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Download "Bomba de água alimentada por energia solar!"

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водяной насос
как сделать насос
всё могём
мастерская
мастер
сделай сам
своими руками
самоделка
самоделки
как сделать
крутая идея
как сделать водяной насос
водяной насос своими руками
насос для воды
работает от солнца
diy
we can all
how to make
free energy
free energy generator
water pump
diy water pump
how to make water pump
mini water pump
water
насос работающий от солнца
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  • ruRussian
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00:00:00
I greet you my dear friends today in this video I will make an automatic
00:00:06
portable pump that can work both for pumping water from the cellar during the spring
00:00:11
flood and for collecting water from wells into barrels in cottages with a lack of electricity,
00:00:15
the pump will work from any portable source 12 volt and will also be able to work
00:00:21
directly from a solar panel as a basis for the project, a submersible pump was purchased;
00:00:27
it was
00:00:32
purchased on AliExspress;
00:00:38
this pump can lift water 4-6
00:00:43
meters and the pump capacity is 600-800 liters per hour, even if we take the very minimum figures of
00:00:51
600 liters per hour. This is of course very good performance for such a small pump
00:00:56
. an impromptu
00:01:04
mesh is needed so that large fractions of debris do not fall into the impeller and do not break its
00:01:10
output, respectively, on this side there is a 1/2 inch thread at both ends Now let's
00:01:17
connect it to the power supply and see if it works at all or not. it will be
00:01:22
a battery from a 14.4 Volt screwdriver, this will be enough plus To plus minus to minus it
00:01:32
works, well, let's try How do you pump water now
00:01:49
let's try directly from a portable solar panel I have
00:01:55
a 100-watt tourist socket screwed on the door here using crocodiles directly without the battery
00:02:05
is buzzing.
00:02:12
Well, everything
00:02:22
even pumps water directly;
00:02:25
as a housing for a submersible pump, a steel pipe with an inner diameter of
00:02:30
100 mm was chosen; I fix the pipe in a vice and mark with a marker a segment 120 mm long using a sheet of A4 paper
00:02:39
; I cut off the section of pipe I need,
00:02:45
I chamfer inside the pipe and clean the pipe from rust on emery with a corset
00:02:52
on the outside, a brush with a diameter of 150 mm, and inside the pipe with a brush with a diameter of 100 mm, to make the bottom, a
00:03:00
two-millimeter sheet of metal was taken as a basis, I put a pipe on the sheet and from the
00:03:05
inside I make markings with a marker, after which I need to cut out a part with the help of an angle grinder
00:03:12
on the grinder, I align the ends of the pipe after cutting and remove the outer chamfers, I also process the bottom
00:03:19
on the grinder according to the markings. As a result, the bottom should easily pass inside the pipe using a compass
00:03:26
on the bottom, I make three equidistant marks to fix the bottom it is necessary to make small corners to the pipe
00:03:33
, for which I fix a square pipe 15 by 15 mm in a vice, I mark two segments
00:03:40
of 10 mm each, cutting the pipe diagonally on both sides And cut it across the pipe according to the markings As
00:03:48
a result, we got these Four small corners using a welding machine, weld
00:03:54
the corners to the bottom according to the marking, of course, the corners themselves should not protrude beyond the diameter
00:03:59
of the bottom,
00:04:05
otherwise inserting the bottom into the pipe will not work
00:04:11
. with an elongated
00:04:18
marker, I transfer the places of drilling on the bottom, after which I core drill three holes with a diameter of
00:04:25
3.3 mm and cut the threads on the pipe in a circle, mark 3 markings absolutely arbitrarily And drill
00:04:33
a lot of holes with a diameter of 8 mm in my case, they will act as a coarse cleaning filter
00:04:40
when operation of the pump at low water levels, the platform of the pump itself was damaged during transportation,
00:04:46
therefore, removing the rest of the mount with pliers, and as it turned out, the pump is attached
00:04:52
using a dovetail connection, which even simplifies fixing the mount to the bottom. As a result,
00:04:59
I screwed the platform with two m3 screws for implementation primitive automation we
00:05:06
need a reed switch a reed switch is a sealed glass tube with an inert gas
00:05:12
inside which contains two closely spaced contacts and
00:05:17
spheres of magnetic material presenting a small magnet to the reed switch it closes
00:05:29
this reed switch is capable of passing a very small current through itself So you will also need a relay
00:05:35
which will switch the current under the source to the pump, the reed switch itself will be installed inside
00:05:41
tubules of the gel rod from the pen and the float will be made from the body of a disposable pen
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and from the container from Kinder surprise on the board I depicted the most understandable for most people
