FIELD: camouflaging.
SUBSTANCE: invention relates to camouflaging, in particular, to camouflaging of mobile and stationary objects. Camouflaging device includes hollow element, inside of which during operation of device movement of a telltale gas is performed, wherein hollow element is arranged butt to telltale gas occurrence point, and output and/or sampling of telltale gas using device owing to use of hollow element in place and/or direction different from point and/or directions and/or telltale intake gas in place of occurrence of a telltale gas and providing difficult detection, and/or recognition of camouflaged object, and/or guiding high-precision weapons to camouflaged object, wherein camouflaging device may include one or several fans, creating flow of telltale gas, and/or heaters, and/or coolers, and/or other devices, changing state of telltale gas in order to reduce its disclosing properties and do not creating flow against movement of telltale gas, including, but not exclusively located inside hollow element; wherein hollow element can be completely or partially installed inside or outside camouflaged object, can be rigid and/or flexible structure consisting of separate elements with possibility of their connection and disconnection or one-piece, as well as hollow element can be made from material, which hides at least one tell-tale feature, including heat-insulating, and/or heat-reflecting, and/or having camouflaging colour, and/or radar-absorbing, etc., and camouflaging device can in general contain simulator of camouflaged object or part of camouflaged object in at least one wavelength range and simulator attachment facility to camouflaged object, wherein simulator is located beyond camouflaged object, including, but not exclusively with supply of a telltale gas in simulator via hollow element.
EFFECT: technical result is higher security of camouflaged objects from detection and destruction by high-accuracy ammunition by reducing signature of give-away gases and simulating camouflaged object or its part.
1 cl, 2 dwg
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Authors
Dates
2016-08-20—Published
2015-02-20—Filed