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The original message has been attached to this so you can view it or label similar future email. If you have any questions, see @@CONTACT_ADDRESS@@ for details. Content preview: Hi Stefan, all, as you say, the fact that the enhancement is also visible on 1550Hz makes it unlikely that the 1650 Hz boost is really due to an ionospheric resonance. This is corroberated by a plot [...] Content analysis details: (-0.2 points, 5.0 required) pts rule name description ---- ---------------------- -------------------------------------------------- -0.0 RCVD_IN_DNSWL_NONE RBL: Sender listed at http://www.dnswl.org/, no trust [74.6.129.123 listed in list.dnswl.org] -0.0 RCVD_IN_MSPIKE_H2 RBL: Average reputation (+2) [74.6.129.123 listed in wl.mailspike.net] -0.0 SPF_PASS SPF: sender matches SPF record 0.0 FREEMAIL_FROM Sender email is commonly abused enduser mail provider (markusvester[at]aol.com) 0.0 HTML_MESSAGE BODY: HTML included in message -0.1 DKIM_VALID_EF Message has a valid DKIM or DK signature from envelope-from domain -0.1 DKIM_VALID Message has at least one valid DKIM or DK signature 0.1 DKIM_SIGNED Message has a DKIM or DK signature, not necessarily valid -0.1 DKIM_VALID_AU Message has a valid DKIM or DK signature from author's domain X-Scan-Signature: 85005a03b266d56f32ff55c21b696a6e Subject: Re: ULF/VLF: Tweek resonances - also on 50 Hz harmonics? Content-Type: multipart/mixed; boundary="----=_Part_1378085_702044435.1560590060310" X-Spam-Checker-Version: SpamAssassin 2.63 (2004-01-11) on post.thorcom.com X-Spam-Level: *** X-Spam-Status: No, hits=3.5 required=5.0 tests=FORGED_MUA_MOZILLA,HTML_30_40, HTML_MESSAGE autolearn=no version=2.63 X-SA-Exim-Scanned: Yes Sender: owner-rsgb_lf_group@blacksheep.org Precedence: bulk Reply-To: rsgb_lf_group@blacksheep.org X-Listname: rsgb_lf_group X-SA-Exim-Rcpt-To: rs_out_1@blacksheep.org X-SA-Exim-Scanned: No; SAEximRunCond expanded to false ------=_Part_1378085_702044435.1560590060310 Content-Type: multipart/alternative; boundary="----=_Part_1378084_1327649284.1560590060307" ------=_Part_1378084_1327649284.1560590060307 Content-Type: text/plain; charset=UTF-8 Content-Transfer-Encoding: quoted-printable Hi Stefan, all, as you say, the fact that the enhancement is also visible on 1550Hz makes i= t=C2=A0unlikely that the 1650 Hz boost is really due to an ionospheric reso= nance. This is corroberated by a plot=C2=A0showing both lines through sever= al nights:https://vlf.u01.de/VLFgrabber/vlf2.png So we still don't know why the 50 Hz harmonics are stronger at night. but p= robably not due to a resonant reflection. Another counter-argument is an observation from 2017 where we used colour-D= F mode to plot the phase between the twoo orthogonal loops (attached). Due = to Earth's magnetic field, in the northern hemisphere tweek resonances come= down with pure left-hand circular polarization (magnetic field rotating ea= st-north-west-south). Due to the 90=C2=B0 phase shift the resonances show u= p in deep red colour. However the 1650 Hz mains harmonic appeared yellow-gr= een, implying linear polarisation with 180=C2=B0 phase between loops. Regarding the best frequency for a tweek-mode experiment: It looks like the= re is some variation of ionospheric height from night to night. In some nig= hts the resonance maximum goes down all the way to 1600 Hz, in others it ra= rely reaches 1670 Hz. Also there is some upward shift with distance to the = source. One might speculate that cloud-to-ground lightnings (like an E-fiel= d-antrenna) emit less energy upwards, and would tend to come in from furthe= r away, with moderate elevation and less time delay between consecutive hop= s.=C2=A0Note that the resonance usually has a sharper cutoff on the low-fre= quency side, so that transmitting a few Hz too low may be worse than too hi= gh. Best 73,Markus (DF6NM) -----Urspr=C3=BCngliche Mitteilung----- Von: DK7FC An: rsgb_lf_group Verschickt: Di, 11. Jun. 2019 17:56 Betreff: Re: ULF/VLF: Tweek resonances - also on 50 Hz harmonics? Hi Markus, Thanks for the images. Interesting!=20 I checked the spectrograms (i've produced another one from last night)and f= ound that my hum filter was actually NOT enabled, so i do not seea 50 Hz ha= rmonics at 1550 or 1650 Hz, at least not strong enough tomeasure it's S/N w= ithout sferic blanking. Strange... Also the decribed effect seems to be present at 1550 Hz too, which isunexpe= cted.