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гидроаккумулятор для систем водоснабжения
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00:00:00
Hello, dear viewers,
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subscribers and visitors to our channel of
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Successful Water Supply.rf
00:00:07
And today I will tell you in detail about
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hydraulic accumulators, why they are needed, what
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function they perform, what volume they are,
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where they are installed, how vertically and
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horizontally, what to connect to them, how to
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select them, what they should be
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made of in order for them to perform
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their tasks and functions well, what
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diameter do they have, what size are they,
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and so on, well, let's start
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with the direct purpose of the
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hydraulic accumulator, people
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also say why it is needed. Well, any
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water supply system
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needs an autonomous
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water supply system, it requires a hydraulic accumulator,
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even with pumps that have built-in a
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relay and a small hydraulic accumulator there are
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about 10 cubic centimeters in
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order to eliminate water hammer when
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the pump is turned on. This is the first
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point. The second point is that the
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hydraulic accumulator is needed for a water supply. That is,
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it creates the necessary supply of water when the
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pump is turned off without electricity, this is
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important and the third point is
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turning on the pump. there is, as often
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happens, depending on your
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needs and the dependence of
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water consumption from the tap. That is, you turn on the tap
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for a short time so that the pump does not turn on. The
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water pressure in the accumulator
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allows you to maintain the
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system with a constant pressure and you yourself
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can turn on and off the pump.
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The hydraulic accumulator always works in tandem
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with the pump. and a pressure switch That is, these are
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three components of the water supply system
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that are necessary for a completely autonomous
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source of water supply from a well or
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from a well.
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The size of the hydraulic accumulator matters
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for brush-type pumps, that is, those
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pumps that are critical to
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turn on and off, let’s say. So, start the
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pump either less often or more often
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but directly brush pump
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is important when it turns on less often, since the
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brushes can burn and the
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service life of the pump is naturally reduced. Therefore,
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the larger the hydraulic accumulator, the less often it
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turns on, the
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air pressure in the
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hydraulic accumulator plays an important role in general, how is the
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hydraulic accumulator arranged on the outside, it has
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a flange, the flange supports it, which
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means the membrane inlet then there are
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directly pears that are located in
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the hydraulic accumulator, this is also the hole of the
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pear, it presses it to the outer
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casing, and inside we have the pear itself
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located in this case, the
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horizontal hydraulic accumulator
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is located horizontally That is, it is a
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rubber bulb that is filled with water
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through the inlet flange of the hydraulic accumulators,
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the size of the representative flange is
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one inch In this way, water enters the
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inner part of the pear and is
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there under pressure. Why under pressure
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because on one side the pump presses and
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on the other side air presses. The air
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is pumped into the hydraulic accumulator through a
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car-type spool if we
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unscrew the cap here. We see here
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the spool will be the usual one that
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you pump up the wheels. this is how the spool is designed,
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it’s a regular car winder in this
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way. When you pump up
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the hydraulic accumulator, the air volume fills. It takes up
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space between the bulb and the wall of the
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hydraulic accumulator and creates
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back pressure that
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contracts the bulb and pushes water out of
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it. Everything is quite simple.
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Well, now I’ll show you how
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the hydraulic accumulator is designed inside. there is
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what I did I unscrewed the flange inside
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we have such a pear there are the remains of the
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flange The
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pear is made of rubber such as
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rubber
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and inside
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the hydraulic accumulator you can look at
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how it is welded for the quality of the weld
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this weld is exactly the
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place where more often In total, the membrane wears out
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when installed horizontally
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or when the main part is of poor quality, we
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need to take this moment into account; we see there at
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the very end, right now, exactly in the center of
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the screen, we have a spool that
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pumps up pressure between the walls of the
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housing and the bulb, and the
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water itself comes directly. We have it inside the bulb.
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here, in
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this way, all the membranes are
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changed, all the bulbs
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are made; it’s enough to simply unscrew
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6 bolts and remove the flange along with the
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bulb, then a new
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bulb is inserted inside, there it is distributed, the flange
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is screwed back on and everything is
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ready. Before installing the bulb, it is important to
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treat it with talcum powder on the outside, but the toys
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must be worked
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talcum powder so that when filling the
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hydraulic accumulator with water, no
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extra Lada is formed and the
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pears are evenly distributed. The moment of
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addition in the inner part of the
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hydraulic accumulator body is such a critical
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moment that must be taken into account.
