Return-Path: X-Spam-DCC: paranoid 1170; Body=1 Fuz1=1 Fuz2=1 X-Spam-Checker-Version: SpamAssassin 3.1.3 (2006-06-01) on lipkowski.org X-Spam-Level: X-Spam-Status: No, score=-1.3 required=5.0 tests=BAYES_00,DNS_FROM_AHBL_RHSBL, HTML_50_60,HTML_MESSAGE,NO_REAL_NAME autolearn=no version=3.1.3 Received: from post.thorcom.com (post.thorcom.com [195.171.43.25]) by paranoid.lipkowski.org (8.13.7/8.13.7) with ESMTP id t6K4tMuS002241 for ; Mon, 20 Jul 2015 06:55:22 +0200 Received: from majordom by post.thorcom.com with local (Exim 4.14) id 1ZH30c-0003xC-FJ for rs_out_1@blacksheep.org; Mon, 20 Jul 2015 05:48:58 +0100 Received: from [195.171.43.32] (helo=relay1.thorcom.net) by post.thorcom.com with esmtp (Exim 4.14) id 1ZH30b-0003x3-FQ for rsgb_lf_group@blacksheep.org; Mon, 20 Jul 2015 05:48:57 +0100 Received: from resqmta-ch2-03v.sys.comcast.net ([69.252.207.35]) by relay1.thorcom.net with esmtps (TLSv1.2:DHE-RSA-AES256-SHA:256) (Exim 4.85) (envelope-from ) id 1ZH30K-0007Ld-Ur for rsgb_lf_group@blacksheep.org; Mon, 20 Jul 2015 05:48:56 +0100 Received: from resomta-ch2-20v.sys.comcast.net ([69.252.207.116]) by resqmta-ch2-03v.sys.comcast.net with comcast id uUoJ1q0012XD5SV01UoJzw; Mon, 20 Jul 2015 04:48:18 +0000 Received: from Owner ([69.143.126.100]) by resomta-ch2-20v.sys.comcast.net with comcast id uUmH1q00K2A5djZ01UmJSv; Mon, 20 Jul 2015 04:46:18 +0000 X-DKIM-Result: Domain=comcast.net Result=Signature OK From: To: References: <3EEE0BD431264721BAD95B0598D0A459@White> <55AA13A5.5090300@posteo.de> In-Reply-To: Date: Mon, 20 Jul 2015 00:46:14 -0400 Message-ID: <015201d0c2a7$02cfbc80$086f3580$@comcast.net> MIME-Version: 1.0 X-Mailer: Microsoft Outlook 14.0 Thread-Index: AQGLKmdrt0GJLNYGGBIKD7IJL/kjsgJ/Oa9RAnLmv2meR2fwQA== Content-Language: en-us DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=comcast.net; s=q20140121; t=1437367698; bh=U/swQjoOJKmVxszkxGED8PJbKTghvAuL5PxKsvLgwj4=; h=Received:Received:From:To:Subject:Date:Message-ID:MIME-Version: Content-Type; b=RU6eKJbgSesTc269pJrHTpean60e6TPy7FHlCWizGhi7oo55PwUEBHnGi7CDjwqmH bFyJ3z288vmJCI5cHubDbZiKjGUhhk9n5s4LerHIGxmjAhwCKh291HBb8vZMXp15hQ LQDtvAeA4dFtK8xVwnzKrglpYPVoiRfet1Wau2aERdetpezarRvytbBbY1ug87p0Bh 4Tw5O4cEyNPZg81a8l07FQ3nROVQ/fxXVCj7fOBsMLYySho6FdSQA81qLN/KW4er8Y 3e5xvq11mRVYFArxsRdnXFGe1EnJEM70bDJ5f462es/9KjFIUtxqeEC7rrHydDAs7F raWqr2LCZE9Ww== Subject: RE: VLF: Tweek mode resonances Content-Type: multipart/mixed; boundary="----=_NextPart_000_0153_01D0C285.7BBFCA30" 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 X-Scanned-By: MIMEDefang 2.56 on 10.1.3.10 Status: O X-Status: X-Keywords: X-UID: 3670 This is a multipart message in MIME format. ------=_NextPart_000_0153_01D0C285.7BBFCA30 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0154_01D0C285.7BBFCA30" ------=_NextPart_001_0154_01D0C285.7BBFCA30 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Thank you Markus and Stefan, all quite fascinating. =20 Attached: image of roughness of ionosphere, illuminated by sprite plus ELVES. LWPC and FDTD do not account for roughness at the spatial scale shown in the attached image. =20 I would be happy to lend a Crown 4002 (rated 3200W @ 4 ohms L+R bridged) power amplifier (or two) for your prospective NVIS-resonance signal enhancement experiments. The Crown 4002 PA works well for resonant ULF = and VLF TX loops of the size that you mentioned.=20 =20 73, =20 Jim AA5BW =20 =20 From: owner-rsgb_lf_group@blacksheep.org [mailto:owner-rsgb_lf_group@blacksheep.org] On Behalf Of Markus Vester Sent: Saturday, July 18, 2015 9:20 AM To: rsgb_lf_group@blacksheep.org Subject: Re: VLF: Tweek mode resonances =20 Hi Stefan, LF, =20 we're not just playing around... I would rather consider this an = original scientific experiment, perhaps worth proposing as an research project in environmental physics ;-) =20 Frequency stability will not be much of an issue. Throughout the night, = the 5th order resonance moved around by two or three pixels, approximately = 100 Hz or twice its own width. So after having found the right frequency in = the first place, we could just let the transmitter sit on the exact QRG for = many hours without loosing much signal (even more so for 1.7 kHz). =20 Here are some back-of-the-envelope calculations for your institute = antenna, grounded at the other end: Assuming a loop area of around 2000 m^2, radiation resistance at 8.5 kHz would be 0.17 microohms. Given the cross section of your horizontal wire and the lightning protection system, you could perhaps run up to 100 A loop current (maybe too optimistic?), = which would give 1.7 mW radiated power - comparable to your first kite = experiments and surely enough to be received here easily even without any resonance enhancement. At 1.7 kHz, radiated power would be 625 times smaller (2.6 = uW) but probably still detectable under quiet conditions. Estimated = inductance would be around 110 uH or 5.9 j ohms at 8.5 kHz. =20 Depending on the quality of the grounding installation you will probably require some kilowatts drive power, and a suitable array of parallel = FKP's to cancel inductance. Alternatively, the company I work for produces = some cool fat MRI gradient power amplifiers, designed to deliver hundreds of = amps into inductive loads ;-) =20 On the receive side here, my biggest problem at low frequendcies is = railway interference - - this is one reason to start at higher frequency before going to 1.7 kHz. As the incident wave will be circularly polarized I = could try to rotate the receive loop to minimize local QRM. An interesting and favourable point is that your TX loop will be pointing north-south, = which will minimize "contamination" by direct groundwave to my direction. = However I do not know what the lateral extent of the resonance mode is, in other words how much enhancement we will still get at 180 km distance or 45=B0 elevation.