Situational Atmospheric Vectoring Equipment
20200149795 ยท 2020-05-14
Assignee
Inventors
Cpc classification
F25C3/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D3/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25C2303/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The Situational Atmospheric Vectoring Equipment (abbreviated in this document as equipment) provides a system to disperse an aqueous liquid in a solid or gaseous form. In accordance with an embodiment of the invention, the equipment comprises: a pressure vessel or external source for the aqueous liquid, a mechanical pump if required, a pressure vessel for the cryogen, mechanical lines connecting the aqueous liquid and cryogen allowing for flow control, a nozzle for fluid acceleration and, optionally, a mechanical fan for dispersal. Previous inventions of this category require the proper environmental conditions are present whereas the equipment, as described in this text, does not have this limitation.
Claims
1) A system to take an aqueous liquid and combine it with a cryogen to generate a solid or gaseous form comprising of: a. a source of the aqueous liquid (tank, fresh water, sea water, etc.); b. a mechanical pump to take the aqueous solution from the source through the equipment if required; c. a flow control system (valves and electrical control of the mechanical pump if required) for the aqueous liquid; d. a nozzle to accelerate the flow reducing the pressure of the aqueous liquid; e. a storage vessel for the cryogen; i. wherein if the cryogen is a solid, the storage vessel can be insulated to limit the environmental effects; ii. wherein if the cryogen is a gas or liquid phase, the storage vessel can be a pressure vessel to allow for condensed storage; f. an injection system for the cryogen that can be before or after the nozzle as required and includes the flow control system for the cryogen if required; and g. an optionally adjustable mechanical fan to disperse the flow from the nozzle allowing vectoring of the output.
2) The aqueous liquid from claim 1 can be as simple as water or as complex as desired like a solution that has a higher or lower freezing point to adjust the longevity of the output coupled with a dye agent for easier identification.
3) The cryogen from claim 1 can be of any phase including liquid, solid or gaseous.
Description
BACKGROUND OF THE INVENTION
[0018] In the past number of years there has been a continuously increasing surge of interest in winter sports activities, particularly those activities which need a snow base for operation, e.g., skiing, snowmobiling, snow-shoeing and the like. Unfortunately, in many areas of the world the natural snow fall is not predictable nor sufficient to assure continuous operation during the season of sports areas and resorts having facilities for such winter sports.
[0019] In more recent years continuity of operation and a good snow base has been gained by the use of artificial snow-making machines and apparatus. With such equipment snow-based winter sports activities have been continuously operated during the winter season and extended to geographical areas of the United States; for example, as far south as North Carolina, Virginia and Tennessee even though there is usually not sufficient natural snow in these areas to permit such sports on a regular basis during the season.
[0020] With artificial snow making equipment, it is essential that there be an ambient temperature below about 32 F. (0 C.) for a sufficient period to permit snow making to continue until an adequate depth of snow is deposited on the area, terrain or slope desired to be covered. Therefore, snow making using conventional techniques are limited by the local environmental conditions.
[0021] Many examples illustrate, such as that which is that disclosed by Pierce in U.S. Pat. No. 2,676,471, outlining a machine requiring the low ambient temperature. More recently, as described in U.S. Pat. No. 2,968,164, a different type snow making apparatus that includes a high-powered fan which provides a substantially unidirectional high volume of air at substantially atmospheric pressure and in combination therewith an independent water spray providing means downstream from the fan. Eustis in U.S. Pat. No. 3,703,991 utilizes the principles of earlier U.S. Pat. No. 2,968,164; i.e., a large fan is employed to move particles away from a spray nozzle, but also provides additionally a system wherein compressed air and water are mixed within a first seeding nozzle. Water is added to the air moved by the fan using a second exterior nozzle. Ericson, et al. in U.S. Pat. No. 3,610,527 have taught another modification of earlier U.S. Pat. No. 2,968,164 whereby with an 18 or 20 inch fan blade from about 3-140 gallons of water per minute can be converted into snow depending on the temperature of the feed water. Rice, in U.S. Pat. No. 3,838,815, described a blower projecting air and spraying water particles into the air stream. In all of the examples cited, the requirement for the proper environmental conditions are present whereas the equipment, as described in this text, does not have this limitation.
BRIEF DESCRIPTION OF THE FIGURES (DRAWINGS)
[0022]
[0023] 101 is the source of the aqueous liquid
[0024] 102 is the optional mechanical pump for the aqueous liquid
[0025] 103 is the flow control system for the aqueous liquid
[0026] 104 is the nozzle for the aqueous liquid
[0027] 105 is the storage vessel for the cryogen
[0028] 106 is the injection system for the cryogen mixing with the aqueous liquid
[0029] 107 is the optional adjustable mechanical fan
[0030]
[0031] 101 is the source of the aqueous liquid
[0032] 102 is the optional mechanical pump for the aqueous liquid
[0033] 103 is the flow control system for the aqueous liquid
[0034] 105 is the storage vessel for the cryogen
[0035] 106 is the injection system for the cryogen mixing with the aqueous liquid
[0036] 104 is the nozzle for the mixture between the aqueous liquid and cryogen
[0037] 107 is the optional adjustable mechanical fan