=20 Could it be the actual spectrum of the current in the HV power grid? Itcoul= d be answered by using a stereo soundcard, one channel showing theULF H fie= ld, the other one coupled to a mains transformer (using aresistive divider,= dividing down to say 50 mV rms). >From the observation from last night, which was dominated bycloud-earth lig= htnings, not by cloud-cloud lightnings, it looks like tocloud-cloud lightni= ngs produce a much narrower maximum near 1640 Hzwhereas cloud-earth lightni= ngs have their maximum at higherfrequencies, like 1670 Hz, and this maximum= is much less narrow. So foramateur tests using H field antennas on both si= des, 1640 Hz is the bestchoice i think. 73, Stefan Am 11.06.2019 17:30, schrieb Markus Vester: HiStefan,=20 lookingthrough stored screenshots from the DL0AO grabber, I noticed afasc= inating detail: During night hours where resonant spherics appeararound 167= 0 Hz, mains interference on 1650 and 1700 Hz seems to becomesignificantly s= tronger as well. This enhancement is also present duringquiet nights with l= ow QRN levels. Here's a collection of some recentspectrograms:=20 http://df6nm.bplaced.net/dl0ao/files/dl0ao_vlf2_1650Hz_all.jpg =20 Wehad always assumed that 50 Hz harmonics were a local effect, due to the= earth antennas picking up stray ground currents from the neighbourhood.Howe= ver the nighttime enhancement strongly suggests that they may=C2=A0infact b= e emitted by more distant sources, like high-voltage transmissionlines, rad= iating upwards to the ionosphere.=C2=A0 =20 Iwonder if others might be seeing similar effects on their loop antennas?= =20 Best73, Markus(DF6NM)=20 =20 -----Urspr=C3=BCngliche Mitteilung----- Von: DK7FC An: rsgb_lf_group Verschickt: So, 9. Jun. 2019 11:14 Betreff: ULF/VLF: Tweak resonance measurements =20 Hi ULF/VLF friends, =20 Last wednesday there was a heavy local thunderstorm with cloud-earthbut als= o with cloud-cloud lightnings. The latter produce well visibletweak resonan= ce patterns in spectrograms taken from the H field. Thefundamental frequenc= y is at a wavelength where the distance betweenground and D-layer is just L= ambda/2, i.e. near 1650 Hz. But they alsoappear at integer multiples. Such = peaks can reach in the order of 20 dBabove the level besides the resonance = frequency. A reprocessed spectrogram from that night shows such tweaks for a timeof ab= out 6 hours. http://www.iup.uni-heidelberg.de/schaefer_vlf/ULF/Tweaks_on_NS= -Loop.png They started in daylight, where the D layer refelction height is lower.Then= the night set in and the resonance frequency went down to about 1638Hz, wh= ich becomes visible in this spectrogram and plot:=20 http://www.iup.uni-heidelberg.de/schaefer_vlf/ULF/Tweak-resonances_detail1= .png =20 Again it is a good result done by vlfrx-tools and SpectrumLab. SpecLabs'lon= g term average graph' (red colour in the spectrum) was set todifferent half= time values, 10 minutes was one of the best values. Theplot shows the freq= uency of the highest peak of that graph.Unfortunately the time stamps are n= ot correct, but they are correct forthe spectrogram. It looks like the frequency is reasonably stable=C2=A0 from 21 UTC onwards. Sometimes that frequency is jumping by a few Hz. I guess that isbecause the= location of the lightnings is varying and this will have aneffect. However= the peak is not to small, so it could work to make useof that resonator fo= r amateur transmissions? =20 Also the 2nd resonance at 3305 Hz is quite expressed. The antennaefficiency= at that frequency is much higher so maybe it is a good ideato start in tha= t range. =20 With some luck, there will be a time-stamped and streamable VLF stationat D= L0AO soon. Signals from DL0AO and DK7FC could be joined invlfrx-tools and t= hen analysed side by side in SpecLab. With theplotter, the resonance freque= ncys from both locations could be plottedsynchronuously, which will give a = better impression of the dependencyof the peak resonance from the location. =20 It is the ideal time for analysing such resonances from lightnings,however = not for transmitting amateur signals ;-)=20 =20 73, Stefan =20 =20 =20 ------=_Part_1378084_1327649284.1560590060307 Content-Type: text/html; charset=UTF-8 Content-Transfer-Encoding: quoted-printable
Hi Stefan, all,
=
as you say, the fa= ct that the enhancement is also visible on 1550Hz makes it unlikely th= at the 1650 Hz boost is really due to an ionospheric resonance. This is cor= roberated by a plot showing both lines through several nights:
<= div style=3D"font-family: arial, helvetica, sans-serif; font-size: 10pt; co= lor: black;" data-mce-style=3D"font-family: arial, helvetica, sans-serif; f= ont-size: 10pt; color: black;">https://vlf.u01.de= /VLFgrabber/vlf2.png
So we still don't know why the = 50 Hz harmonics are stronger at night. but probably not due to a resonant r= eflection.

