Energy-saving simulation process for snow-burning fireplace
Abstract
This invention provides an energy-saving simulation process snowmaking fireplace, including: a housing, at the center position of the top inner wall of the heating chamber is a snowmaking device, both the upper and lower sides of the housing are equipped with air outlets, a simulation snow collection device is set at the center position of the bottom inner wall of the heating chamber, two simulation snow transport devices are respectively set on the left and right sides inside the heating chamber, and the air outlet device is set between the housing and the heating chamber. The energy-saving simulation process snowmaking fireplace provided by this invention sets multiple air outlets. During the process of simulating snowfall, cold air can flow outward from the air outlets, thus achieving realistic snowfall operations both visually and tactically, enhancing the authenticity of the entire device.
Claims
exact text as granted — not AI-modified1 . An energy-saving simulation process snowmaking fireplace, characterized in that it comprises:
The housing, one side of which is provided with a heating chamber, the center of the inner wall of which is provided with a snow falling device, and the surface of the housing is provided with an air outlet on both sides; A simulated snowflake storage device, the simulated snowflake storage device is set at the center of the bottom wall of the heating chamber; Two simulated snow transport devices, two of the simulated snow transport devices are respectively set on the left and right sides inside the heating chamber; Exhaust device, the exhaust device is set between the housing and the heating chamber, the exhaust device includes two conveying pipes, one side of the two conveying pipes sequentially has multiple exhaust heads from left to right, between the two conveying pipes is connected a U-shaped conveying pipe, one end of one of the conveying pipes is connected to a connecting pipe, both sides of the conveying pipes are equipped with fixing hooks, the inner wall of the heating chamber has an installation hole that is compatible with the connecting pipe; The refrigeration machine body, the refrigeration machine body is connected to one end of the connecting pipe.
2 . The energy-saving simulation process snowmaking fireplace according to claim 1 , characterized in that the snowmaking device comprises a first rotary motor, one end of the output shaft of the first rotary motor is fixedly connected to a first rotary rod via a coupling, the bottom end of the first rotary rod is connected to a rotating disc, the rotating disc is equipped with a simulated snowflake collection hopper, and multiple simulated snowflake guide pipes are set at the bottom of the simulated snowflake collection hopper.
3 . The energy-saving simulation process snow-burning stove according to claim 1 , characterized in that the simulation snowflake collection device comprises a simulation snowflake collection hopper, the sides of which are provided with simulation snowflake discharge ports, one side of the simulation snowflake discharge port is equipped with a simulation snowflake shield, and a compression spring is installed between the simulation snowflake shield and the simulation snowflake collection hopper.
4 . The energy-saving simulation process snow-burning stove according to claim 1 , characterized in that the snow-burning stove comprises a snow-simulation transport device including two rotating blades, each end of which is connected to a first rotating shaft, one end of the first rotating shaft is connected to a first bevel gear, one side of the first bevel gear meshes with a second bevel gear, the surface of the second bevel gear is connected to a ball screw, the surface of the ball screw is threaded with a nut, one side of the nut is connected to a transport hopper, one side of the bottom of the transport hopper is connected to a lower pressing block, and one side of the transport hopper is connected to a rotating shield through a rotating shaft.
5 . The energy-saving simulation process snow-burning stove according to claim 1 , characterized in that the heating chamber is provided with a ventilation plate on both sides thereof, and the top and bottom of the ventilation plate are connected with an extending plate on one side thereof.
6 . The energy-saving simulation process snow-burning stove according to claim 1 , characterized in that the surface of the refrigeration unit is provided with a protective cover.
7 . The energy-saving simulation process snow-burning stove according to claim 6 , characterized in that the protective cover is provided with a detachable component on one side, the detachable component comprises a rectangular slot, one side of the rectangular slot is provided with a heat dissipation net, between the heat dissipation net and the protective cover there is a fixing block, and between the fixing block and the protective cover there is a bolt.Join the waitlist — get patent alerts
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