Abstract:
A tabletop white smoke generator using dry ice includes a water tank that is formed by a metal into a receptacle with an open upper side, has a vacuum empty portion formed in the inside of a bottom portion and a sidewall so that hot or cold water can be filled into the receptacle; a dry ice accommodating receptacle that is formed into a receptacle with an open upper side, the receptacle being of a size that can be accommodated within the water tank, wherein dry ice can be accommodated in the receptacle; and a holding portion, which holds the dry ice accommodating receptacle above the water tank, and which with a specific operation can submerge the dry ice accommodating receptacle into the warm water that has been filled into the water tank. A tray can be arranged above the water tank, and submerging the dry ice into the warm water generates dry ice white smoke that gushes out from below the tray.
Abstract:
A fluid storage and dispensing system including a fluid storage and dispensing vessel enclosing an interior volume for holding a fluid. The vessel includes a fluid discharge port for discharging fluid from the vessel. A pressure regulating element in the interior volume of the fluid storage and dispensing vessel is arranged to flow fluid therethrough to the fluid discharge port at a set pressure for dispensing thereof. A controller external of the fluid storage and dispensing vessel is arranged to transmit a control input into the vessel to cause the pressure regulating element to change the set pressure of the fluid flowed from the pressure regulating element to the fluid discharge port. By such arrangement, the respective storage and dispensing operations can have differing regulator set point pressures, as for example a subatmospheric pressure set point for storage and a super atmospheric pressure set point for dispensing.
Abstract:
A gas storage and dispensing system comprising a vessel for holding a gas at a desired pressure. The vessel has a gas pressure regulator in its interior volume, to maintain pressure of dispensed gas at a desired pressure determined by the set point of the regulator. A second gas pressure regulator may be joined in series gas flow communication with the first gas pressure regulator, with the second gas pressure regulator being in initial contact with gas that is dispensed prior to its flow through the first gas pressure regulator, and with the set point pressure of the second gas pressure regulator being at least twice the set point pressure of the first gas pressure regulator.
Abstract:
A valve assembly is provided which includes a valve member for being shifted between open and closed positions, and a control member having an operative position for maintaining the valve member in the open position until a predetermined fluid level is reached and an inoperative position to allow the valve member to shift to the closed position at the predetermined fluid level. The valve assembly is preferably a two-way valve for use with LP tanks to prevent overfilling thereof beyond the maximum predetermined fluid level. A float assembly rises and falls in substantial correspondence to the rising and falling of the fluid level in the vessel space, and an actuator of the fluid assembly shifts the control member at the predetermined fluid level to the inoperative position to allow the valve member to shift to the closed position for preventing further fluid intake into the vessel. The use of the control member affords advantages in terms of providing a rapid and distinct cut off of fluid flow into the tank precisely at the predetermined fluid level.
Abstract:
A storage tank for storing and selectively dispensing pressurized combustible fluid comprises a main tank having a delivery outlet, and a first valve mounted on the main tank in fluid communication with the delivery outlet for controlling the flow of the pressurized combustible fluid from within the main tank to the ambient surroundings. A reserve tank is mounted in supported relation on the main tank and has a reserve outlet disposed within the main tank to permit direct fluid delivery from the reserve tank into the main tank. A selectively openable and closable second valve is mounted on one of the main tank and the reserve tank in operative connection with the reserve outlet for selective movement between a closed configuration whereat flow of the pressurized combustible fluid from the reserve tank through the reserve outlet to the main tank is precluded, and an open configuration whereat flow of the pressurized combustible fluid from the reserve tank through the reserve outlet to the main tank is permitted.
Abstract:
A container for holding a cryogenic, two constituent liquid, is described. The container has two vent conduits disposed at different altitudes or levels inside the container wherein a first, cryogenic liquid is filled into the container until it vents from the first conduit. Then, a second, cryogenic liquid is filled into the container until the combined liquids vent through the second conduit. The vent conduits are preferably positioned to provide intended percentages of the various constituents comprising the liquid.
Abstract:
A backing plate member is securable preferably to a vertically extending wall with at least one or more C-shaped clamping members secured thereto and extending outwardly therefrom approximately horizontally. Each clamping member includes a first and second clamp arm with a unique clamp arm adjustment means attached therebetween and positioned between the clamp base and the cylinder gripping zone defined between the clamp arms. The clamp arm adjustment means preferably includes a locking member for adjusting the spacing between the clamps for adjusting the size of the cylinder gripping zone as well as a spacer member with an arcuate abutment surface mated to the adjustment abutment surface of one of the clamp arms to facilitate contact therebetween at various adjustment positions and contact therebetween as the preferably flexibly resilient clamp arms are resiliently flexed to a more open position during urging of a cylindrically-shaped member therebetween into the cylinder gripping zone.
Abstract:
An aluminum cryogenic tank for launch vehicles has aluminum skirts that extend from each end of a peripheral wall of a tank body. The skirts provide a temperature differential between the tank body and the ends of the skirts so that composite panels can be used in locations longitudinally proximate to the tank body without over stressing either the skirts or the composite panels in regions near their junctures and without sacrificing structural integrity of the composite panels due to an excessively low temperature. The peripheral wall of the tank and the skirts provide a portion of a structural/aerodynamic wall or shell of the launch vehicle.
Abstract:
The present invention provides a heating apparatus for effectively heating a gas container, and more particularly a liquified gas filled in the gas container. The heating apparatus comprises a mounting base having a first space and a second space, each formed in its inside, and an air fan heater for supplying heated air to the first space of said mounting base. In said mounting base, a first through hole communicating with said first space and second through holes communicating with said second space are formed inside of a mounting area, and third through holes communicating with said second space are formed outside of said mounting area. When a gas container is mounted on the mounting base, the heated air is blasted from said first space onto the bottom face of said gas container through said first through hole, whereby heat is effectively transmitted from the bottom face of the gas container to the liquified gas contents of the gas container.
Abstract:
A convoluted or multiple-pass neck tube joins inner and outer elements of a vacuum-jacketed vessel. The additional length of the convoluted neck tube creates an increased distance for heat to conduct from the outer to the inner vessel. As such, a convoluted neck tube can be substitute in place of a straight neck tube or a bellows neck tube to reduce heat gain into the inner vessel. An additional benefit achieved by the convoluted neck tube is greater flexibility of the neck tube, thus yielding more stress resistance.