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Overunity Machines Forum



Kapanadze and other FE discussion

Started by stivep, May 26, 2018, 01:48:55 PM

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hartiberlin

Please All. no more political messages in Ukrainian or Russian language to hidefrom the public.
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stivep

Satisfying Interface  requirement:

Yet another perfect test  site Bonneville salt flats
it is located  in Utah USA
12 miles (19 km) long and 5 miles (8 km) wide, with a crust almost 5 ft (1.5m) thick at the center and less than one inch (2.5 cm) towards the edges.
It is estimated to hold 147 million tons of salt, approximately 90% of which is common table salt2
https://en.wikipedia.org/wiki/Bonneville_Salt_Flats
https://www.rideapart.com/news/253776/everything-you-need-to-know-about-the-bonneville-salt-flats/

For uneducated  in  the particular field
spectators :
- Looking for cheap entertainment
https://youtu.be/Pn36LVoAu3Q?t=10 watch this one only 2 minutes.
https://www.youtube.com/watch?v=b55p0Iz9K-o
https://youtu.be/YzHpZQ36BWg?t=48 - for us important in this  video is that car got stuck ( amount of vapor/water vs conductivity)
but the most amazing in this video is  this salt water   canal https://youtu.be/YzHpZQ36BWg?t=72
Wow....
Experimenter apparatus  doesn't have to be  in that water but next  to it  at any time of the  year.
In the same video we see that person walking  on that salt  is sinking about 20cm. Simply great.
What a dream for an experimenter.

Conductivity:
Conductivity of Solutions https://www.youtube.com/watch?v=4WillWjxRWw
QuoteWe look at the electrical conductivity of several solutions. \
Substances include tap water, distilled water, sodium chloride, hydrochloric acid, sodium hydroxide, sugar, vinegar, ethanol, and barium sulfate.
The solutions are mixed to approximately the same ratios.
The tester is a pair of stripped copper wires at line voltage in series with a 25W incandescent bulb.
The probe is rinsed in distilled water between each test.
Dry salt is not conductive because it is made of ionic compounds that have ions that are not free to move  link: 1 and 2

Three factors makes this site usable for us:
-Humidity
-Ground water 
-Winter time.
https://pubs.usgs.gov/pp/1585/report.pdf


General rule:
Quote
If the rel. humidity is lower than 75%, the solution evaporates and the salt crystallizes.If the rel. humidity is higher than 75%, the solution absorbs the air moisture and the salt is dissolving.
https://chemistry.stackexchange.com/questions/112911/scientific-reason-for-salt-solution-gaining-volume
How to know if the site is usable due to salt conductivity:
Relative Humidity vs Dewpoint https://www.youtube.com/watch?v=OiejHVHrdOo

Usability of the site :
That makes Bonneville salt flats  usable for us almost entire  year.
My partner in science once said:
1 day of testing in the right condition  can make an experimenter a billionaire at no time- (at no time-idiom)
Wesley

stivep

for these who  decide to  provide tests in mid November
https://youtu.be/-OxpLkYTByU?t=42
Wesley


Sergh

But let's go back to Nikola Tesla.
The wireless transmission of energy over a distance of 26 miles to illuminate 200 incandescent lamps is presented everywhere as a historical fact. But what was it really?
In today's serious understanding, such wireless transmission of significant power looks very doubtful. Using this technique, transmission is possible over relatively short distances, a few tens or hundreds of feet maximum, with an efficiency of 0.5 - 0.6.

So what was Tesla's story about?

The only report of long-distance transmission by Tesla is a claim that in 1899 he wirelessly lit 200 light bulbs at a distance of 26 miles (42 km). There is no independent confirmation of this demonstration; Tesla did not mention it, and it does not appear in his laboratory notes. It originated in 1944 from Tesla's first biographer, John J. O'Neill, who said he pieced it together from "fragmentary material in a number of publications"

QuoteIt was Tesla's intention to make the development of his discoveries a one - man job. He was completely confident , at this time , of his ability to live a century and a quarter , and to be actively engaged in creative experimental work up to at least his one - hundredth birthday , at which time he would give serious thought to the task of writing his biography and a complete record of his experimental work . Up to almost his eightieth year he adhered to this plan without doubt as to its ultimate consummation.

