Thermal transferring method and structural device utilizing thermal energy body performing vibration displacement (relative) to fluid
11156235 ยท 2021-10-26
Inventors
Cpc classification
F04B39/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B17/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B45/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B39/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B45/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention provides a thermal transferring method and a structural device utilizing thermal energy body performing vibration displacement to fluid in which a vibration actuating device is provided for performing vibration driving to a thermal energy body disposed in a fluid thereby allowing the thermal energy body to perform periodic vibration displacement to the fluid for transferring thermal energy and enabling the fluid to circulatively flow, thereby a novel thermal transferring method and a structural device utilizing thermal energy body performing vibration displacement to fluid for the purpose of heating or cooling are provided.
Claims
1. A thermal energy transfer device including an enclosure (600) filled with a thermal energy transferring fluid (700) and within which a thermal energy body (101) is situated, the thermal energy transferring fluid (700) surrounding and exchanging thermal energy with the thermal energy body (101) and the enclosure (600), comprising: an energy transmission interface (900); an electrically conductive body (800) that connects the energy transmission interface (900) to the thermal energy body (101), to electrically connect the energy transmission interface (900) and the thermal energy body (101); a vibration actuating device (200, 2001, or 2002) fixed within the enclosure (600) and connected to the thermal energy body (101) by at least a connecting arm (102) extending at least from the vibration actuating device (200, 2001, 2002) to the thermal energy body (101) for causing-the thermal energy body (101) to vibrate relative to the thermal energy transferring fluid (700) in response to driving by the vibration actuating device (200, 2001, 2002) and thereby enhance the exchange of thermal energy between the thermal energy body (101), the thermal energy transferring fluid (700), and the enclosure (600) by causing circulative flow of the thermal energy transferring fluid (700) with respect to the thermal energy body; an electric energy driving device (300) for supplying a driving electrical energy to the vibration actuating device (200), wherein the thermal energy transferring fluid (700) is one of a gaseous fluid, a liquid fluid, a viscous fluid, and an oil or paste based fluid.
2. The thermal energy transfer device of claim 1, wherein the thermal energy body (101) includes at least one of: an analog or digital signal processing chip capable of inputting electrical signals from or outputting electrical signals through the energy transmission interface (900); a semiconductor power unit that inputs and/or outputs electrical energy through the energy transmission interface (900); an LED chip driven by electric energy input through the energy transmission interface (900); a thermoelectric device arranged to convert thermal energy into electrical energy for output through the energy transmission interface (900); a semiconductor heating or cooling device supplied with electrical energy through the energy transmission interface (900); and a chemical energy powered heating or cooling device.
3. The thermal energy transfer device of claim 1, wherein the electric energy driving device (300) is connected to a driving electric energy source (400), the electric energy driving device (300) converting energy supplied by the driving electric energy source (400) into electrical energy having a voltage and frequency adapted to drive the vibration actuating device (200, 2001, or 2002).
4. The thermal energy transfer device of claim 1, wherein the connecting arm (102) is a vibration arm (102) that extends from the vibration actuating device (200) and is coupled to the thermal energy body (101) to perform vibrating displacement of the thermal energy body (101).
5. The thermal energy transfer device of claim 1, wherein the vibration actuating device (200) includes a housing or seat mounted on a fixed base (500).
6. The thermal energy transfer device of claim 1, wherein the vibration actuating device is an electromagnetic vibration device (2001) that includes a magnetically conductive vibrating reed (201), a magnetically conductive core (202), and an excitation winding (203) supplied with the driving electrical energy to induce magnetic fluxes in the magnetically conductive core (202) and cause the vibrating reed (201) to responsively vibrate.
7. The thermal energy transfer device of claim 1, wherein the vibration actuating device is a solid state vibration device (2002) that deforms by a piezoelectric or hysteresis retraction effect when supplied with the driving electrical energy.
8. The thermal energy transfer device of claim 7, wherein a frequency of the vibrations is at least one of the following: within a predetermined frequency range; and a variable working frequency.
9. The thermal energy transfer device of claim 6, wherein a frequency of the vibrations is at least one of the following: within a predetermined frequency range; and a variable working frequency.
10. The thermal energy transfer device of claim 1, wherein a frequency of the vibrations is at least one of the following: within a predetermined frequency range; and a variable working frequency.
11. A thermal energy transfer device including an enclosure (600) filled with a thermal energy transferring fluid (700) and within which a thermal energy body (101) is situated, the thermal energy transferring fluid (700) surrounding and exchanging thermal energy with the thermal energy body (101) and the enclosure (600), comprising: an energy transmission interface (900); an electrically conductive body (800) that connects the energy transmission interface (900) to the thermal energy body (101), to electrically connect the energy transmission interface (900) and the thermal energy body (101); a vibration actuating device (200, 2001, or 2002) fixed within the enclosure (600) and connected to the thermal energy body (101) by at least a connecting arm (102) extending at least from the vibration actuating device (200, 2001, 2002) to the thermal energy body (101) for causing-the thermal energy body (101) to vibrate relative to the thermal energy transferring fluid (700) in response to driving by the vibration actuating device (200, 2001, 2002) and thereby enhance the exchange of thermal energy between the thermal energy body (101), the thermal energy transferring fluid (700), and the enclosure (600) by causing circulative flow of the thermal energy transferring fluid (700) with respect to the thermal energy body; an electric energy driving device (300) for supplying a driving electrical energy to the vibration actuating device (200), wherein the electrically conductive body (800) is one of an electrically conductive wire and an electrically conductive plate.