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How to install
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the hydraulic accumulator correctly Well, in this
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hydraulic accumulator It is located
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horizontally, it has so-
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called legs even the legs for fastening
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are acceptable to some kind of base. Here is our
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recommendation: install
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hydraulic accumulators strictly vertically, that
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is, there are different volumes of hydraulic accumulators,
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including hydraulic accumulators there
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for 80 by 100 by 150 200 liters there 300 and
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so on they are located on the legs there is a
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room for installing
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hydraulic accumulators when stand
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vertically, they wear out less and the
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service life is no longer Why Because
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the membrane that is inside, that
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is, the pear, it does not lie on the Lower
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part of the accumulator during the
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filling process, water comes into the pear, it
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increases or decreases and
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constantly rubs and one part of the Bottom
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thus it is usually erased
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during the seam on the inside and the service life of the
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hydraulic accumulator in this case is
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much shorter when we
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install it vertically or
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hang the legs on the wall, which we often do in our,
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so to speak, our objects, in this case,
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accordingly, the membrane wears
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less, it wears out evenly
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because the hydraulic accumulator stands
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vertically toys which it is located in it, it
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wears out evenly at the
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bottom and its entire plane
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is in contact with the outer casing of the
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hydraulic accumulators. This point is quite
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important and, accordingly, the service life of the
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hydraulic accumulators increases
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by one and a half to two times.
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Further, what must be taken into account when
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installing hydrocardboard rooms, that
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is, the whole point is that that
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vertical hydraulic accumulators that
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stand on legs
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have a small distance between the flange to
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which the inlet flange is screwed,
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any fittings, etc., to which the
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water supply of the pump is connected and the floor.
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That is, if we choose a vertical floor-
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mounted hydraulic accumulator, in this case
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we need to make sure that the water
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from the hydraulic accumulator is spilled for the winter
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completely So, if it
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stands vertically, then you need to come up with
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a scheme where there will be a tee and there
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will be a drain screen through which you can
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drain the hydraulic accumulator, the remaining water from the
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hydraulic accumulator of some kind of capacity.
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This is not entirely convenient. The fact is that if
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we screw a tee here and the legs of
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the hydraulic accumulator are quite short in
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this case. We will need to substitute
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some kind of the smallest possible container
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to drain the remaining water from the toys.
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The hydraulic accumulator If you leave the house
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without constant heating without constant
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heating, therefore another plus means
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the system that we use
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on objects quite often practically
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You can always tell this is the installation of
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the hydraulic accumulator on the wall, that is, we
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find out vertically and then all the binding
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is done directly under the
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hydraulic accumulator and the architecture of the system is
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such that the vertical
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hydraulic accumulator allows you to drain
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all the water from it without any residue, including
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from the pear, without having to worry about any - the
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containers are usually screwed onto the hydraulic accumulator with
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these game
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fittings to which a pressure
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gauge is attached, and then directly
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the fittings that go to Don, then the filter
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line is only cleaned with a pressure gauge, and
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so on, the water itself from the pump is supplied to the
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internal part here, that is, here
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we have in this part Let's say there is a
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redistribution of the
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water flow, one part under pressure from the
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pump, the other part under pressure from the
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accumulator, and it is in this place that it is
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best to set or pressure
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that will control the oncoming
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flow and regulate the
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water pressure in the system as accurately as possible, that is, turn on
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or off the Pump, that is
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I’m showing again what the architecture of a
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vertical installation of a hydraulic accumulator looks like,
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it looks like this, that is, the
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hydraulic accumulator is not placed
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horizontally but is placed vertically,
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so all the water from the hyperculators
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comes out completely through the
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water supply system through the
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water supply system to the house. The
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hydraulic accumulator always works in
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tandem with a pump and in paired with pressure, in order
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to correctly set or
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pressure it is necessary to know the pressure in the
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hydraulic accumulator, as a rule, the pressure in the
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hydraulic accumulator should be 0.2
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20 10 20 percent less than the pressure
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directly turning on the pump,
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respectively, if we have a pressure in the
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hydraulic accumulator, we pump with air
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1.8 atmosphere then
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the value for turning on the pump we will have a
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pressure relay that should be set to at
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least two atmospheres, that is, two atmospheres.
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Thus, our pump turns on at two
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atmospheres, reaches, say, 3 atmospheres and
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turns off And thereby it fills the
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bulb inside the hydraulic accumulator and,
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accordingly, When we have a pressure of
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the system falls, that is, we open the
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hydraulic tap, it squeezes out all the water there,
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80 percent of the water, 70 percent of the water from the pear through the
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pressure that is located between the pear
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and the body of the hydraulic accumulator, which we
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create directly with the pump, the
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pump turns on at two atmospheres if,
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accordingly, the pressure in the
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hydraulic accumulator makes equal moments when
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turning on the pump early and pump pressure
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or more then we will hear a pop
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inside, that is, what will happen, that is,
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the air that will be between the
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bulb and the battery body. It will
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completely compress the bulb at some point, the
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water pressure will not drop,
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the pressure there will not drop to 0, let’s say after
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this the pump will quickly turn on then let's just
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say that the system does not work correctly because the
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hydraulic accumulator is not adjusted correctly,
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and now about the volume of the hydraulic accumulator
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directly relative to the pump.
