FORCED CONVECTION HEATER
20200096488 ยท 2020-03-26
Assignee
Inventors
Cpc classification
International classification
Abstract
A heating assembly includes a base plate. The heating assembly also includes a heating component coupled to the base plate configured to heat an enclosure of the heating assembly and a fan assembly coupled to the base plate configured to circulate the heated air within the enclosure of the heating assembly.
Claims
1. A heating assembly, comprising: a base plate; a heating component coupled to the base plate configured to heat an enclosure of the heating assembly; and a fan assembly coupled to the base plate configured to circulate the heated air within the enclosure of the heating assembly.
2. The heating assembly of claim 1, wherein the heating component comprises: a heat sink comprising a housing portion and externally radiating fins; and a heater cartridge disposed within the housing portion configured to heat the enclosure of the heating assembly.
3. The heating assembly of claim 2, wherein the housing portion of the heat sink comprises: an inlet configured to receive the heater cartridge, wherein, upon receiving the heater cartridge, leads coupled to the heater cartridge are configured to traverse the inlet.
4. The heating assembly of claim 2, wherein the heat sink comprises a heat conducting material.
5. The heating assembly of claim 4, wherein the heat conducting material comprises an aluminum alloy.
6. The heating assembly of claim 2, wherein the fan assembly comprises: a fan; and a motor assembly coupled to the fan configured to drive the fan to circulate heated air within the enclosure of the heating assembly.
7. The heating assembly of claim 6, wherein the motor assembly comprises a pneumatic motor.
8. The heating assembly of claim 7, wherein the pneumatic motor comprises: a motor housing that includes an air inlet and an exhaust port, the motor housing comprising: a paddle wheel configured to receive compressed air from the air inlet, wherein, upon receiving the compressed air, the paddle wheel rotates within the motor housing; and a rotary shaft coupled to the fan and the paddle wheel configured to receive and provide a rotational force from the paddle wheel to the fan.
9. The heating assembly of claim 1, wherein the fan assembly and the heating component are coupled to the base plate such that the fan assembly is substantially aligned with the heating component.
10. The heating assembly of claim 1, wherein the fan assembly is located externally from the heating component.
11. The heating assembly of claim 1, wherein the heating assembly is disposed within an analyzer oven of a process gas chromatograph.
12. The heating assembly of claim 11, wherein the process gas chromatograph is configured to be positioned within a hazardous environment.
13. A heating assembly, comprising: a heating component configured to heat an enclosure of the heating assembly, comprising: a heat sink configured to house a heater cartridge within a housing portion of the heat sink, the heater cartridge configured to heat the enclosure; and a fan assembly configured to circulate the heated air within the enclosure of the heating assembly, the fan assembly comprising: a fan configured to circulate the heated air; and a pneumatic motor assembly configured to drive the fan upon receiving a source of compressed air.
14. The heating assembly of claim 13, wherein the fan comprises a centrifugal fan.
15. The heating assembly of claim 13, wherein the pneumatic motor assembly comprises: a motor housing coupled to an air inlet and an exhaust port, the air inlet configured to receive the source of compressed air.
16. The heating assembly of claim 15, wherein the motor housing comprises: a paddle wheel configured to receive the source of compressed air from the air inlet, wherein, upon receiving the compressed the air, the paddle wheel drives the fan to circulate the heated air within the enclosure of the heating assembly.
17. The heating assembly of claim 13, wherein the enclosure is configured to be positioned within a hazardous environment.
18. A process gas chromatograph configured to be positioned within a hazardous environment, comprising: an analyzer oven configured to receive one or more samples, the analyzer oven comprising: a heating assembly configured to heat the one or more samples within the analyzer oven, the heating assembly comprising: a heating component that includes a heater cartridge disposed within a heat sink configured to heat the analyzer oven; and a fan assembly configured to circulate the heated air within the analyzer oven.
19. The process gas chromatograph of claim 18, wherein the fan assembly comprises a fan and a pneumatic motor assembly configured to drive the fan.