Another counter-argument is an observation from 2017 whe= re we used colour-DF mode to plot the phase between the twoo orthogonal loo= ps (attached). Due to Earth's magnetic field, in the northern hemisphere tw= eek resonances come down with pure left-hand circular polarization (magneti= c field rotating east-north-west-south). Due to the 90=C2=B0 phase shift th= e resonances show up in deep red colour. However the 1650 Hz mains harmonic= appeared yellow-green, implying linear polarisation with 180=C2=B0 phase b= etween loops.

Regarding the best freq= uency for a tweek-mode experiment: It looks like there is some variation of= ionospheric height from night to night. In some nights the resonance maxim= um goes down all the way to 1600 Hz, in others it rarely reaches 1670 Hz. A= lso there is some upward shift with distance to the source. One might specu= late that cloud-to-ground lightnings (like an E-field-antrenna) emit less e= nergy upwards, and would tend to come in from further away, with moderate e= levation and less time delay between consecutive hops. Note that the r= esonance usually has a sharper cutoff on the low-frequency side, so that tr= ansmitting a few Hz too low may be worse than too high.

Best 73,
<= div style=3D"font-family: arial, helvetica, sans-serif; font-size: 10pt; co= lor: black;" data-mce-style=3D"font-family: arial, helvetica, sans-serif; f= ont-size: 10pt; color: black;">Markus (DF6NM)


-----Urspr=C3=BCngliche Mitteilun= g-----
Von: DK7FC <selberdenken@posteo.de>
An: rsgb_lf_group <rsgb_lf_group@blacksheep.org>
Verschickt: Di, 11. Jun. 2019 17:56
Betreff: Re= : ULF/VLF: Tweek resonances - also on 50 Hz harmonics?
Hi Markus,

Thanks for the images. Interesting!
I checked the spectrograms (i've produced another one from last night) and found that my hum filter was actually NOT enabled, so i do not see a 50 Hz harmonics at 1550 or 1650 Hz, at least not strong enough to measure it's S/N without sferic blanking. Strange...
Also the decribed effect seems to be present at 1550 Hz too, which is unexpected.