00:05:53
circuit diagram of the float relay As you can see that the components here are generally the bare
00:05:58
minimum it is the simplest there is a power supply the reed switch relay itself and the pump on the relay
00:06:06
there are 5 contacts, two of them are the winding of the relay itself and three independent contacts,
00:06:11
we will not use this contact, we are interested in the contact group, which at the moment when the relay
00:06:17
is not energized, they are normally unbent, that is, disassembled contacts plus from the source
00:06:24
power is supplied to one contact of the relay winding from the second contact of the relay winding, the wire
00:06:30
goes to the reed switch A from the reed switch to the minus of the power supply, and the minus of the power supply is directly connected to the pump plus from the
00:06:36
pump is connected to this relay output, there is also a positive wire jumper Here on this
00:06:43
Central contact in the absence magnetic field When the float is at the very bottom with
00:06:49
the magnet in place, the reed switch is unbent, which means that the relay is not energized, these contacts at once
00:06:56
But as soon as the water level begins to rise and the float with the magnet rises, the magnet
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forces the reed switch itself to close, the relay is energized and this is the contact group
00:07:10
closes ,
00:07:16
thereby supplying power to the pump, the pump will work until the float,
00:07:22
together with the magnet, goes down, that is, until the pump has drained all the water.
00:07:30
a through hole with a diameter of 8.5 mm, after which I insert a piece of the tube into it, dilute a small
00:07:37
amount of epoxy resin and seal the connection of the tube with the container after
00:07:43
the resin has hardened, open the container in one half to the bottom, throw a small piece of magnet and fix
00:07:50
it there with epoxy resin, then coat the place connecting the two halves and gluing them together
00:07:55
excess resin remove with a finger the remaining connection of the tube with the container, I also cover it with
00:08:02
resin As a result, I got an excellent sealed and reliable float with a magnet, now I need to
00:08:08
place the relay in a sealed case for this I decided to use the neck of a plastic bottle
00:08:13
I cut off the neck with a hacksaw to fix the neck behind the scenes I cut out a small plate from acrylic glass,
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spread epoxy resin, apply it on the neck and glue plates of acrylic glass,
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solder two thin wires on both sides of the reed switch, then bend one contact and Insert
00:08:36
inside the empty gel rod in the cork from the neck, drill a hole with a diameter of 4.5 mm
00:08:43
then I insert the wires into the holes and the rod itself in the neck of the bottle I drill
00:08:50
a hole with a diameter of 8 mm, it is necessary for the wires, I bring the wires into it and tighten
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the cork, after which the connection between the rod and the cork is sealed with epoxy resin, as a
00:09:04
supply wire I will use 5 meters of stranded wire in insulation 2 by 0.75
00:09:10
squares into the holes in the neck, I immediately insert two wires, I immediately solder the positive wire from the power source
00:09:16
to one of the contacts of the relay winding and
00:09:23
solder the positive wire from the pump to the central contact of the relay to the open contact of the relay, solder the negative wire from the pump to the
00:09:31
power supply minus one from the wires coming from the reed switch I solder to the second contact of the
00:09:37
relay winding and the second wire to the minus of the power supply, after which I put a small drop of epoxy resin
00:09:43
on the bare soldering points to fix and isolate the contacts, smearing all the wire entry points with the neck of the
00:09:50
bottle with epoxy resin To prevent water from getting inside after complete after the resin hardens
00:09:55
, I screw the cork on the neck, and then I screw everything to the bottom with two M4 screws.
00:10:03
So, the float switch and the pump are assembled, in principle, we connect it to the power source and try
00:10:09
whether it all works or not, insert the float, try it rises little by little, the water level
00:10:19
drops
00:10:22
Everything works, then everything is assembled correctly Top hole I will now insert a self-tapping screw, it
00:10:30
will just be the limiter of the float and will just close this Upper hole on the
00:10:36
self-tapping screw I put a small drop of glue and fixed the rod with pliers I tighten the self-tapping screw until it stops
00:10:42
So how will we all connect this To begin with, I will put a check valve with internal thread
00:10:48
1/2 inch so that you can screw on the pump itself to the outlet of the pump itself is it needed here
00:10:54
at all if you use such a pump only to collect water then it is not needed here
00:10:59
in principle at all But if this pump is in the cellar in the collection pit it is necessary to install it.
