Heat source machine
10823452 ยท 2020-11-03
Assignee
Inventors
Cpc classification
F24H1/145
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D2021/0024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/0426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/0417
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H9/0026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H9/1836
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H8/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F9/0265
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23L5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24H1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23L5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H9/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Provided is a heat source machine with high thermal efficiency. A heat exchanger (3) is provided with a resistance imparting member (8) that imparts resistance to combustion exhaust passing through fins (11). The resistance imparting member (8) is provided with exhaust passage sections (17) which are positioned opposing water pipes (10), and belt-like closing sections (16) that close the gap between the fins (11) of the water pipes (10) that are adjoining to each other.
Claims
1. A heat source machine comprising: a burner; and a heat exchanger heated by combustion exhaust of the burner, wherein the heat exchanger comprises: a plurality of water pipes linearly extended; a plurality of fins attached with predetermined intervals provided thereamong along a direction in which each of the water pipes are linearly extended; and a resistance imparting member which is provided on a downstream side of a flowing direction of the combustion exhaust passing between the fins and which imparts resistance to the combustion exhaust passing between the fins, and the resistance imparting member comprises: an exhaust passage section which is formed at a position opposing each water pipe and through which the combustion exhaust passes; and a belt-like closing section which opposes an area between the water pipes that are adjoining to each other and which closes a gap between the fins along the direction in which the water pipes are linearly extended.
2. The heat source machine according to claim 1, wherein the closing section of the resistance imparting member is provided in contact with an end edge of the fin.
3. The heat source machine according to claim 1, wherein the burner is placed above the heat exchanger at an attitude that the flame thereof is formed, being directed downward, and the closing section of the resistance imparting member is formed like a gutter that extends along a linearly extended direction of the water pipes.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6) An embodiment of the present invention will be described with reference to the accompanying drawings, Referring to
(7) A fan 5, which sends combustion air to the gas burner 2, is connected to the upper part of the gas burner 2. The gas burner 2 is provided with a combustion surface on the bottom surface thereof and configured to form flames downward. A fuel gas is supplied through a fuel gas supply pipe 6 to the gas burner 2.
(8) The combustion exhaust generated by the combustion of the gas burner 2 moves from top to bottom in the sensible heat exchanger 3, passes through the interior of the latent heat exchanger 4, and then is discharged out of the machine through an exhaust duct 7. The gas burner 2 is provided at the position above the sensible heat exchanger 3, so that the drainage produced in the sensible heat exchanger 3 does not drip onto the gas burner 2. This makes it possible to securely prevent the extinguishment of flames of the gas burner 2 or damage to the combustion surface thereof, thus enabling a good combustion state to be maintained.
(9) The gas burner 2 corresponds to the burner in the present invention, and the sensible heat exchanger 3 corresponds to the heat exchanger in the present invention. As illustrated in
(10) As illustrated in
(11) The water pipes 10, which are linearly extended inside the frame body 9 are connected through connection pipe sections 12 formed in the peripheral wall of the frame body 9, as illustrated in
(12) Further, cooling pipe sections 13, which are in communication with the water pipes 10, are formed in the peripheral wall of the frame body 9. The cooling pipe sections 13 cool the frame body 9 by water (or a heat medium) supplied to the water pipes 10, and at the same time, the water (or the heat medium) directed into the water pipes 10 is heated, so that the thermal efficiency of the sensible heat exchanger 3 as a whole is further improved.
(13) In the sensible heat exchanger 3, the connection pipe sections 12 and the cooling pipe sections 13 are formed in the peripheral wall of the frame body 9, as described above, so that relatively fewer parts extend out of the frame body 9, thus providing a compact appearance.
(14) Many fins 11 are provided with predetermined intervals provided thereamong along the extending direction of the water pipes 10. The frame body 9, the water pipes 10, the fins 11, and the resistance imparting member 8 are all formed of stainless steel in the present embodiment, but may alternatively be formed of other metals, such as copper.
(15) Referring to
(16) Each of the bent protrusions 15 is formed by bending a part of each of the fins 11 by burring or the like such that the part protrudes toward another adjoining fin 11. Each of the bent protrusions 15 is placed at a position between the water pipes 10 that are adjoining to each other, thus blocking the flow of combustion exhaust that passes the position and is directed immediately below. The combustion exhaust which has been blocked by the bent protrusion 15 from flowing in the direction immediately below turns into a flow running in the direction of the water pipes 10, so that the endothermic effect of the fins 11 positioned in the vicinity of the water pipes 10 increases. This improves the thermal efficiency.
(17) As illustrated in
(18) As illustrated in
(19) Further, as illustrated in
(20) Further, in the present embodiment, the lower end portion of each of the fins 11 between the water pipes 10 is shaped to project downward, and the closing sections 16 are shaped to have concave (gutter-like) sections, corresponding to the shapes of the lower end portions of the fins 11. Each of the closing sections 16 has the gutter-like shape and has a pair of walls 16a and 16b rising aslant upward (the opposing interval increasing upward) along both side edges of the closing sections 16, thus making it possible to receive the drainage produced between the fins 11.
(21) Further, in the present embodiment, as illustrated in
(22) As illustrated in
(23) In addition, the walls 16a and 16b of each of the closing sections 16 are formed on both sides of the exhaust passage section 17 that extend along the water pipes 10. The interval between the walls 16a and 16b gradually increases from top toward bottom, provided that the exhaust passage section 17 is defined as the center. With this arrangement, the combustion exhaust passing through the exhaust passage section 17 is securely rectified by the walls 16a and 16b of the closing section 16, which are positioned on both sides thereof, so that the combustion exhaust can be further smoothly passed therethrough.
(24) In the present embodiment, the gas burner 2 is provided above the sensible heat exchanger 3; however, the present invention is not limited thereto. For example, the present invention can also be applied, although not illustrated, to a case where a resistance imparting member is provided above a heat exchanger (on the downstream side of the flowing direction of combustion exhaust passing through fins) and a gas burner is provided below the heat exchanger. In this case, although the closing sections of the resistance imparting member do not receive drainage, the same effect for improving thermal efficiency as that of the present embodiment can be obtained.
DESCRIPTION OF REFERENCE NUMERALS
(25) 1 . . . heat source machine; 2 . . . gas burner (burner); 3 . . . sensible heat exchanger (heat exchanger); 8 . . . resistance imparting member; 10 . . . water pipe; 11 . . . fin; 16 . . . closing section; and 17 . . . exhaust passage section.