As a result of this most unfortunate design, technical details are lacking concerning the principal discoveries made at Colorado Springs. By piecing together the fragmentary material published in a number of publications, however, it appears evident, that Tesla, in addition to experiments with his gigantic current movements, as a means of establishing world - wide broadcasts and making a number of detectors for such use, tested his power transmission system at a distance of 26 miles from his laboratory and was able to light 200 incandescent lamps, of the Edison type, with electrical energy extracted from the earth while his oscillator was operating. These lamps consumed about fifty watts each, and if two hundred were used in the test bank, the energy consumed would be 10,000 watts, or approximately thirteen horsepower .
Transmission of thirteen horsepower wirelessly through the earth for a distance of twenty - six miles can be accepted as a very adequate demonstration of the practicability of Tesla's plan. He claimed an efficiency of higher than 95 per cent for this method of energy transmission ; so he could , undoubtedly , with a 300 horsepower oscillator , operate more than a dozen such test demonstrations simultaneously anywhere on the globe . With respect to the latter point he stated, "In this new system it matters little — in fact, almost nothing — whether the transmission is effected at a distance of a few miles, or of a few thousand miles."
"While I have not as yet," he stated in the Century article of June , 1900 , " actually effected a transmission of a considerable amount of energy, such as would be of industrial importance , to a great distance by this new method, I have operated several model plants under exactly the same conditions which will exist in a large plant of this kind, and the practicability of the system is thoroughly demonstrated."
Tesla was insistent, in his latter decades, on the existence, the actuality, the importance and availability of many undisclosed discoveries which he made at Colorado Springs. The author urged upon Tesla two or three times the desirability of making a disclosure, against the ever present danger of an accident that might cause them to be lost to the world; and when the inventor was unimpressed by this possibility, he was asked to permit the author to do something that would bring about their practical development. Tesla was courteously appreciative of the interest manifested, but he was very emphatic in his insistence that he would handle his own affairs as he saw fit, and that he expected shortly to have adequate funds to develop his inventions.

TESLA returned to New York, in the fall of 1899, broke once more, but with the knowledge that his efforts had greatly enriched humanity with important scientific discoveries.

O'Neill, John J. (1944). Prodigal Genius: The life of Nikola Tesla. Ives Washburn, Inc. p. 193.


But how could this work? What if it was not a wireless transmission of energy, but a wireless transmission of a signal to turn on the lamps?
Around the same time, Tesla was working on remote control.

"Telautomatics"

"Teleforce"

Patent US685958A "Method of utilizing radiant energy"


Fig. 1 Handwriting: "Electric stepping motor energized by corpuscular energy from Sun"

Isn't this the same motor that Wikipedia mentions about 26 miles, 200 lamps and 1 motor?

US685957A Apparatus for the utilization of radiant energy.

QuoteThe second terminal or armature of the condenser may be connected to one of the poles of a battery or other source of electricity or to any conducting body or objectwhatever of go such properties or so conditioned that by its means electricity of the required sign will be supplied to the terminal.
...

In illustration of a particular form of apparatus which may be used in carrying out my discovery I now refer to Fig. 2. In this figure, which in the general arrangement of the elements is identical to Fig. 1, the device d is shown as composed of two very thin conducting-plates t t', placed in close proximity and very mobile, either by reason of extreme flexibility or owing to the character of their support. To improve their action, they should be inclosed in a receptacle, from which the air may be exhausted. The plates t t' are connected in series with a working circuit, including a suitable receiver, which in this case is shown as consisting of an eleetromagnet M, a movable armature a, a retractile spring b, and a ratchet-wheel w, provided with a spring-pawl r, which is pivoted to armature a, as illustrated. When the radiations of the Sun or other radiant source fall upon plate P, a current flows into the condenser, as above explained, until the potential therein rises sufficiently to attract and bring into contact the two plates t t', and thereby close the circuit connected to the two condenser-terminals. This permits a flow of current which energizes the magnet M, causing it to draw down the armature a and impart a partial rotation to the ratchet-wheel w. As the current ceases the armature is retracted by the spring b, without, however, moving the wheel w. With the stoppage of the current the plates t t' cease to be attracted and separate, thus restoring the circuit to its original condition.