00:11:05
I will explain why, as you can see here, the float chamber stroke is very small.
00:11:12
If you have a rather long hose at the outlet that pumps water into the sewer system
00:11:18
or into some kind of pit, then the pump from the upper level pumps out the last water from the pit, it leaves the
00:11:26
float hose it goes down and the water and the hose flows straight into the pit again, the level rises and what do
00:11:33
we have As a result, the pump will work in a cyclic mode, why is it necessary, you can just
00:11:41
cut it all off with a non-return valve, the water is gone and if it flows back, it will just stand there and block the
00:11:47
way non-return valve and then what we will put next, I will use quick
00:11:53
detachable connections ordinary plumbing garden connections we will connect to the valve and screw
00:12:01
onto the pump
00:12:07
I can’t do anything,
00:12:14
I just unhook the quick coupling and I can let’s use this pump in the country, that is,
00:12:21
taking another hose with the same connection, that is, roughly speaking, we don’t take hoses, but we just
00:12:27
stupidly transfer the pump from place to place, that’s all, that’s why That’s how we we will do everything and
00:12:34
do the check valve itself for this pump, it is necessary to modify it a little here inside
00:12:40
there is a very elastic spring that presses the membrane very strongly and in order for
00:12:44
this valve to open the pump needs to apply a sufficiently large pressure
00:12:52
if everything is left as it is, we will simply steal the height of the liquid from this
00:12:59
pump, in order to avoid this, we will simply stupidly remove the spring inside by simply
00:13:04
pulling it out with tweezers, and as a result, the valve will open easily and it will be easier for the pump
00:13:10
to open it, thus we will win in the height of the liquid rise Well, the valve itself
00:13:16
will be pressed by a column of water that will be on to press it. In general, somehow,
00:13:30
it’s another matter
00:13:36
to put a small amount of thread lock on the valve and screw it onto the
00:13:43
pump
00:13:48
. I threw it over the beam
00:13:53
, about a meter and a half high here, to the pump Well, I took it outside, let's try
00:14:11
about It started pumping
00:14:23
[music]
00:14:24
quite cheerfully, I can say the float is working now, I'll show you closer
00:14:55
[music]
00:14:56
Well, this is its minimum level, but the water is still going down because that
00:15:03
at the outlet of the hose more through the beam than at the inlet the siphon is working now
00:15:16
[music]
00:15:17
now you can lower the bottom into the Cylinder and tighten the screws also behind the scenes on the wire
00:15:23
soldered the car cigarette lighter plug for easy connection for the test, the hose
00:15:29
was fixed at a height of 1.5 m from the ground A the pump is immersed in a barrel of water
00:15:34
with a capacity of 200 liters, I connect it to a power source and start the timer
00:15:47
[music]
00:15:48
Well, all the automation worked in the normal mode and that in time Well, a little more than
00:15:55
600 liters per hour, this is natural when lifting one and a half meters if you raise water above 5 meters then
00:16:04
the
00:16:12
performance
00:16:17
will be much less as a power source. I used Jump Starter.
