Sentences with phrase «air circulation systems»

Rooms are equipped with advanced air circulation systems, and uses push - back racking systems to improve operating efficiencies.
Moreover, the roll - up mesh design provides proper air circulation system to the babies.
ENERGY STAR laboratory grade equipment can reduce energy consumption and lower utility bills through the use of technologies such as more efficient cooling compressors, advanced microprocessor temperature control and defrost sensors, more efficient high - capacity air circulation systems, and innovative refrigerants.
If your post surgical infection was caused by the Bair Hugger forced air circulation system utilized at the hospital, you may be entitled to recover substantial compensation.
These include auto - off lighting combined with the use of LED lights; energy efficient low - E glass used in glass door refrigerators; more efficient cooling compressors; more advanced microprocessor temperature control and defrost sensors; more efficient high - capacity air circulation systems, as well as hot gas defrost solutions; and low global warming potential, energy efficient alternative refrigerant options.
The Cochran Firm, D.C. is offering free case reviews to patients who believe their infections were caused by the Bair Hugger forced air circulation system.
My least favorite things about this car has to be the air circulation system inside the vehicle.
Among them are optional headlamps studded with Swarovski crystals, and an air circulation system that fires a variety of scents at occupants.
PetAirapy systems easily surpass the capabilities of ordinary HVAC or air circulation systems and surface - cleaning components.
The A350 is a fantastic aircraft with some very clever new technology but, while the aircraft is doing its best to enhance passenger comfort with larger windows and excellent heating / cooling / air circulation systems, I haven't heard of a single thing that Lufthansa is doing with the A350 that will improve the experience for passengers... perhaps they're saving something for closer to launch date?
The observed climate is just the equilibrium response to such variations with the positions of the air circulation systems and the speed of the hydrological cycle always adjusting to bring energy differentials between all the many ocean and atmosphere layers back towards equilibrium (Wilde's Law?).
3) The global albedo changes necessary to produce observed climate variability and the changes in solar energy input to the oceans can be explained by the latitudinal shifts (beyond normal seasonal variation) of all the air circulation systems and in particular the net latitudinal positions of the three main cloud bands namely the two generated by the mid latitude jet streams plus the Inter Tropical Convergence Zone (ITCZ).
Also one would need to observe the air circulation systems moving latitudinally BEFORE the ocean sea surface temperatures change and I don't think that happens does it?
Stephen Wilde (00:59:57) «Also one would need to observe the air circulation systems moving latitudinally BEFORE the ocean sea surface temperatures change and I don't think that happens does it?»
If it were not so then climate would be very much more stable than it is with a virtually fixed latitudinal position for the air circulation systems and climate variation being limited only to a basic level of chaotic variability.
4) The evidence that those variations go beyond a basic level of chaotic variability is those cyclical latitudinal shifts in the air circulation systems which always follow changes in SSTs on at least the 3 time scales we have evidence for.
No significant imbalance occurs despite large changes in the rate of energy release by the oceans and significant changes in the speed of the hydrological cycle via changes in the air circulation systems.
They must also model the air circulation systems correctly as regulators of energy transmission at both the sea / air interface and the air / space interface.
The trade winds of the Pacific represent the eastern and equatorial parts of the air circulation system; they originate in the subtropical high - pressure zones that are most pronounced over the northeast and southeast Pacific between latitudes 30 ° and 40 ° N and S, respectively.
The air circulation systems move latitudinally poleward or equatorward depending on whether there is net cooling or warming of the air at a gradual if variable rate all the time and climate shifts in any given location depend mainly on the changing position of that location in relation to the latitudinal position of the major air circulation systems.
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