20. The process gas chromatograph of claim 18, wherein the fan assembly is positioned externally from the analyzer oven within the process gas chromatograph.
21. The process gas chromatograph of claim 18, wherein the heating component and the fan assembly are simultaneously coupled to a base plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0005]
[0006]
[0007]
[0008]
[0009]
[0010]
DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
[0011] In accordance with embodiments of the present invention, a heating assembly is provided that allows various devices and enclosures, such as an analytical oven of a gas chromatograph, to be used in hazardous environments. In one example, a heating assembly is provided that requires less supply air with a lower exposed surface temperature, compared to a standard heating element, to heat a sample or mixture to a desired temperature through forced convection. This will be discussed further with respect to
[0012]
[0013]
[0014] During measurement, sample gas enters chromatograph 200 via sample inlet 204 and passes through sample gas pre-heater 220 within analyzer oven 216. In accordance with embodiments of the present invention, heater(s) 218 and/or 220 can include heating assemblies that allow gas chromatograph 200 to be utilized in hazardous environments. This will be discussed further with respect to
[0015] Additionally, as shown in
[0016]
[0017] Fan assembly 316 illustratively includes a fan 308 and a motor assembly 310. While motor assembly 310 will be described as a pneumatic motor, it is expressly contemplated that other types and configurations of motors can be used as well. For example, motor assembly 310 can include a rotary vane type and can be located external to an enclosure (e.g., analyzer oven 216 of gas chromatograph 200) of heating assembly 218. This can include hydraulic, electrical, mechanical or other types of pneumatic motors. However, in this example, motor assembly 310 includes a motor housing 322, an air inlet 324 and an exhaust port 306. In operation, compressed air is received, via air inlet 324, and drives a paddle wheel within motor housing 322 prior to exiting exhaust port 306. As will be discussed later with respect to
[0018] In this example, an enclosure of heating assembly 218 can be heated through forced convection in which the heated air adjacent heating component 304 is re-circulated within the enclosure through actuation of fan 308. This configuration allows for a reduction of necessary supply air required to heat the enclosure. Additionally, this also allows for a reduction in necessary power for heating assembly 218, while also allowing for a reduction in surface temperature for the heater cartridge within heat sink 318. Through forced convection, a gas chromatograph, or other device, with heating assembly 218 can heat a sample or mixture to a desired temperature while also complying with necessary industry standard temperature classifications for hazardous environments.
[0019]
[0020] Heating assembly 400 also includes fan assembly 316 having fan 308 coupled to motor assembly 310. In accordance with different embodiments, fan 308 can take a variety of forms and configurations. For example, fan 308 can include a centrifugal type, and, additionally, does not have to align directly with heating component 304. For example, fan 308 can be positioned away from heat sink 318 and can still adequately recirculate the air in order to heat a sample or mixture within an enclosure of heating assembly 400. However, in the illustrated embodiment, fan assembly 316 includes motor assembly 310, with air inlet 324 and motor housing 322, aligned with heating component 304.
[0021]
[0022] Fan assembly 316 illustratively includes fan 308 and motor assembly 310. Motor assembly 310 illustratively includes motor housing 322, air inlet 324, exhaust port 306, paddle wheel 506 and rotary shaft 508. In operation, compressed air can be received via air inlet 324 and used to drive paddle wheel 506 within motor housing 322 prior to being released via exhaust port 306. Paddle wheel 506, upon receiving the compressed air via air inlet 324, applies a rotary force to rotary shaft 508 which, in turn, drives fan 308. Fan 308, when actuated, circulates the heated air provided by heating component 304. This allows for a forced convection heater to heat an enclosure without necessitating a large quantity of supply air or an elevated surface temperature for cartridge heater 502.
[0023]
[0024] Although the present invention has been described with reference to preferred embodiments, workers skilled in the art will recognize that changes may be made in form and detail without departing from the spirit and scope of the invention.