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CHAPTER 55
' 1962 Guide And Data Book
port&nce to make the exterior surface of any refrigerated en closure as near vapor tight as possible. Because it seems to be nearly impossible to make the metal skin of a truck or trailer leakproof by itself, additional sealing of some kind is neces sary. Two methods are becoming increasingly popular: (1) lining tiie inside of the exterior skin with a nonpermeable vapor barrier such as aluminum foil coated with a plastic binder which can be sealed at the joints, or, (2) coating the interior surface of the exterior skin with some type of vapor sealing compound such as neoprene. There are several types of material suitable for either method, and the care taken in installation is of great importance for each. Care must be taken not to destroy the vapor seal where wiring, piping, or frames must penetrate the barrier.
The interior skin need not be, and probably should not be vapor tight. It must be water resistant so that cleaning does not readily soak the insulating material. The movement of water vapor from the insulation to the refrigerated surfaces in the vehicle interior is quite slow as compared with the rate at which it is deposited in the insulation from air entering at higher temperatures and humidities. The best practical com bination of exterior and interior surfaces would be one in which the amount of water vapor passing through the ex terior surface was small, and the interior surface was suf ficiently permeable to allow water vapor to be transferred to the refrigerated surface at an equal rate.
The interior walls of trailers which may be used in vacuum cooling of fresh produce must be vented, preferably into the cargo space, to prevent pressure damage to the inmikted spaces during the pressure changes of the vacuum cooling operation.
Another approach to the moisture barrier problem is the use of insulating materials which are not permeable. These may be preformed and cut to fit, with adequate sealing materials between the cut sections, or may be of the foamed-in-place category. Packaging fibrous-type insulating materials in sealed bags of vapor resisting materials has been tried. Panel-type or sandwich construction has also been tried. This latter construction consists of prefabricating wall, floor and roof sections, usually with metal or plastic skins, with various forms of insulating material, usually block or foamedin-place expanded plastics, and then agsnmhling the sections with either gaskets and mechanically-fastened seams, or by bonding the mating surfaces with numtina or adhesives. These materials will undoubtedly receive greater attention in the future.
One company is now producing insulated bodies of several types with one-piece molded plastic exterior shells. Types and sizes range from a small retail meat truck to 5300 gal tank trailers. High impact resistance and good vapor sealing characteristics are claimed for this type of construction.
One company has manufactured transfer containers, for refrigerated use, of plastic surfaced halaa wood construction assembled with adhesives.
All doors must fit properly and be gasketed to minimis or reduce air and heat leakage. Hardware for these doors must be substantial enough to withstand the severe conditions imposed by road shock, vibration, racking of the body, and the hazards of normal use.
Features to Facilitate Air Crculation
Regardless of the type of refrigerating equipment in a truck or trailer, satisfactory product temperatures during transportation will not be maintained unless the load is sur rounded by proper air or surface temperatures. This is usually
accomplished by moving air circuits, either forced circulation
or by gravity from plate or pipe coils. Product loads which
are to be cooled in transit, or loads which have an inherent
heat producing characteristic must be.arranged so that re.
frieerated air can move not only around the load but llmnirh
it as well. Non-heat producing loads, placed in the vehicle
at the proper temperature need only be blanketed with air at
the points where heat could otherwise enter the product.
Most systems utilizing fans can move an adequate air supply
along the top length of the load. USDA tests have shown that
when fans are used and light density loads approach the
ceiling, or when cross bows interfere with the throw of air
that supply ducts, either permanent or temporary, facilitate
the delivery of air at the rear of the vehicle. Various researchers
have reported the results of tests with temporary or per
manent supply ducts.7-18 Air channels which permit move,
ment of air must be provided on the side walls and inriffe
the rear doors. Special attention must be paid to the move
ment of air along the floor under the load. Many vehicles are
equipped with formed metal floors which provide rhannoig for
air movement along the length of the vehicle. If actual ex
perience shows that sufficient air movement does not occur
then either floor racks which provide significantly greater air
passage area must be used, or return air to the unit must be
ducted from the floor in such a way that increased air flow re
sults, as in tests reported by Redit*-*5 and Johnson el al.n
Fig. 2 shows a longitudinal section of a trailer with a plug-
type unit equipped with a supply duct and a return air plenum
formed by a false front bulkhead extending down to the top
of the floor racks. Note application of wall strips and floor
racks.
floor racks of from 2 to 4 in. of clear height are a simple
way to provide for air movement under the load, floor racks
can be hinged at the ride walls to permit raising for ok-aning
and for loads not requiring the racks. Some operators em
phasize the importance of keeping the air passage sections of
formed metal floors clean of debris or ice.
Semi-envelope and envelope construction,' such as has been
used for rail cars, is now being used for trailers.11*" In this
construction, the ride walls and floor incorporate a minniTmm
depth return duct and the supply air is discharged over the
load toward the rear. Wails and floor are smooth and the load
can be placed directly against these surfaces.
