Cooling Needs

Every need has its own technology: which is yours?

Performance, consumption optimization, reduced sound levels: what do you need for your system? Here you will find a list of needs of engineers and plant managers. Each one has its own cooling solutions.

Saving water with cooling technologies

Power of analytics software to cut your bill

Water saving means making ends meet for a plant and supporting the circular economy: cooling technologies must also play their part. Engineers and end-users can make the right choice thanks to increasing ranges of technical solutions and support by advanced analytics software.

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Cooling Technologies_Adiabatic Cooler
Energy Saving with Cooling Technologies

Energy Saving in Cooling Systems

How to cut its use in a few steps

We can select the right cooling system for your sake thanks to advanced energy use analysis software: this is a response to plant managers and engineering firms, who are increasingly focused to green and "bill-cutting" solutions.

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Solutions for Green Refrigerants in Refrigeration

To increase chiller performances

High efficiency, low GWP: this is how commercial and industrial refrigeration carried out with green refrigerants takes place. This is possible with the support of a subcooling unit, which can be easily integrated into the chiller.

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Cooling Technologies in the Supermarkets
Need of Carbon Dioxide Reduction_Photo Mounting for Website

Carbon Footprint Reduction in Cooling

Good for the planet, good for efficiency

It is one of the most important challenges of our time, and it does not translate at all into a critical issue for companies: supporting or following environmental sustainability and circular economy even in cooling, for example, with judicious sorting through advanced software and with remanufactured systems, allows optimizing resources while taking care of the planet. A more than successful combination of ethical development and competitiveness.

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Return on Investment in Cooling Technologies

Innovation pays off over the years

Thinking about the ROI of cooling technologies means balancing innovation and cost in equipment lifecycle: which is the solution? It lies in relying on a good advisor and the widest possible range of coolers. Maybe also on an advanced comparison and analytics software.

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ROI in Cooling Technologies with MITA Efficiency
Sound-Absorbing Solutions in Cooling Technologies

Noise Reduction in Cooling Systems

When performances are silent

Not only do civil and urban contexts prefer cooling systems and low-noise technical solutions: even industries are increasingly sensitive to this issue. Some of the possible solutions are low-speed fans and sound-absorbing technical features.

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Cooling Requirements: Frequently Asked Questions and Expert Answers

È possibile ottenere la massima efficienza energetica attraverso una serie di accorgimenti: ad esempio, dimensionando un sistema di raffreddamento in base alle esatte necessità di raffreddamento, o poco sovra-dimensionato.

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Choosing the best industrial cooling system depends on several factors. Among them: the required cooling capacity.

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There are several types of industrial cooling systems. These include: cooling towers and adiabatic coolers.

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Each type of industrial chiller has its own distinctive characteristics. In general, air cooling has lower efficiencies than other systems, especially in warmer seasons. In contrast, evaporative systems (wet cooling towers and evaporative gas condensers) have higher efficiencies.

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They vary according to type, capacity, and specific characteristics: from a few thousand euros to hundreds of thousands.

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The required cooling capacity, and the consequent sizing of the cooling system, can be calculated by an engineer experienced in industrial cooling.

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Ambient air is the heat-transfer medium that enables water evaporation and thermal exchange. Its temperature and relative humidity determine the efficiency of the process: under dry-air conditions, the evaporative effect is at its maximum.

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Choosing the system best suited to your needs depends on several factors, mainly related to the specifics of the individual plant project to be developed: an exchange of information with a cooling consultant is often helpful.

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The approach to the wet-bulb temperature is the difference between the leaving water temperature (or water–glycol mixture) and the air’s wet-bulb temperature. The smaller this difference, the higher the cooling tower’s efficiency.

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The calculation of ROI in a cooling system is a percentage indicator that shows how much economic value is generated compared to the capital invested.

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The Life Cycle Cost (LCC) is a calculation method used to evaluate the total cost of a cooling system over

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This is not something to worry about: the cooling consultant knows the right questions to ask for the selection of the best cooler, supported also by advanced software for calculation, selection, and resource optimization.

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Yes, there are calculation and sizing software: some manufacturers and cooling consultants use them in recent years to make a selection that is as tailored as possible to the needs of the individual project.

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Selection software makes it possible to simulate thermal loads, climatic conditions, and design variables in order to determine the optimal configuration of cooling towers, dry coolers, or chillers. They provide comparative analyses of capacity, energy consumption, noise levels, and operating costs. The goal is to ensure the right balance between performance, energy efficiency, and operating expenses.

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During the design phase, the use of selection and configuration software makes it possible to compare different solutions—chillers, cooling towers, adiabatic coolers, or dry coolers—by simulating their seasonal performance and heat loads. These digital tools also estimate energy and water consumption and help optimize system sizing.

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Pre-order consultation with an industrial cooling expert is often free of charge: consultant and customer can then jointly evaluate the selection of a cooler, based on specific project needs.

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Cooling needs at a glance

  • Dirty water to be managed
  • Versatile configurations
  • Low consumption
  • Operational continuity
  • Remote control
  • Lower installation costs
  • Different refrigerants to condense/cool
  • Efficiency
  • High thermal gradients
  • Performance guarantees

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