biometrics. However, on the side Arian always had a strong passion for the space environment. The symbiotic relationship between humans and space habitats is a problem yet to be solved. By joining the USIP team back in 2014, Arian was able to understand many of the basics of atmospheric and plasma phenomenon’s and how to quantify them. USIP has changed his life for the better both academically and socially. It motivated him to help bring back the UH AIAA-student chapter after a eight year dormitory period, awarding him the AIAA award for student officer of the year. Currently, he is the CoFounder of a startup called OcuRhythm which was accepted into the UH Red Labs and Rice University OwlSpark startup accelerator program. He and his team are producing glasses that will help users shift their circadian rhythm by means of light therapy. These glasses have a learning mechanism that controls the lights based on the user’s own lifestyle. The root of this problem arose when Dr. Bering voiced the concern of astronauts and the state of sleep deprivation they experience. In the future, Arian hopes to be heavily involved with space medicine research that institutions such as NSBRI, Wyle, and NASA’s HRP are currently working on.


Welcome back Arian and we look forward to hearing from you during the campaign! You can follow Arian on twitter at @Aehtesha and the BARREL campaign at @keV_balloons

From Last year's campaign. @Aehtesha and @browncoat33 also known as Hamza.




Wednesday, July 27, 2016

Introductions: Edgar Andrew Bering III

This year we have a bunch of undergrads, and recent grads from the University of Houston helping out in Kiruna. They will also be taking on some of our twitter feed and posts. So we figured it might be a good idea to introduce them and say "Hi" and "welcome to the team". 

Today we introduce the ring leader :) Edgar (Gar for short) Andrew Bering the third, and yes that is his full actual name. He's a professor of physics and electrical and computer engineering at the University of Houston. He got a physics undergraduate degree from Harvard College in 1967 and his PhD in 1974 from University of California Berkeley. 





Dr. Bering joined University of Houston, in 1974, became an Assistant Professor in 1975, became a full professor in 1989 and received his present dual appointment in 1998. He has published 133 Refereed papers, 75 Technical Reports, 95 Invited Talks, and 364 other Abstracts. In 2000, he was a member of the VASIMR team that won the Rotary National Award for Space Achievement, Stellar Award, Team Category. In 2004, he received the AIAA Best Paper of the Year award in Plasmadynamics and Lasers. He has been involved in Education and Public Outreach since 1990. In 2005, he received a Special Service Award from AIAA for his work on the Mars Rover Model Competition outreach program. Thus his twitter handle @MarsRoverUH (and of course you can follow the BARREL campaign @keV_balloons). He is an Associate Fellow of the AIAA.

Dr. Bering created the annual Houston-wide UH Mars Rover model competition for budding engineers in grades 3-8 in 2002. From 2002 to 2005, this event experienced 40% per annum growth. As many as 720 students, 60+ teachers, 550 volunteers and 1000+ parents have attended these events. He has extensive experience conducting teacher training activities.  Dr. Bering has been active in several other youth oriented service activities, ranging from coaching baseball to tutoring neighborhood kids in physics. He was an Assistant Scoutmaster in BSA Troop 642. He has a son and a daughter, both now in their 20’s. Both of them majored in STEM subjects in college.

A mission like BARREL right up Gar's alley. Dr. Bering has participated in experiments to measure electron bremsstrahlung beneath auroras, electron bremsstrahlung accompanying both natural and triggered VLF events, auroral zone electric fields, plasmapause electric fields, electric fields at high altitude owing to thunderstorms, and the electromagnetic radiation spectrum of lightning at high altitude, VLF magnetic fields accompanying active experiments in the ionosphere, dc plasma properties in the ionosphere near pulsating aurora, electric fields near the magnetospheric cusp and atmospheric electric parameters at the South Pole. Dr. Bering is presently involved in the development of the Variable Specific Impulse Magnetoplasma Rocket (VASIMR) at the Ad Astra Rocket Company. He is also working on the analysis and interpretation of the data from his recent Antarctic balloon campaigns, emphasizing studies of the role of ULF waves in the transport, energization and precipitation of radiation belt particles. And he and a couple of students (one who we'll meet tomorrow) helped out with BARREL during last years campaign.

We're glad to have him back up in Sweden with us! And we're looking forward to hearing more from you during the campaign!



Monday, August 10, 2015

Weekend Flight Preparations

The BARREL team had an action-packed weekend of launch preparations and payload testing.

We set out four payloads over the course of beautiful Saturday and had them complete their comprehensive tests.


Greg sets out a Pelican case to support a fourth payload outside.

The payload we intend to fly on Monday (today!) is 2S, now renamed 3A as the first payload on the third campaign. 2S is special in that it carries its magnetometer on a long boom. All payloads in previous campaigns had this attachment, but this campaign is primarily keeping the magnetometers sealed within the payload box itself. Its backup payload is 2H, which has no such boom.

Sunday saw worse weather, but we successfully completed flight preparations by weighing the payloads/flight trains for 2S, 2H, and 1Z, an alternative back up.

Following tests on Sunday, we went out into Jukkasjärvi, the small town that houses Esrange.

A beautiful lake in Jukkasjärvi.


We drove through sunset on our way home — this time at 9:57 pm! We've been gaining eight minutes of darkness each day.


As of Monday morning, we have passed Esrange's Flight Compatibility Test and had our required NASA Flight Readiness Review. Monday afternoon we are go for launch of payload 2S/3A! Stay tuned for the post-launch update, including photos from the FCT and pre-launch preparations.

Kathryn

Wednesday, August 5, 2015

God eftermiddag från Sverige!

God eftermiddag från Sverige!
  
My name is Kathryn, an undergraduate at Dartmouth College, and I'll be your blogger for today.

Today we buttoned up another payload and are preparing for the Flight Readiness Test tomorrow.
 
Greg is hard at work testing payload 2H behind three almost-completed payloads.

Our big excitement from today was seeing a British group launch a payload on a balloon a bit larger than ours. It was inspiring to watch and gave us some extra energy for the day.

Unfortunately, rain squashed our enthusiasm. We attempted to create a 'tent fort' to protect payloads outside from the rain. Needless to say, it didn't work.


The remnants of our fort stand sadly in the rain.
Tomorrow we hope to have two payloads launch-ready running outside, using their final flight batteries and antennae to pass the last Comprehensive Test.

Yesterday's beautiful weather with two payloads — hopefully what we will see tomorrow!
We also had a huge surprise last night — JAXA, the Japan Aerospace Exploration Agency, is packing up their 5-year-long test and heading home... and left a ton of equipment! The extra tools, tarps, and electronics are helpful, and we were all very excited about the barely-used camping equipment left behind for poor-wind days. Running on low sleep, Nick and I had a little too much fun with their painter suits, telescope domes, rubber boots, and rainbow tape.


That's all for now! Hopefully it stops raining soon...
Tills imorgon!

Kathryn