Ovaco

Pressure Vessels (Surge Vessels, pressure equalization)

Pressure Vessels (Surge Vessels, pressure equalization)

Bladder Type Surge Tank

Bladder Type Surge Tank is a type of pressure tank designed to stabilize surge pressure and ensure the safety of hydraulic systems. This type of tanks provide physical separation between gas and liquid thanks to a flexible membrane (bladder) inside. OVACO ENGINEERING offers reliable solutions to its customers by producing high performance and durable products in this field.


Working Principle of Bladder Type Surge Tank:


Flexible Bladder:

The membrane inside the tank separates gas (usually nitrogen) and liquid.

This structure prevents the gas from coming into contact with the liquid and ensures long-term stability.

Pressure Balancing:

Sudden pressure fluctuations in the system are absorbed by the compression of the gas inside the tank.

In this way, the water hammer effect is prevented and the system is protected.

Advantages:



High Efficiency:

It prevents damage to the systems by balancing pressure fluctuations quickly and effectively.

Low Maintenance:

Easy replacement of the membrane is possible thanks to the bladder type structure.

Minimizes problems such as gas leakage.

Durability:

The materials used by OVACO are resistant to harsh industrial conditions.

Flexibility:

It can be customized for different capacity and pressure requirements.


Translated with DeepL.com (free version)

Compressor Type Balance Tank

Compressor Type Surge Tank is a pressure equalization equipment used in industrial systems to control sudden pressure changes (surge pressure) and ensure the stability of the system. This type of tanks regulate the gas pressure with a compressor system to stabilize the pressure. OVACO ENGINEERING provides advanced engineering solutions in this field and designs high quality products tailored to customer needs.


How Compressor Type Surge Tank Works (Working Principle):


Pressure Management:

The gas (usually nitrogen) inside the tank is kept under constant pressure with the help of a compressor.

In case of sudden pressure spikes, the gas is compressed, helping to stabilize the pressure.

Compressor Support:

When the system pressure drops, the compressor is activated to keep the gas pressure in the tank at an ideal level.

Surge Control:

Absorbs sudden pressure changes that occur in cases such as pump or valve shutdown.

Advantages:


Automatic Pressure Adjustment:

Thanks to the compressor system, the gas pressure in the tank is automatically adjusted.

High Stability:

Increases the safety of the system with continuous pressure control.

Flexible Operation:

It can operate in a wide pressure range.

Long Lifespan:

Provides long-term use thanks to durable design and quality materials.

Dip-Tube Type Balance Tank

Dip Tube Type Surge Tank is a specialized pressure equalization equipment used in industrial systems to stabilize sudden pressure fluctuations and keep the liquid level under control. Such tanks optimize the interaction between liquid and gas inside the tank to ensure the safety of the system and the stability of the flow. OVACO ENGINEERING adheres to high quality standards in the production of Dip-Tube Type Balance Tanks, offering innovative engineering solutions in this field.


Working Principle of the Dip Tube Type Balance Tank:


Use of Dip Tube:

The dip tube in the tank provides a controlled circulation of the liquid or gas.

It keeps the liquid stable by absorbing sudden pressure fluctuations.

Pressure and Liquid Level Management:

The gas pressure in the tank is transferred to the liquid, thus stabilizing sudden changes in the system.

Gas-Liquid Interaction:

The special design of the tank prevents liquid and gas from mixing, which ensures long-term stability.

Advantages:



Prevents Sudden Pressure Changes:

Prevents harmful effects such as water hammer.

Reliable Performance:

Thanks to the bottom tube design of the tank, it provides long life and trouble-free operation.

Easy Integration:

Can be easily integrated into existing systems.

Low Maintenance Requirement:


Balance Vessel

Balance Vessel is a type of tank or vessel used to balance the pressure difference between fluids, flow or liquid level in industrial systems. This equipment is designed to ensure stability in hydraulic and process systems and to extend the life of the equipment. OVACO ENGINEERING offers high quality products that comply with international standards in this field.


Tasks and Advantages of Balance Vessel


Pressure Balancing:

Provides stable operation by balancing the pressure between different systems.

It prevents damage to equipment by absorbing sudden pressure changes.

Flow Stability:

Ensures continuous and regular flow, which increases process efficiency.

Energy Efficiency:

Allows pumps and equipment to operate more efficiently.

System Protection:

Prevents damage due to high pressure or fluid imbalance.

Product Features of OVACO ENGINEERING



Material Quality:

Manufactured with corrosion resistant stainless steel and special alloys.

Resistant to high temperature and pressure.

Flexible Design:

Production is made in different capacities and specifications according to customer needs.

Low Maintenance Requirement:

Provides long-lasting use thanks to its durable design.

DRAM (Direct Air-Cooled Modular Systems)

DRAM is an innovative modular solution designed for large volume air-cooling systems, especially for the Oil & Gas industry. Also known as Direct Air-Cooled Modular Systems, this technology meets the industry's important needs in terms of energy efficiency and sustainability.


Highlights


Modular Design: Scalable and easy to assemble according to different capacity needs.

Direct Air Cooling: Reduces water usage to zero by providing air cooling.

Environmentally Friendly: Optimizes energy consumption and reduces carbon footprint.

Compact Structure: Space-saving ergonomic design.

High Performance: Maximum heat transfer and efficiency.

Areas of Use



Oil and Gas Processing Plants: Natural gas liquefaction, vapor recovery and process cooling.

Power Plants: Turbine exhaust cooling and steam condensation.

Chemical and Petrochemical: Process gas cooling and energy recovery.

Industrial Production Plants: Air cooling in production processes requiring high temperatures.