12. A thermal energy transfer device including an enclosure (600) filled with a thermal energy transferring fluid (700) and within which a thermal energy body (101) is situated, the thermal energy transferring fluid (700) surrounding and exchanging thermal energy with the thermal energy body (101) and the enclosure (600), comprising: an energy transmission interface (900); an electrically conductive body (800) that connects the energy transmission interface (900) to the thermal energy body (101), to electrically connect the energy transmission interface (900) and the thermal energy body (101); a vibration actuating device (200, 2001, or 2002) fixed within the enclosure (600) and connected to the thermal energy body (101) by at least a connecting arm (102) extending at least from the vibration actuating device (200, 2001, 2002) to the thermal energy body (101) for causing-the thermal energy body (101) to vibrate relative to the thermal energy transferring fluid (700) in response to driving by the vibration actuating device (200, 2001, 2002) and thereby enhance the exchange of thermal energy between the thermal energy body (101), the thermal energy transferring fluid (700), and the enclosure (600) by causing circulative flow of the thermal energy transferring fluid (700) with respect to the thermal energy body; an electric energy driving device (300) for supplying a driving electrical energy to the vibration actuating device (200), wherein the energy transmission interface (900) includes at least one of an electrically conductive terminal, electric wire, and electrically conductive plug, socket, or connector.
13. A thermal energy transfer method, comprising the steps of: providing an enclosure (600) filled with a thermal energy transferring fluid (700) and within which a thermal energy body (101) is situated, the thermal energy transferring fluid (700) surrounding and exchanging thermal energy with the thermal energy body (101), and the thermal energy body (101) being connected to an energy transmission interface (900) by an electrically conductive body (800); supplying a driving electrical energy to a vibration actuating device (200, 2001, or 2002) connected to the thermal energy body (101) by a connecting arm (102) extending at least from the vibration actuating device (200, 2001, 2002) to the thermal energy body (101) to vibrate the thermal energy body (101) and thereby enhance the exchange of thermal energy between the thermal energy body (101), the thermal energy transferring fluid (700), and the enclosure (600) by causing circulative flow of the thermal energy transferring fluid (700) with respect to the thermal energy body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DESCRIPTION OF MAIN COMPONENT SYMBOLS
(4) 101: Thermal energy body
(5) 102: Vibration arm
(6) 200: Vibration actuating device
(7) 201: Magnetic conductive vibration reed
(8) 202: Magnetic conductive iron core
(9) 203: Excitation winding
(10) 2001: Lectromagnetic vibration device
(11) 2002: Solid state vibration device
(12) 300: Electric energy driving device
(13) 301: Deformation unit driven by electric energy
(14) 400: Driving electric energy source
(15) 500: Fixed base
(16) 600: Enclosure
(17) 700: Thermal energy transferring fluid
(18) 800: Soft electric conductive body
(19) 900: Electric energy transmission interface
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(20) A conventional thermal energy body disposed in a fluid for performing thermal transferring to the fluid for the purpose of heating or cooling often utilizes the fluid flowing through the thermal energy body for increasing the thermal transferring effect; however, a fluid pump has to be additionally provided for pumping the fluid to flow through the thermal energy body.
(21) The present invention provides a thermal transferring method and a structural device utilizing thermal energy body performing vibration displacement to fluid in which a vibration actuating device is provided for performing vibration driving to a thermal energy body disposed in a fluid thereby allowing the thermal energy body to perform periodic vibration displacement to the fluid for transferring thermal energy and enabling the fluid to circulatively flow, thereby a novel thermal transferring method and a structural device utilizing thermal energy body performing vibration displacement to fluid for the purpose of heating or cooling are provided.
(22) The structural device provided by the present invention includes utilizing an electric-driven vibration actuating device (200) which is connected to a thermal energy body (101) having relatively higher temperature and serving to perform vibration displacement to the ambient gaseous or liquid fluid having relatively lower temperature thereby forming a circulative flow and discharging the thermal energy having higher temperature to the thermal energy transferring fluid; or an electric energy driving device (300) is provided for driving the vibration actuating device (200), and the thermal energy body (101) connected with the vibration actuating device (200) and having relatively lower temperature is served to perform vibration displacement to the ambient gaseous or liquid fluid having relatively higher temperature thereby forming a circulative flow and absorbing the thermal energy having higher temperature of the thermal energy transferring fluid.
(23)
(24) As shown in
(25) The mentioned thermal energy body (101), the vibration actuating device (200) and the electric energy driving device (300) are driven by the driving electric energy source (400), the driving electric energy source (400) includes AC or DC electric energy of the public electricity or an individual electric energy source for supplying the electric energy required by the thermal energy body (101), or directly supplying the electric energy required by the vibration actuating device (200) or driving the vibration actuating device (200) through the electric energy driving device (300).
(26)
(27) As shown in
(28)
(29) As shown in
(30) According to the thermal transferring method and the structural device utilizing thermal energy body performing vibration displacement to fluid, the vibration frequency can be selected from one or more than one of the followings, which includes:
(31) 1. Frequency below the hearing range;
(32) 2. Frequency within the hearing range;
(33) 3. Frequency above the hearing range;
(34) 4. Variable working frequency.