Refrigerated delivery trucks can use curtains to reduce
cold air losses during door openings. Guilfoy described con
struction of such a curatain.16 Trucks with electrically driven
fans often have switches which cut fans off when doors are
opened. Albert
discussed air exchange due to door
openings.47
Special Features for Other Refrigeration Methods
A refrigerated truck or trailer body must be designed with a particular type of refrigerating method in mind. If an icebunker is to be used, provision must be made for the bunker, the ice-loading doors, the fan or blower, the engine or motor for tire fans and drains for the water from the melted ice. Ventilator doors must be installed in the front wall, the bunker partition, and the rear doors if this feature is desiredIf eutectic plates are to be used, the roof or walls must be designed with sufficient support strength. Where a frontmounted plug type unit is to be used, the front wall framies must be adequate to support the weight. A fuel supply must be provided for the engine of independent systems, either gasoline from the truck tank, or from a separate tank mounted on the body, or special fuel tanks for Diesel fuel or liquefied
" Trucks and Trailers
573
petroleum, such as propane or butane. For independent en gine driven systems, battery containers must be provided. For side-loading dry ice bunkers, the door opening must be provided, and the necessary installation made for fans. Where tiro-piece mprhanirAl refrigerating systems are installed, provision must be made for mounting the evaporators, fans, ductc, and for bringing the piping through the floor or walk
AUXILIARY EQUIPMENT
Ice Bunkers and Brine Tanks
Ice and salt brine systems are seldom used. The only brine tanks still in use are for the secondary brine circuit of dry ice systems which use the brine as a secondary refrigerant. These tanks are part of the refrigerating system rather than a special feature of the vehicle. Many produce trailers use water ice in bunkers,1 usually at the nose end of the trailer. A lesser number of trailers and many trucks are equipped with various styles of dry ice bunk ers for low temperature hauling. The auxiliary equipment is amflar for both types. One company produces a trailer for use at both low and produce temperatures by using combina tions of water ice and dry ice with a mechanical refrigerating unit, and a bunker must be provided for this installation.
Air Crculating Fans
The only vehicles which do not have some form of propeller tins or centrifugal blowers for forced circulation of the re frigerated air are those which use top ice, either water or dry, or those which are equipped with extended surface plate or pipe coils and intended for gravity circulation. Since the fans
an integral part of the various types of refrigerating sys tems, they are discussed in the section dealing with the types of refrigerating units. The various fans may be driven by;
1- Direct or belt driven by auxiliary engine. 2- Direct or belt driven from engine of plug type unit. 3. Direct or belt driven by separate electric motor: (a) powered 2 truck electric system, (6) powered by separate generator TMven from truck origin*, (c) powered by separate generator <*nven by friction contact with trailer wheel, or (d) powered by
yttoerator contained in the refrigerating unit.
on.- Powered by flexible shaft from truck engine or power take-
5- Powered by fluid motor of hydraulic system.
Both fans and blowers are used. One manufacturer uses a "k>wcr, direct mounted on a shaft extending through the
front wall of the trailer and installed in a scroll that turns the air 90 deg so that the discharge air is aimed along the same axis as the shaft. An advantage of this installation is that no belt slot is required in the front of the trailer which can admit air when the vehicle is moving.
One type of air circulating system for a dry or water ice bunker vehicle uses a tire driven alternator which produces electric power to operate the fan motor when the vehicle is in operation. This air circulating system, used in conjunction with a heater can be used for heating the vehicle. The fan can be operated from house current when the vehicle is off the road.
Heaters and Heater Fuels
Truck bodies may be heated by several means, such as with hot water from the truck engine, gasoline burning heaters connected to the truck engine manifold, heat exchangers from the engine exhaust, in addition to the methods which may be used with trailers, which must be independent of the tractor engine.
These methods include independent fuel burning heaters using alcohol, kerosine, butane, propane, or charcoal, electric resistance heaters powered by various generator combina tions, and, of course, by reverse cycle, or hot gas, operation of mechanical refrigerating units, regardless of the manner in which they are powered. The majority of trucks or trailers which are heated use either the independent fuel burning heaters or the reverse cycle operation of the mechanical re frigerating unit. Some of the independent fuel-burning heaters are potentially dangerous. It seems bard to believe, but some operators top ice produce loads with crushed or snow ice in below-freezing weather with the incorrect notion that such procedure will protect the product from freezing.
One self-contained thermostatically controlled truck heater may be used directly in the cargo space. Methyl alcohol is used for fuel, and the manufacturer claims there is no hazard from carbon monoxide. A wire guard is available to prevent loose cargo from contacting the heated surfaces. The heater is anchored to the floor, and safety valves shut ofl fuel if" heater is tipped more than 30 deg.
Doors, Floor Racks and Drains
Any refrigerated vehicle must have at least one door for leading and unloading, and some retail vehicles have as many
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