Installation Context
cinema, buildings for public entertainments, theaters.
Cooling Technologies for Shopping Centers
The air conditioning systems in shopping centers must ensure low noise levels: the same goes for the attached coolers. Therefore, the engineering firms and plant installers are concerned with installing cooling solutions with sound-absorbing technologies, mostly evaporative. A further plus is the need to place the machine in confined spaces.
Requirements
flexible configurations, long life, easy maintenance, low noise.
Overview of Cooling Technologies torri di raffreddamento a circuito aperto silenziose, torri di raffreddamento con ventilatore centrifugo, torri di raffreddamento in versione “Silent”, sistemi integrati di gestione.
Cooling technologies for shopping centers: an operational example
In some of its works, MITA Cooling Technologies has installed cooling technologies for shopping centers whose air conditioning system was based on a controlled temperature water circuit (thermostated water).
This system is based on WLHP (Water Loop Heat Pumps) technology, or a “Ring of water and heat pumps” system: the common centralized system produces water at a controlled temperature through a thermal power plant in winter and evaporative coolers for the rest of the ‘year. The water temperature itself is close to the ambient temperature and is distributed to the individual commercial units through a network or “ring” of “thermostated” water. The heat pump air conditioning machines for the air conditioning of the premises are then connected to the latter.
Practically speaking, the machine exchanges heat with the water in the ring and therefore tends to heat up in the summer and cool down in the winter. The air conditioner receives thermostated water, from the delivery unit, for condensation in summer and for evaporation in winter. Through the return detachment, it returns the water used to the general distribution system instead.
To dispose of the excess heat in the water ring outside, during the prevailing operation of the cooling units, there are several alternatives. Since the fundamental requirement for the proper functioning of a WLHP system is the cleaning of the pipes, without the entry of dirt, dust and more from the outside it is necessary not to use cooling systems open to the atmosphere: in these contexts, closed circuit cooling or other indirect exchange coolers.
Ask for InformationOur ranges of products
Industrial Chillers
Output temperatures down to -20 ° and remote control as a standard: the industrial chillers proposed by MITA are suitable for all the industrial processes.
Industrial Dry Coolers
Ease of installation and use, remote control and zero water consumption. Industrial dry coolers are the right solution for cooling fluids requiring medium-high output process temperatures.
Spare Parts
Keep your cooling system efficient and safe by replacing its obsolete components. The result? It will look like a newly installed technology.
PAD-V Adiabatic Cooler
Ideal for water and energy saving maintaining a high efficiency. All operations are managed by PLC with the possibility of remote management in “Industry 4.0” mode. Suitable for both industrial and HVAC fields of application.
PAD-VR Adiabatic Condenser
Ideal for water and energy saving maintaining a high efficiency. All operations are managed by PLC with the possibility of remote management in “Industry 4.0” mode. Both HVAC and refrigeration sectors can be served.
PMS Evaporative Open-Circuit Cooling Tower
It is a cooling tower for industries of any type and for any water quality: very compact, self-supporting, light and long-lasting non-corrodible fiberglass structure.
PME-E Open-Circuit Evaporative Cooling Tower
A light and non-corrodible open-circuit evaporative cooling tower: process industry and HVAC operators will be able to count on its multiple versions and ease of transport and installation.
PMM Modular Cooling Tower
This is a series of large industrial cooling towers for power generation, steel and aluminium processing, cogeneration and other large production sites. Efficiency, high performance, reduced installation and transport costs are granted.
PU Industrial Cooling Tower
The PU series field-erected industrial cooling tower can serve very large plants: especially oil & gas, chemical and power generation. Available for all industrial water. Different materials are supplied according to project needs: concrete, steel, fiberglass and pultruded.
MCT Open-Circuit Evaporative Cooling Tower
Compact design and reduced dimensions: a range of evaporative cooling towers with centrifugal fans for special space configurations.
Economax Cooling Tower for Ice-Cream Parlous
Ice cream shops waste from 3,000 to 7,000 euros of water every year to cool their equipment: Economax cooling tower for ice cream shops cut water consumption of display cases, batch freezers and pasteurizers. A compact, silent and environmentally friendly solution.
MCC Closed-Circuit Evaporative Cooling Tower
Some industries need to keep the chemical-physical characteristics of the process fluids unchanged: in these cases, MCC closed-circuit evaporative cooling tower joins the game. Possibility to work in free-cooling mode.
MCC-T Modular Closed-Circuit Evaporative Cooling Tower
MCC-T closed circuit evaporative tower allows to keep process fluids unaltered even in large plants. Some examples of applications: oil & gas, food industries, large paper mills. Easy transport of modules over long distances with reduced costs.
MCE Industrial Condenser
Compact, efficient and easily accessible: MCE industrial condenser ensures refrigeration operators all the operating standards of its own technology class. The typical MITA evaporative coolers’ durability over time is a plus.
Alchemist Subcooler
Performance, consumption savings and environmental sustainability thanks to a patented plug & play subcooler: the solution for CO2 or other refrigerant systems.
MITA Control System
MITA Control System allows programming and modulating cooler’s performances during its use in a very simple way. Electricity consumption optimization is granted.
Salinity Dosing and Control Stations
Cooling tower water has to be properly managed to keep the cooler always safe and efficient. Automatic solutions should be preferred. Systems for conditioning product dosing and salinity control: the heart and soul of tower water treatment.
Reinforced Concrete Tanks
A solution to properly (and separately) manage the hot and cold water of the evaporative system. Valves, solenoid valves, taps and fittings are supplied together with the concrete tanks.
MITA Systems Cooling Stations
Complete solutions specifically studied and designed for a more efficient and automatic management of evaporative cooling towers and coolers.
MITA IoT Platform 4.0
Your cooler is transformed into a connected cooler “industry 4.0”: performance, consumption, maintenance just a click away.
Some MITA Projects
MCC for the Rotor Dynamics Lab (University of Pisa)
MITA Cooling Technologies and technological research in the academic field: in 2015 we took part in the tender for a cooling system of the two engine test stands annexed to the Rotordynamics Laboratory of the University of Pisa: an area of 200 m2 in the San Rossore Protected Park. The result was the installation of an MCC closed circuit evaporative cooling tower.
Learn MoreEvaporative condensers for a brewery in Cuba
In 2015 a Cuban brewery needed to replace the ammonia condensation system (NH3) attached to the compressors of the refrigeration units: MITA Cooling Technologies installed 6 evaporative condensers, also modernizing the production process.
Learn MoreCreta Farm cuts energy bill with Mita adiabatic technology
After a devastating fire Creta Farm decided to rebuild and install a cutting edge energy efficient solutionfor the production plant in Crete. The prestigious assignment to design the new cold storage went to ecoRef in Athens. They designed an indirect cooling system with R407F and Temper -15 as secondary fluid using adiabatic Mita technology. The results have exceeded the expectations with significantly reduced energy costs.
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