Could it be the actual spectrum of the current in the HV power grid? It could be answered by using a stereo soundcard, one channel showing the ULF H field, the other one coupled to a mains transformer (using a resistive divider, dividing down to say 50 mV rms).

>From the observation from last night, which was dominated by cloud-earth lightnings, not by cloud-cloud lightnings, it looks like to cloud-cloud lightnings produce a much narrower maximum near 1640 Hz whereas cloud-earth lightnings have their maximum at higher frequencies, like 1670 Hz, and this maximum is much less narrow. So for amateur tests using H field antennas on both sides, 1640 Hz is the best choice i think.

73, Stefan



Am 11.06.2019 17:30, schrieb Markus Vester:
Hi Stefan,

looking through stored screenshots from the DL0AO grabber, I noticed a fascinating detail: During night hours where resonant spherics appear around 1670 Hz, mains interference on 1650 and 1700 Hz seems to become significantly stronger as well. This enhancement is also present during quiet nights with low QRN levels. Here's a collection of some recent spectrograms:


We had always assumed that 50 Hz harmonics were a local effect, due to the earth antennas picking up stray ground currents from the neighbourhood. However the nighttime enhancement strongly suggests that they may in fact be emitted by more distant sources, like high-voltage transmission lines, radiating upwards to the ionosphere. 

I wonder if others might be seeing similar effects on their loop antennas?

Best 73,
Markus (DF6NM)


-----Urspr=C3=BCngliche Mitteilung-----
Von: DK7FC <selberdenken@posteo.de><= br clear=3D"none"> An: rsgb_lf_group <rsgb_lf_grou= p@blacksheep.org>
Verschickt: So, 9. Jun. 2019 11:14
Betreff: ULF/VLF: Tweak resonance measurements

Hi ULF/VLF friends,

Last wednesday there was a heavy local thunderstorm with cloud-earth but also with cloud-cloud lightnings. The latter produce well visible tweak resonance patterns in spectrograms taken from the H field. The fundamental frequency is at a wavelength where the distance between ground and D-layer is just Lambda/2, i.e. near 1650 Hz. But they also appear at integer multiples. Such peaks can reach in the order of 20 dB above the level besides the resonance frequency.
A reprocessed spectrogram from that night shows such tweaks for a time of about 6 hours. http://www.iup.uni-heidelberg.de/schaefer_vl= f/ULF/Tweaks_on_NS-Loop.png
They started in daylight, where the D layer refelction height is lower. Then the night set in and the resonance frequency went down to about 163= 8 Hz, which becomes visible in this spectrogram and plot:
http://www.iup.uni-heidelberg.de/scha= efer_vlf/ULF/Tweak-resonances_detail1.png

Again it is a good result done by vlfrx-tools and SpectrumLab. SpecLabs 'long term average graph' (red colour in the spectrum) was set to different half time values, 10 minutes was one of the best values. The plot shows the frequency of the highest peak of that graph. Unfortunately the time stamps are not correct, but they are correct for the spectrogram.
It looks like the frequency is reasonably stable  from 21 UTC onwards.=
Sometimes that frequency is jumping by a few Hz. I guess that is because the location of the lightnings is varying and this will have an effect. However the peak is not to small, so it could work to make use of that resonator for amateur transmissions?

Also the 2nd resonance at 3305 Hz is quite expressed. The antenna efficiency at that frequency is much higher so maybe it is a good idea to start in that range.

With some luck, there will be a time-stamped and streamable VLF station at DL0AO soon. Signals from DL0AO and DK7FC could be joined in vlfrx-tools and then analysed side by side in SpecLab. With the plotter, the resonance frequencys from both locations could be plotted synchronuously, which will give a better impression of the dependency of the peak resonance from the location.

It is the ideal time for analysing such resonances from lightnings, however not for transmitting amateur signals ;-)
=

73, Stefan



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