Initially, compressed air system was deployed for substantial hydraulic accumulators. However, the charging nitrogen gas systems is the most effectual way for filling hydraulic accumulators owing to the reasons that nitrogen charging system can be determined in a straight away line from the nitrogen bottle supply. There is no need of supplementary energy to drive it. Also, the charging systems can be mobile. Hydraulic accumulators are the ideal choice when fluids are indispensable to be stored under pulsations and pressure in hydraulic systems must be minimized.

As liquids are incompressible, hydraulic accumulators use compressibility of nitrogen gas to store liquids. Nitrogen is an inert gas, which will not respond in the presence of external circumstances such as compression, heat, and pressurization. The charging nitrogen gas systems include nitrogen portable charging unit, which is a portable source of condensed nitrogen gas that is designed to meet the necessities for portable aircraft gaseous ground support.

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Charging nitrogen gas systems make fast and cost controlling topping up of gas pre-charge pressure in the diaphragm, piston accumulators, and bladders. Nitrogen is the cheapest & most easily available gas in the market as compared to the other gases such as hydrogen, oxygen and other inert gases, which makes the charging nitrogen gas systems constructive for charging accumulations with nitrogen gas and thus acts as one of the major factors fueling the growth of the charging nitrogen gas systems market.

Hydraulic accumulators are utilized as energy source to actuate the brake calipers on the power turbines. An important continuance problem with all the accumulators is that they do not have appropriate nitrogen gas charging pressure at all times. The above-mentioned reason remains one of the major challenges for the charging nitrogen gas systems; thus likely to hamper the growth of the global charging gas systems market during the forecast period of 2014-2025.

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