DEVICE FOR INTENSIFYING OR REVERSING A GEO-GRAVOMAGNETIC FIELD
20180112393 ยท 2018-04-26
Inventors
Cpc classification
International classification
Abstract
The invention relates to a device for intensifying or reversing a geo-gravomagnetic field having a certain frequency in order to add moisture to or remove moisture from moist capillary-capable masonry or such floors, to transport dissolved salts in the capillary water or to colloidally plug the capillaries after the drying out, and to reduce or suppress and to intensify a gravomagnetic disturbance field of a certain frequency by means of at least one electrical conductor, which is arranged in a housing (6) and is wound into a spiral or conically spiral coil (100, 101, 102, 103, 101a, 102a, 103a), wherein the winding diameter of the coil becomes smaller from the outer end to the center of the coil in the manner of a spiral, wherein the largest coil radius (R1) between the outer end of the coil and the coil axis is an integer multiple of half of a grid line width having a permissible deviation of one eighth of a grid line width of the grid network of the gravomagnetic field.
Claims
1-15. (canceled)
16. A device for intensifying or reversing a geo-gravomagnetic field having a certain frequency in order to add moisture to or remove moisture from moist capillary-bearing masonry or such floors, to transport dissolved salts in the capillary water or to colloidally plug the capillaries after the drying out, and to reduce or suppress and to intensify a gravomagnetic disturbance field of a certain frequency, said device comprising: at least one electrical conductor is arranged in a housing, said conductor being wound into a spiral or conical spiral coil having a winding diameter, said winding diameter of said coil decreases from an outer end to a center of said coil in a manner of a spiral, wherein a largest coil radius (R1) between said outer end of said coil and a coil axis is a whole number multiple of half of a grid line width having a permissible deviation of one eighth of the grid line width of a grid network of the gravomagnetic field.
17. The device according to claim 16, wherein said largest coil radius (R1) is a whole number multiple of half of the grid line width with the permissible deviation of one eighth of the grid line width of a Hartmann grid.
18. The device according to claim 16, wherein said largest coil radius (R1) is a whole number multiple of half of the grid line width with the permissible deviation of one eighth of the grid line width of a Curry grid.
19. The device according to claim 16, wherein a spacing between windings of said coil and inwards of said coil axis is smaller by 40% to 60% after each full rotation than a previous spacing.
20. The device according to claim 16, wherein at least one of said coil is applied as a conductor track on one side of an insulating panel.
21. The device according to claim 20, wherein said insulating panel defines a recess in a conductor track-free region.
22. The device according to claim 20, wherein said conductor track has a width which corresponds to 0.007 to 0.018 times or 0.015 times said largest coil radius (R1).
23. The device according to claim 20, wherein said insulating panel has no conductor track in a region about said coil axis, in which case said conductor track-free region has a diameter selected from the group consisting of at least 3 mm, at least 5 mm, and at least 8 mm.
24. The device according to claim 23, wherein said insulating panel includes a first side and a second opposite side that supports at least one counter-wound coil that extends to said coil axis.
25. The device according to claim 24, wherein said coil and said counter-wound coil of both said first and second sides of said insulating panel are short-circuited, preferably at said center.
26. The device according to claim 25 further comprising at least one further coil, which is electrically conductively connected to said coil and said counter-wound coil by way of a connecting conductor, said further coil extending to said coil axis and is retained in spaced-apart relationship above said insulating panel.
27. The device according to claim 26, wherein said further coil is a spiral coil or cylindrical coil, and wherein said coil, said counter-wound coil and said further coil have the same largest coil radius.
28. The device according to claim 26, wherein a diameter of said conductor track-free region is 2 to 4 times, 2.5 to 3.5 times or 3 times a thickness of said connecting conductor.
29. The device according to claim 26, wherein a spacing between said further coil and said insulating panel is an odd whole number multiple 10% of half the radius of said largest coil radius (R1).
30. The device according to claim 26, wherein a thickness of said connecting conductor corresponds to 0.01 to 0.05 times or 0.04 times said largest coil radius.
31. The device according to claim 26 further comprising a pair of brackets having a configuration capable of spacing apart said coil and said counter-wound coil with said further coil, said brackets support said coil, said counter-wound coil and said further coil within said housing.
32. The device according to claim 20, wherein said insulating panel includes an upper side and a bottom side isolated from each other, said upper side includes a plurality of said coil, and said bottom side including a plurality of counter-wound coils.
33. The device according to claim 32, wherein inner ends of said counter-wound coils do not extend to said coil axis to provide a central conductor track-free region.
34. The device according to claim 33 further comprising a second insulation panel arranged in spaced-apart relationship above said insulating panel, said second insulating panel having a configuration capable of polarizing energy of the gravomagnetic field absorbed by said insulating panel which receives the gravomagnetic field.
35. The device according to claim 34, wherein said second insulating panel includes an upper side and a bottom side isolated from each other, said upper side of said second panel includes an additional set of a plurality of said coil, and said bottom side includes an additional set of said counter-wound coils, wherein said additional set of said plurality of coil of said second panel are electrically connected by way of a connecting conductor to said plurality of said coil on said upper side of said insulating panel.
Description
[0027] The invention will now be described with reference to the accompanying drawings. In this context,
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034] The conductor shown in
[0035]
[0036] The device according to the invention shown in
[0037] The bottom panel 1 serves as a receiver which receives the gravomagnetic field. On its upper side 104, it supports, for example, a multi-coil, composed of three coils 101, 102, 103, as shown in
[0038] The panel 2 arranged in spaced-apart relationship above the panel 1 serving as a receiver, represents a polariser and polarises the energy of the gravomagnetic field absorbed by the receiver. The panel 2 likewise supports a multi-coil, e.g. having the appearance according to
[0039] The two panels 1, 2 are preferably arranged parallel to one another and exhibit a spacing which corresponds to an odd whole number multiple 10% of the largest coil half radius.
[0040] As an alternative, instead of or in addition to the upper panel 2 with a multi-coil, a plurality of panels with single coils may be provided, which also need not be aligned parallel to the bottom panel 1, but may instead be oriented e.g. in different spatial directions in order to ensure the discharge of the field with a better depth effect. This alternative is indicated on the right half of
[0041] In a further alternative of the device, instead of the coil printed onto the upper panel, a cylindrical coil 11, which is connected by its two ends to the connecting conductor 3, may be provided in spaced-apart relationship to the bottom panel 1. The cylindrical coil 11 is conductively connected to the coil on the upper side of panel 1 via the connecting conductor 3. The cylindrical coil 11 is retained in spaced-apart relationship to panel 1 by a bracket 8.
[0042] Furthermore, in a modified version of the afore-described device, deflection coils 1 may be arranged above the panel 1 in addition to the cylindrical coil 11, in accordance with the embodiment of
[0043] In a further embodiment of the device according to the invention, the latter includes a panel, which has printed coils on both sides; the coils may, e.g., look like those in