00:16:26
Well,
00:16:29
as an experiment, we will try directly from the solar panel
00:16:47
. lack of electricity Yes, and I almost forgot
00:16:51
to measure the power consumption of the pump is in the
00:16:53
same barrel and it consumes a height of one and a half meters and a half Amperes
00:17:09
quite economically and the last test test remains I want
00:17:14
to try At what height can you raise the water a hose I
00:17:17
have 5 meters long hooked turn it on To the very top of the stairs below, we turn on a bucket of water,
00:17:31
I see the water has gone, it has
00:17:39
gone
00:17:47
it pumps water out of the bucket
00:18:02
Yes, not so fast, of course, maybe twice a day But it works
00:18:11
Well, all the automation worked And as you can see the non-return valve works The water inside
00:18:17
the tube is at full height does not flow back into the bucket Well, the test can be considered successful So
00:18:26
my dears friends Let's sum up At the same time and discuss the sore subject the pump was
00:18:34
eventually assembled by the pump I am satisfied with the automation it works normally in 20 minutes it is able to fill
00:18:41
a barrel of 200 liters of water and raises the pump water to a height above 5 meters even above 6 meters I have
00:18:47
already tried it behind the scenes that is, here it raises without problems, just that the performance drops
00:18:52
almost
00:19:00
twice whether it was worth bothering or not, my answer personally was worth it
00:19:05
. from a well in order to water the garden, this
00:19:11
made me think that it would be possible to make such a portable pump so that people would have
00:19:17
at least some understanding Is it possible to do something alternative or not, it’s not necessary
00:19:21
to make it exactly This is how it can be made from improvised materials are much simpler
00:19:26
much faster in the whole evening If the grandmother has a handy man but the technology is fully working
00:19:32
So it can be a huge helper in order to relieve the physical stress of people in the country
00:19:41
in my case I will put it completely in my cellar in the spring due to the fact that
00:19:47
the foundation is not sealed, it fills the cellar with water and constantly putting a drain there, as it were,
00:19:53
is not an option, okay, that’s all
00:19:58
. I’ll just put it
00:20:03
in charge, I’ll do it through the battery and there is light or no light in the network, it will
00:20:10
automatically pump water into the sewer for me. So for me specifically this thing is very useful.
00:20:16
Now let’s dive into the numbers a little, let’s get into the calculator and calculate
00:20:22
the performance profitability unprofitability and the efficiency of this pump Well, let's say
00:20:29
I have a power source in the form of a carcool Jump starter, it is written on it that it has
00:20:35
a capacity of 25 Amp hours, we will round up the minimum thresholds so that it is more accurate,
00:20:42
more understandable in terms of performance Well, let's drive 20 ampere hours into 20 ampere hours
00:20:50
our pump consumes one and a half amperes, which means that at 20 ampere hours
00:20:59
it can work for a little as little as 13.3 hours indefinitely
00:21:05
until the battery is fully seated, rounded up to 12, again down
00:21:10
. liters of water and we
00:21:19
multiply by 3 in parts 3 by 20 and there we get That in 12 hours we can collect 36,200 liter barrels of
00:21:26
water, multiply by 200 liters Total we get 7200 liters of water 7 tons of water such a baby is able to
00:21:39
collect a little in 12 hours no less, but it is very economical, considering that it practically
00:21:49
does not consume anything in terms of power, that is, when the Jump Starter is fully charged, it can draw
00:21:55
7 tons of water Well, it’s good if we suddenly draw water from a well And this is the level Approximately here we have a
00:22:02
water level of 44 and a half meters Well, let us reduce it by half That is,
00:22:09
this pump is able to draw three tons of water in 12 hours And it’s not sour I can tell you So it’s very economical
00:22:19
completely Independent and can even work directly from the solar panel on a sunny day
00:22:26
in general a cool thing Well let's go, I'll install it there in my cellar
00:22:33
Well, for today I have everything Everyone to whom the video was useful Do not forget Put your thumbs up Everyone bye

Description:

Sejam bem-vindos ao meu canal! Meu nome é Alexander e hoje vou montar uma bomba portátil para levantar a água do poço para o consumidor. As vantagens desta bomba é a sua completa autonomia da rede elétrica central. A bomba pode ser operada a partir de qualquer fonte de alimentação de 12 volts e até mesmo diretamente do painel solar. Mostrarei como coletar, darei links para todos os componentes, verificarei no trabalho e resumirei os resultados. Resina de cola Epoxy: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F32961739139.html Bomba submersível: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F1005003890447263.html Ferramenta de rebarbação: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F4001293727630.html Mangueira de silicone de grau alimentício: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F4000833290804.html Painel solar portátil 100W: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F32844103727.html Cortadores laterais para pequenos trabalhos: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F1005002035427023.html Pinça de marcação: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F32876196374.html Solda: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F33023323860.html Fluxo de solda ativo: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F32712522582.html Relé: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F1005003218750865.html Reed: https://alitems.co/g/1e8d114494841a8c8d0016525dc3e8/?ulp=https%3A%2F%2Faliexpress.ru%2Fitem%2F4000773848015.html Contato: E-mail: [email protected] Meu instagram: https://www.facebook.com/unsupportedbrowser Meu grupo VKontakte: https://vk.com/public177814984 ​​​No meu canal eu faço o que eu gosto!!! Faço caseiras, estudo, invento, faço experiências, faço química, faço fogo.

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