8 Year Exporter Faucet HOT-COLD AV-P1805 Wholesale to Tajikistan
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Q: Are you trading company or manufacturer ?
A: We are factory.
Q: How long is your delivery time?
A: Generally it is 5-10 days if the goods are in stock. or it is 15-20 days if the goods are not in stock, it is according to quantity.
Q: Do you provide samples ? is it free or extra ?
A: Yes, we could offer the sample for free charge but do not pay the cost of freight.
Q: What is your terms of payment ?
A: Payment<=1000USD, 100% in advance. Payment>=1000USD, 30% T/T in advance ,balance before shippment.
If you have another question, pls feel free to contact us as below:
Fabricado em aço de bitola larga, tornando-se resistente e durável.
Largura de trabalho 50 cm na versão 4 pinos e 70 cm na versão 6 pinos.
Pneus com câmara que facilitam o transporte.
Alavanca para baixar e elevar os pinos para transporte.
Sistema de engate rápido (sem ferramentas) para facilitar a troca dos pinos.
Eixo aerador de pinos ocos ou maxixo.
Melhora consideravelmente o perfil do solo promovendo sua descompactação, melhorando a drenagem, incorporação dos adubos, calcário e/ou matéria orgânica.
Versão de eixo, 4 ou 6 linhas de pinos aeradores que permitem profundamente retirar tubetes de solo para uma perfeita aeração.
Pinos de aço temperado e galvanizados — aumentando sua durabilidade contra ferrugem.
Aerador manual auto tração, tração de pinos aerador mediante motor, produz em media 2000 m² h.
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Ram pumps have been around for many decades and are popular for two main reasons:
They need no external source of power — the force of moving water gives them the power they need.
They are extremely simple, with just two moving parts.
The basic idea behind a ram pump is simple. The pump uses the momentum of a relatively large amount of moving water to pump a relatively small amount of water uphill.
To use a ram pump, you must have a source of water situated above the pump. For example, you must have a pond on a hillside so that you can locate the pump below the pond. You run a pipe from the pond to the pump. The pump has a valve that allows water to flow through this pipe and build up speed.
Once the water reaches its maximum speed, this valve slams shut.
As it slams shut, the flowing water develops a great deal of pressure in the pump because of its inertia.
The pressure forces open a second valve.
High-pressure water flows through the second valve to the delivery pipe (which usually has an air chamber to allow the delivery pipe to capture as much high-pressure water as possible during the impulse).
The pressure in the pump falls. The first valve re-opens to allow water to flow and build up momentum again. The second valve closes.
The cycle repeats.
The delivery pipe can rise some distance above both the pump and the source of the water. For example, if the pump is 10 feet below the pond, the delivery pipe might be up to 100 feet above the pump.
You can see that the one big disadvantage of a ram pump is that it wastes a lot of water. Typically, only about 10% of the water it consumes actually makes it up the delivery pipe. The rest flows out of the pump as the water builds momentum.
There is nothing magical happening in a ram pump. A different design that accomplishes the same thing might work like this:
Water flows downhill from the pond and drives a water wheel.
The water wheel is connected to a conventional shaft-drive pump (a reciprocating pump, a centrifugal pump, etc.)
The pump moves water uphill.
This design has more moving parts, but it accomplishes the same thing and has the advantage that it scales to any size very easily. The idea of using the energy of flowing water has been around for a long time!