vapor-liquid ratio - traducción al ruso
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vapor-liquid ratio - traducción al ruso

L/G; Liquid to gas ratio

vapor-liquid ratio      

нефтегазовая промышленность

соотношение потоков газ-жидкость (в ректификационной колонне)

liquids         
  • [[Surface wave]]s in water
  • A [[lava lamp]] contains two immiscible liquids (a molten wax and a watery solution) which add movement due to convection. In addition to the top surface, surfaces also form between the liquids, requiring a tension breaker to recombine the wax droplets at the bottom.
  • Cavitation in water from a boat propeller
  • Thermal image of a sink full of hot water with cold water being added, showing how the hot and the cold water flow into each other.
  • Lennard-Jones model fluid]].
  • deposition]] can occur.
  • Structure of a classical monatomic liquid. Atoms have many nearest neighbors in contact, yet no long-range order is present.
  • A simulation of [[viscosity]]. The fluid on the left has a lower viscosity and Newtonian behavior while the liquid on the right has higher viscosity and non-Newtonian behavior.
NEARLY INCOMPRESSIBLE FLUID THAT CONFORMS TO THE SHAPE OF ITS CONTAINER BUT RETAINS A NEARLY CONSTANT VOLUME INDEPENDENT OF PRESSURE
Liquid State; Liquid state; Liquid phase; Liquids; Liquid level
жидкое топливо
liquid         
  • [[Surface wave]]s in water
  • A [[lava lamp]] contains two immiscible liquids (a molten wax and a watery solution) which add movement due to convection. In addition to the top surface, surfaces also form between the liquids, requiring a tension breaker to recombine the wax droplets at the bottom.
  • Cavitation in water from a boat propeller
  • Thermal image of a sink full of hot water with cold water being added, showing how the hot and the cold water flow into each other.
  • Lennard-Jones model fluid]].
  • deposition]] can occur.
  • Structure of a classical monatomic liquid. Atoms have many nearest neighbors in contact, yet no long-range order is present.
  • A simulation of [[viscosity]]. The fluid on the left has a lower viscosity and Newtonian behavior while the liquid on the right has higher viscosity and non-Newtonian behavior.
NEARLY INCOMPRESSIBLE FLUID THAT CONFORMS TO THE SHAPE OF ITS CONTAINER BUT RETAINS A NEARLY CONSTANT VOLUME INDEPENDENT OF PRESSURE
Liquid State; Liquid state; Liquid phase; Liquids; Liquid level
1) ликвидный, быстрореализуемый
2) текучий

Definición

НЕЛИКВИД
имущество, которое не может быть использовано в данном предприятии и подлежит ликвидации, продаже.
Продажа неликвидов.

Wikipedia

Liquid-to-gas ratio

An important parameter in wet scrubbing systems is the rate of liquid flow. It is common in wet scrubber terminology to express the liquid flow as a function of the gas flow rate that is being treated. This is commonly called the liquid-to-gas ratio (L/G ratio) and uses the units of gallons per 1,000 actual cubic feet or litres per cubic metre (L/m3).

Expressing the amount of liquid used as a ratio enables systems of different sizes to be readily compared. For particulate removal, the liquid-to-gas ratio is a function of the mechanical design of the system; while for gas absorption this ratio gives an indication of the difficulty of removing a pollutant. Most wet scrubbers used for particulate control operate with liquid-to-gas ratios in the range of 4 to 20 gallons per 1,000 actual cubic foot (0.5 to 3 litres per actual cubic metre).

Depending on scrubber design, a minimum volume of liquid is required to "wet" the scrubber internals and create sufficient collection targets. After a certain optimum point, adding excess liquid to a particulate wet scrubber does not increase efficiency and in fact, could be counter-productive by causing excessive pressure loss. Liquid-to-gas ratios for gas absorption are often higher, in the range of 20 to 40 gallons per 1,000 actual cubic foot (3 to 6 litres per actual cubic metre).

L/G ratio illustrates a number of points about the choice of wet scrubbers used for gas absorption. For example, because flue-gas desulfurization systems must deal with heavy particulate loadings, open, simple designs (such as venturi, spray chamber and moving bed) are used. Also, the liquid-to-gas ratio for the absorption process is higher than for particle removal and gas velocities are kept low to enhance the absorption process.

Solubility is a very important factor affecting the amount of a pollutant that can be absorbed. Solubility governs the amount of liquid required (liquid-to-gas ratio) and the necessary contact time. More soluble gases require less liquid. Also, more soluble gases will be absorbed faster.

¿Cómo se dice vapor-liquid ratio en Ruso? Traducción de &#39vapor-liquid ratio&#39 al Ruso