=20 =20 Alternatively you could try to detect the tweek resonance using your = garden receiver, close enough to provide true vertical skywave incidence and = full cavity resonance enhancement. To be able to see the skywave, you will = only have to turn the receive loop carefully to null direct nearfield = inductive coupling. =20 One last point for dreamers: The counterrotating polarized component = which is not reflected will penetrate to the magnetosphere and may propagate = as a whistler wave. This could theoretically be received at the magnetic conjugate point, somewhere near Madagascar... =20 73, Markus (DF6NM) =20 From: DK7FC=20 Sent: Saturday, July 18, 2015 10:51 AM To: rsgb_lf_group@blacksheep.org=20 Subject: Re: VLF: Tweek mode resonances =20 Hello Markus, Thanks for your observation and article! :-) Most interesting. I can indeed confirm there were a number of cloud-cloud lightnings last night, up to 20 per minute were visible at times. My VLF loop in the garden is a vertical hula hup circle with 80 turns of wire inside. About 80 cm diameter. The receiver is the stereo soundcard, making the stream for MF+VLF. This observation reminds me (of course) on our idea to try to transmit = (clap our hands!) on about 2 kHz, the 150 km band :-) with a vertical loop and receive with a vertical loop! I should check if it is possible to reach = the roof of the other building, where my TX-antenna is mounted, to ground = the wire, i.e. to build a vertical loop! BTW, yesterday i officially requested a permission by the chief of the = local forest district to put some electronic equipment on a high tree in the forest!! Solar, modules, batteries, WLAN-antenna and a box including electronic equipment. The location is 3 km distant from the institute, = much more distant to man made noise sources then my garden and still in a = direct view to arrange the WLAN-link! No answer yet... The 5th mode near 8.5 kHz? Well, that resonance isn't really stable over = the frequency, so it is not possible to try modes like DFCW-6000 or even = 600. So the possible distances would be rather small. But woth to try playing, obviously :-) 73, Stefan Am 18.07.2015 06:50, schrieb Markus Vester:=20 Waking up early this morning, I took a look at Stefan's garden grabber = http://www.iup.uni-heidelberg.de/schaefer_vlf/DK7FC_remote_Grabber.html = and was greeted by a fascinating display on his VLF panel.=20 =20 The screenshot http://df6nm.bplaced.net/VLF/spherics/dk7fc_VLF_150718_1326.jpg shows a number of narrow tweek-mode resonances at multiples of 1.72 kHz. These = are obviously spherics from nearby lightnings, bouncing multiple times vertically between the ionosphere and ground (much the same as clapping = your hands between two parallel brick walls). The resonances are rather sharp indicating a high Q-number (ie. around 100 bounces until decay). They = are visible up to about 20 kHz, showing unusually small damping of vertical incidence reflections at these frequencies. There is a small variation = of resonance frequency over time, reflecting the variable height of the ionospheric ceiling. The fundamental resonance at 1.7 kHz is probably = not visible due to the frequency response of the loop and receiver. =20 A (somewhat late) screenshot from Blitzortung http://df6nm.bplaced.net/VLF/spherics/image_b_de_150718_0324.png shows = the last red crosses between Wiesbaden and Stuttgart passing over Heidelberg = at around 1:30. =20 The tweek resonances were received on the loop antenna in the garden but = not on the E-field antenna of the (somewhat whitened out) city grabber http://df6nm.bplaced.net/VLF/spherics/dk7fc_wideband_150718_0330.jpg. = This corroberates the notion of near vertical incidence and horizontal = H-field polarisation. According to the literature, tweek tails are usually = circular polarized as only one sense of rotation exhibits a high reflection coefficient. They are predominately excited by horizontal current = components in intra-cloud lightnings. =20 Of course the resonances will also be there in quiet nights without spherics, so they could probably be employed to enhance fieldstrength = (up to a factor of Q) for medium-range VLF communication experiments using = magnetic transmit and receive antennas. When Stefan still had his earth dipole we already discussed a 2 kHz tweek-mode experiment, which for various = reasons hasn't taken place yet. Now it looks like one could even employ the = fifth mode near 8.5 kHz... =20 All the best, Markus (DF6NM) =20 =20 =20 =20 ------=_NextPart_001_0154_01D0C285.7BBFCA30 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable

Thank you Markus and Stefan, all quite = fascinating.

 

Attached: image of roughness of ionosphere, illuminated by sprite = plus ELVES.   LWPC and FDTD do not account for roughness at = the spatial scale shown in the attached image.

 

I would be happy to lend a Crown 4002 (rated 3200W @ 4 ohms L+R = bridged) power amplifier (or two) for your prospective NVIS-resonance = signal enhancement experiments. The Crown 4002 PA works well for = resonant ULF and VLF TX loops of the size that you mentioned. =

 

73,

 

Jim AA5BW  

 

From: owner-rsgb_lf_group@blacksheep.org = [mailto:owner-rsgb_lf_group@blacksheep.org] On Behalf Of Markus = Vester
Sent: Saturday, July 18, 2015 9:20 AM
To: = rsgb_lf_group@blacksheep.org
Subject: Re: VLF: Tweek mode = resonances

 

Hi Stefan, = LF,

 

we're not = just playing around... I would rather consider this an = original scientific experiment, perhaps worth proposing as an = research project in environmental physics = ;-)

 

Frequency = stability will not be much of an issue. Throughout the night, the 5th = order resonance moved around by two or three pixels, approximately = 100 Hz or twice its own width. So after having found the right = frequency in the first place, we could just let the transmitter sit on = the exact QRG for many hours without loosing much signal (even more so = for 1.7 kHz).

 

Here are = some back-of-the-envelope calculations for your institute antenna, = grounded at the other end: Assuming a loop area of around 2000 m^2, = radiation resistance at 8.5 kHz would be 0.17 microohms. Given = the cross section of your horizontal wire and the lightning = protection system, you could perhaps run up to 100 A loop current = (maybe too optimistic?), which would give 1.7 mW radiated = power - comparable to your first kite experiments and surely enough to = be received here easily even without any resonance enhancement. At 1.7 = kHz, radiated power would be 625 times smaller (2.6 uW) but probably = still detectable under quiet conditions. Estimated inductance would = be around 110 uH or 5.9 j ohms at 8.5 = kHz.

 

Depending on = the quality of the grounding installation you will probably require some = kilowatts drive power, and a suitable array of parallel FKP's to = cancel inductance. Alternatively, the company I work = for produces some cool fat MRI gradient power amplifiers, = designed to deliver hundreds of amps into inductive loads = ;-)

 

On the = receive side here, my biggest problem at low frequendcies is = railway interference - - this is one reason to start at higher frequency = before going to 1.7 kHz. As the incident wave will be circularly = polarized I could try to rotate the receive loop to minimize local = QRM. An interesting and favourable point is that your TX loop will be = pointing north-south, which will minimize = "contamination" by direct groundwave to my = direction. However I do = not know what the lateral extent of the resonance mode is, in other = words how much enhancement we will still get at 180 km distance or 45=B0 = elevation.

