STEAM-ASSISTED GRAVITY DRIVE SYSTEM
20180238296 ยท 2018-08-23
Inventors
Cpc classification
F01K27/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01K1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03G7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01K21/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F03B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B17/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2210/13
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A steam-assisted gravity drive system is provided. The steam-assisted gravity drive system has a series of repeating steam chambers separated by inner baffles, wherein the series of repeating steam chambers define a circular loop about a hub. The steam-assisted gravity drive system with the addition of a heat source is adapted to unidirectionally change steam from one steam chamber to spraying condensation flowing into an adjacent steam chamber. Thereby, the steam-assisted gravity drive system generates force through this unidirectional transfer of the fluid throughout the loop of steam chambers so that the loop rotates about its hub under the further influence of gravity, wherein the hub can be attached to a mechanism for applying rotation force thereto.
Claims
1. A steam-assisted gravity drive system, comprising: a series of connection tubes defining a loop, wherein each pair of adjacent connection tubes of the series of connection tubes are interconnected by a steam drive chamber; each steam drive chamber defines a chamber space as the steam drive chamber extends from an entry end to an opposing condensing end, both such ends interconnect said pair of adjacent connection tubes; and each condensing end providing a condensing eyelet fluidly connecting to the chamber space, wherein the condensing eyelet is adapted to change a substance from a gaseous phase to a liquid phase.
2. The steam-assisted gravity drive system of claim 1, further comprising a hub disposed at a center of the loop.
3. The steam-assisted gravity drive system of claim 2, further comprising a plurality of spaced apart supports radially extend from the hub to the loop.
4. The steam-assisted gravity drive system of claim 1, further comprising a heat source operatively associated with each connection tube.
5. The steam-assisted gravity drive system of claim 4, wherein the heat source is external to the loop.
6. The steam-assisted gravity drive system of claim 4, wherein each connection tube extends between a condensation end to a gaseous end, wherein each condensation end is fluidly connected to the condensing end of an associated steam drive chamber, and wherein the heat source is operatively associated with each condensation end.
7. The steam-assisted gravity drive system of claim 1, wherein the substance is water housed in the loop.
8. A steam-assisted gravity drive system, comprising: a series of connection tubes defining a loop, wherein each pair of adjacent connection tubes of the series of connection tubes are interconnected by a steam drive chamber; each steam drive chamber defines a chamber space as the steam drive chamber extends from an entry end to an opposing condensing end, both such ends interconnect said pair of adjacent connection tubes; each connection tube extends between a condensation end to a gaseous end, wherein each condensation end is fluidly connected to the condensing end of an associated steam drive chamber; each condensing end providing a condensing eyelet fluidly connecting to the chamber space, wherein the condensing eyelet is adapted to change a substance from a gaseous phase to a liquid phase; a hub disposed at a center of the loop; a plurality of spaced apart supports radially extend from the hub to the loop; and a heat source operatively associated with each condensation end.
9. The steam-assisted gravity drive system of claim 8, wherein the heat source is external to the loop.
10. The steam-assisted gravity drive system of claim 8, wherein the substance is water housed in the loop.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0006]
[0007]
[0008]
[0009]
DETAILED DESCRIPTION OF THE INVENTION
[0010] The following detailed description is of the best currently contemplated modes of carrying out exemplary embodiments of the invention. The description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims.
[0011] Broadly, an embodiment of the present invention provides a steam-assisted gravity drive system having a series of repeating steam chambers separated by inner baffles, wherein the series of repeating steam chambers define a circular loop about a hub. The steam-assisted gravity drive system with the addition of a heat source is adapted to unidirectionally change steam from one steam chamber to a spraying condensation flowing into an adjacent steam chamber, which in turn is changed to steam that flows to yet another adjacent stream chamber. Thereby, the steam-assisted gravity drive system generates rotational force through this unidirectional transfer of the fluid throughout the circular loop of steam chambers so that the loop rotates about its hub under the further influence of gravity, wherein the hub can be attached to a mechanism for applying rotation force thereto.
[0012] Referring to
[0013] Referring to
[0014] The condensation end 44 may be provided with an additional heat source 50. The heat source 50 may be internally or externally provided. The heat source 50 changes the liquid fluid 24 into heated gaseous form 20, which migrates or rises toward the gaseous end 42 and into the condensing chamber 10, wherein the condensing eyelet 14 changes the gaseous form 20 back into the liquid phase 24 spraying into the condensation end 44 of the adjacent connection tube 16.
[0015] In effect, the steam-assisted gravity drive system 100 provides a series of repeating steam chambers 10 and connection tubes 16 separated by inner baffles so that adjacent connection tubes 16 are fluidly connected by condensing eyelets 14. The condensing eyelets 14 drive the spraying condensation 22 unidirectionally through the series of connection tubes 16 of the steam-assisted gravity drive system 100 as the heat source 50 transfers heat to the otherwise closed system gas exchange. Thereby, the steam-assisted gravity drive system 100 generates force through the unidirectional transfer of the fluid forcing the series of tubes 16 to rotated about its hub 18 under the influence of gravity as the resulting fluid 24 sequentially accumulates in adjacent condensation ends 44, as illustrated in
[0016] A method of using the present invention may include the following. The steam-assisted gravity drive system 100 disclosed above may be provided. The hub 18 may be coupled to various mechanisms to provide torque or rotational force thereto. In certain embodiments, the hub 18 may be coupled to an axial impingement to facilitate the motion of any attached objects or gearing. Likewise, the hub 18 may be attached to a number of items requiring locomotion.
[0017] It should be understood, of course, that the foregoing relates to exemplary embodiments of the invention and that modifications may be made without departing from the spirit and scope of the invention as set forth in the following claims.