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The fact is that brushless type pumps have now appeared, these are pumps with an
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external
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capacitor or with an internal
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capacitor, they do not have brushes, they
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start due to magnetic induction,
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that is A striking example of such pumps
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is the master pump
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or the aquario pump. So, some
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brands of pumps on our market have a
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slight advantage in that they are
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oil-filled pumps. The rotor is
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completely in oil, they are maintenance-
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free; the oil is food grade; there is no need to be afraid of
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food grade dextron, which is used by the
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food industry and the pump starts
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due to this magnetic induction, the
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capacitor spins up, which
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creates torque in the
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motor windings. Yes, and therefore we have
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practically none of our parts; for
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such pumps, often starts and stops
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are absolutely not critical. Therefore, there is no need to
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buy a large huge
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hydraulic accumulator and wait until there is water there, let’s
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say so it will stand
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soaked in rubber, here are the pears, and so
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on. That is, the only important thing here is to
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have it, in principle, its presence, this
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hydromed with a volume of 25 liters is quite
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suitable for dacha use,
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respectively. If the electricity in your dacha does not
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often go out, then this is,
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in principle, the best option for
00:11:41
summer residents then there are such component
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components of such a system. This is a small
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pump, the owner is a well pump because
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it has a longer resource compared
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to a well pump and often by the way
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Well pumps are brush type
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so their use is not very
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rational, let’s say so because it is
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necessary for a small hydraulic regulator
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so that they last longer served
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Therefore, this is the layout of the system, let’s say we have a
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well pump and a hydraulic accumulator of 25 liters
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and simple pressure without any bells and whistles. a
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simple layout of the system. It allows you to
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use
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small small volumes of
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hydraulic accumulators.
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Also, when choosing hydraulic accumulators from
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different manufacturers, look immediately
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at the external quality of the weld, that is,
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it should be as smooth as possible and without, let’s say, any
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chipped burrs,
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beads there, and so on. Why Because,
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as a rule, the external weld seam is
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approximately the same as the internal one and the
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service life of the battery will depend
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on how correctly it is made
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and properly welded without burrs
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without let's say roughness, that is,
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the membrane will not wear off the inside of
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the hydraulic accumulator and, accordingly,
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the hydraulic accumulator will serve you longer than the
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Novinovo manufacturers, which
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often mean they are present in our market and
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their quality leaves much to be desired, that
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is, it will take 23 years to build the accumulator and
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then you will need to change it.
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Don’t change it so you just need to unscrew the
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battery fastening, then you will need to
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unscrew the entire water supply system,
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this is not very convenient, let’s say
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here between the hydraulic accumulator and the 5th
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fitting, you can install
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an American one in order to unscrew the
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battery of these chassis, it’s faster to
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remove and disassemble, clean, rinse,
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maybe if the water is about bad, you can
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arrange for flushing of the hydraulic accumulator But
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as a rule, practice shows that it
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is washed into our system by itself, let’s say
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with a reverse drain of water, the water completely
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leaves the hydraulic accumulator under the
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air pressure that is located in
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the hydraulic accumulator And thus all the dirt
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It usually goes back through the pump,
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thereby the pump, or it can be passed through
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through the filter through backwashing,
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again under pressure, that is, the system
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will be under pressure,
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turn off the pump, open the filter and all the dirt from the
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battery comes out past the filter through the
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filter flushing tap in this
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way, under downward pressure, that is, this is
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another plus of our systems
00:14:03
that we have developed and which
00:14:05
we use quite often, that is, it is
00:14:07
precisely the architecture of these systems in our
00:14:09
installations. Well, in brief, the principle and
00:14:13
everything is a video, you can watch
00:14:15
how to make a water supply system yourself, it’s just with
00:14:17
these components that I
00:14:19
told you it was done, that is, in such
00:14:20
favorable conditions,
00:14:22
you can assemble it quite easily on the workbench I always
00:14:27
make these kind of independent videos, usually at the dacha just to
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get as close as possible to home
00:14:31
conditions and to show that it’s easy to do.
00:14:34
Because when the video starts
00:14:35
shooting in the workshop where we manufacture our
00:14:38
water supply system, we collect
00:14:40
a lot of very components there. my eyes
00:14:42
widen And here at home
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it’s simple and clear a minimum set of
00:14:46
components the minimum cost of
00:14:48
high-quality components in that
00:14:51
video that’s what he said the link
00:14:54
will be at the end of this review of
00:14:55
hydraulic accumulators there is a detailed
00:14:58
story about each component In general
00:15:00
you can see
00:15:02
how much the components cost we use Here
00:15:05
’s how to do it right assemble a
00:15:07
water supply system
00:15:08
directly at your dacha Thank you
00:15:11
very much for being with us today Thank you
00:15:12
very much for your time people Subscribe to
00:15:14
our channel go to our website see
00:15:16
what we do how much it costs or
00:15:19
do a water supply system
00:15:20
yourself all for this we
00:15:21
provide all the information
00:15:23
Total good bye

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