 

Alternatively= you could try to detect the tweek resonance using your garden = receiver, close enough to provide true vertical skywave incidence and = full cavity resonance enhancement. To be able to see the skywave, you = will only have to turn the receive loop carefully to null = direct nearfield inductive coupling.

 

One last = point for dreamers: The counterrotating polarized component which is not = reflected will penetrate to the magnetosphere and may propagate as a = whistler wave. This could theoretically be received at the magnetic = conjugate point, somewhere near = Madagascar...

 

73, Markus = (DF6NM)


 

From:<= /b> = DK7FC = <= /span>

Sent:<= /b> = Saturday, July 18, 2015 10:51 AM

Subject: = Re: VLF: Tweek mode resonances

 

Hello = Markus,

Thanks for your observation and article! :-)
Most = interesting.
I can indeed confirm there were a number of cloud-cloud = lightnings last night, up to 20 per minute were visible at times.
My = VLF loop in the garden is a vertical hula hup circle with 80 turns of = wire inside. About 80 cm diameter. The receiver is the stereo soundcard, = making the stream for MF+VLF.

This observation reminds me (of = course) on our idea to try to transmit (clap our hands!) on about 2 kHz, = the 150 km band :-) with a vertical loop and receive with a vertical = loop! I should check if it is possible to reach the roof of the other = building, where my TX-antenna is mounted, to ground the wire, i.e. to = build a vertical loop!

BTW, yesterday i officially requested a = permission by the chief of the local forest district to put some = electronic equipment on a high tree in the forest!! Solar, modules, = batteries, WLAN-antenna and a box including electronic equipment. The = location is 3 km distant from the institute, much more distant to man = made noise sources then my garden and still in a direct view to arrange = the WLAN-link! No answer yet...

The 5th mode near 8.5 kHz? Well, = that resonance isn't really stable over the frequency, so it is not = possible to try modes like DFCW-6000 or even 600. So the possible = distances would be rather small. But woth to try playing, obviously = :-)

73, Stefan

Am 18.07.2015 06:50, schrieb Markus Vester: =

Waking up = early this morning, I took a look at Stefan's garden grabber http://www.iu= p.uni-heidelberg.de/schaefer_vlf/DK7FC_remote_Grabber.html and = was greeted by a fascinating display on his VLF panel. =

 

The = screenshot http://df6nm.bplaced.net/VLF/spherics/dk7fc_VL= F_150718_1326.jpg shows&n= bsp;a number of narrow tweek-mode resonances at multiples of 1.72 kHz. = These are obviously spherics from nearby lightnings, bouncing multiple = times vertically between the ionosphere and ground (much the same as = clapping your hands between two parallel brick walls). The resonances = are rather sharp indicating a high Q-number (ie. around 100 bounces = until decay). They are visible up to about 20 kHz, showing = unusually small damping of vertical incidence reflections at these = frequencies. There is a small variation of resonance frequency over = time, reflecting the variable height of the ionospheric = ceiling. The fundamental resonance at 1.7 kHz is probably not = visible due to the frequency response of the loop and = receiver.

 

A (somew= hat late) screenshot from Blitzortung http://df6nm.= bplaced.net/VLF/spherics/image_b_de_150718_0324.png shows = the last red crosses between Wiesbaden and Stuttgart passing = over Heidelberg at around 1:30.

 

The twee= k resonances were received on the loop antenna in the garden but = not on the E-field antenna of the (somewhat whitened out) city = grabber http://df6nm.= bplaced.net/VLF/spherics/dk7fc_wideband_150718_0330.jpg. This = corroberates the notion of near vertical incidence and horizontal = H-field polarisation. According to the literature, tweek tails are = usually circular polarized as only one sense of rotation exhibits a high = reflection coefficient. They are predominately excited by horizontal = current components in intra-cloud = lightnings.

 

Of course = the resonances will also be there in quiet nights without spherics, = so they could probably be employed to enhance fieldstrength (up to = a factor of Q) for medium-range VLF communication experiments using = magnetic transmit and receive antennas. When Stefan still had his earth = dipole we already discussed a 2 kHz tweek-mode experiment, = which for various reasons hasn't taken place yet. Now it looks like = one could even employ the fifth mode near 8.5 = kHz...

 

All the = best,

Markus = (DF6NM)

 

 

 

 

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