IP Library › Granted Patent US 9,363,984
Granted Patent B2
US 9,363,984 · App. 14/077,046 · Granted Jun 14, 2016

Method of a thermal treatment of bee colonies and a device for pursuance of this method

Inventor: Roman Linhart (Hermanuv Mestec, CZ)
A01K51/00A01K47/06
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,363,984
App. No.
14/077,046
Granted
Jun 14, 2016
Kind
B2
Abstract

A thermal treatment of bee colonies to ensure death of bee parasites in an interior of a hive frame superstructure through transformation of short wave electromagnetic radiation to long wave thermal radiation, where an efficient temperature increase above the value of 40° C. is done by the help of a secondary thermal energy and/or a primary thermal energy when sunrays or a generated radiation permeate through a thermosolar lid on an active surface of a photo-absorbent component and/or go through a transparent screen into the interior of the hive frame superstructure and land on an active photo-absorbent layer of a thermo solar frame. Also described is construction of a device for pursuance of a thermal treatment of bee colonies. Other implementations are also described.

Claims (30)

1. A method of thermal treatment of bee colonies in order to ensure death of bee parasites in an interior of a hive frame superstructure through transformation of short wave electromagnetic radiation into long wave thermal radiation, the method comprising:

removing a thermally insulating removable hive cover from a thermosolar lid of the hive frame superstructure in the presence of solar rays to allow the solar rays to penetrate through the thermosolar lid of the hive frame superstructure and strike a surface adapted to absorb short wave electromagnetic radiation;

allowing an interior of the hive frame superstructure to achieve a temperature increase above a value of 40° C.;

replacing the thermally insulating removable hive cover on the thermosolar lid to block the passage of solar rays through the thermosolar lid and;

allowing additional solar rays to pass through a screen on a side of the hive frame superstructure to strike a thermo solar frame, and wherein thermal energy flows in the interior of the hive frame superstructure upward along the thermo solar frame up to a level of the thermosolar lid and then proceeds in a horizontal direction further into the hive frame superstructure, where it heats a brood nest.

2. The method of thermal treatment of bee colonies according to claim 1 , wherein the thermo solar frame comprises a thermo insulation layer that reflects metabolic heat which is radiated from the brood nest back into the interior of the hive frame superstructure.

3. The method of thermal treatment of bee colonies according to claim 1 , wherein the surface adapted to absorb short wave electromagnetic radiation comprises a first surface of a photo-absorbent component that also comprises a radiant surface that radiates thermal energy into the interior of the hive frame superstructure where it heats the brood nest.

4. The method of thermal treatment of bee colonies according to claim 1 , wherein energy which releases from the surface adapted to absorb short wave electromagnetic radiation in an upward direction is directed from at least one of an external frame part and from a thermo-insulating foil back in a direction toward the photo-absorbent component thereby forming a greenhouse effect in the thermosolar lid.

5. The method of thermal treatment of bee colonies according to claim 1 , wherein thermal energy from the surface adapted to absorb short wave electromagnetic radiation and thermal energy from the thermo solar frame concurrently cause a temperature increase in an interior of the hive frame superstructure and heating of the brood nest.

6. The method of the thermal treatment of bee colonies according to claim 1 , further comprising determining that the temperature inside the hive frame superstructure has exceeded 40° C.

7. A device for thermal treatment of bee colonies in order to cause death of bee parasites in an interior of a hive frame superstructure through a transformation of short wave electromagnetic radiation into long wave thermal radiation, comprising:

a hive frame superstructure generally enclosing an interior defining a brood nest area;

a thermosolar lid provided with a photo-absorbent component which contains an active surface adapted to absorb short wave electromagnetic radiation and a radiant surface;

a transparent screen on a side of the hive frame superstructure;

a thermo solar frame located in the interior of the hive frame superstructure and which is provided with an active photo-absorbent layer situated in a direction toward the transparent screen and a thermo insulating layer situated between the photo-absorbent layer and the brood nest area;

wherein the thermosolar lid forms a ceiling of the hive frame superstructure.

8. The device for thermal treatment of bee colonies according to claim 7 , further comprising a thermally insulating removable hive cover adapted to cover the thermosolar lid and prevent passage of solar rays through the thermosolar lid.

9. The device for thermal treatment of bee colonies according to claim 7 , wherein the screen is formed by a transparent external screen component and a transparent internal screen component whereas on the transparent internal screen component of the screen is fixed a drip for capture of condensed liquid.

10. The device for thermal treatment of bee colonies according to claim 9 , wherein the thermo solar frame is in the interior of the hive frame superstructure such that between the thermo solar frame and the internal screen component of the screen is formed a front chamber for an upward flow of hot air and simultaneously there is a free space above a top frame end and a bottom frame end of the thermo solar frame.

11. The device for thermal treatment of bee colonies according to claim 7 , wherein the thermosolar lid comprises a frame built into the hive frame superstructure.

12. The device for thermal treatment of bee colonies according to claim 7 , wherein the thermosolar lid contains a transparent frame part adjacent to the photo-absorbent component whereas between the transparent frame part and the photo-absorbent component is formed a closed space.

13. The device for thermal treatment of bee colonies according to the claim 12 , wherein a translucent thermo-insulating foil for an increase of a greenhouse effect is located in the closed space.

14. A device for thermal treatment of bee colonies to cause death of bee parasites in an interior of a hive frame superstructure by transforming short wave electromagnetic radiation into long wave thermal radiation comprising:

a hive frame superstructure generally enclosing an interior defining a brood nest area;

a thermosolar lid provided with a photo-absorbent component having a surface adapted to absorb short wave electromagnetic radiation and an opposite radiant surface;

a transparent screen on a side of the hive frame superstructure;

a thermo solar frame located in the interior of the hive frame superstructure and which is provided with an active photo-absorbent layer situated in a direction toward the transparent screen, the thermo solar frame and the transparent screen defining a front chamber adapted to permit upward flow of hot air between the thermo solar frame and the transparent screen;

wherein the thermosolar lid forms a ceiling of the hive frame superstructure.

15. The device for thermal treatment of bee colonies according to claim 14 , further comprising an insulating layer between the photo-absorbent layer of the thermo solar frame and the brood nest area of the interior.

16. The device for thermal treatment of bee colonies according to claim 14 , further comprising a thermally insulating removable hive cover adapted to cover the thermosolar lid and prevent passage of solar rays through the thermosolar lid.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2017
From: LINHART, ROMAN
To: APIS INNOVATIONS S.R.O.
Reel/Frame 044095/0757 →
Priority Claims (1)
CZ 2012-775 · Nov 12, 2012 · national
Continuity (1)
Related Publication 20140134920A1 · May 15, 2014