KR20130071614A - High temperature heat exchanger for stirling engine - Google Patents

High temperature heat exchanger for stirling engine Download PDF

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KR20130071614A
KR20130071614A KR1020110138920A KR20110138920A KR20130071614A KR 20130071614 A KR20130071614 A KR 20130071614A KR 1020110138920 A KR1020110138920 A KR 1020110138920A KR 20110138920 A KR20110138920 A KR 20110138920A KR 20130071614 A KR20130071614 A KR 20130071614A
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South Korea
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transfer body
heat
heat exchanger
heat transfer
stirling engine
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KR1020110138920A
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Korean (ko)
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KR101330135B1 (en
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강새별
유용환
이윤식
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한국에너지기술연구원
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02GHOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
    • F02G1/00Hot gas positive-displacement engine plants
    • F02G1/04Hot gas positive-displacement engine plants of closed-cycle type
    • F02G1/043Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines
    • F02G1/053Component parts or details
    • F02G1/055Heaters or coolers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F1/00Tubular elements; Assemblies of tubular elements
    • F28F1/10Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F21/00Constructions of heat-exchange apparatus characterised by the selection of particular materials
    • F28F21/08Constructions of heat-exchange apparatus characterised by the selection of particular materials of metal
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02GHOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
    • F02G1/00Hot gas positive-displacement engine plants
    • F02G1/04Hot gas positive-displacement engine plants of closed-cycle type
    • F02G1/043Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02GHOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
    • F02G2242/00Ericsson-type engines having open regenerative cycles controlled by valves
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/46Conversion of thermal power into mechanical power, e.g. Rankine, Stirling or solar thermal engines

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Geometry (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

PURPOSE: A high temperature heat exchanger for a stirling engine is provided to increase absorbed heat efficiency because the radiation heat of a heating burner and the heat of exhaust gas by forming through-holes on the surface of the heat exchanger absorbing heat from the heating burner of the stirling engine. CONSTITUTION: A high temperature heat exchanger (100) for a stirling engine comprises an inner contact part (110), a heat transfer body (120), and through-holes (130). The inner contact part is a cylindrical shape and contacts to the surface of the stirling engine. The heat transfer body is extended from the inner contact part to a heating burner. The through-holes vertically penetrate through the heat transfer body.

Description

스털링 엔진용 고온 열교환기{HIGH TEMPERATURE HEAT EXCHANGER FOR STIRLING ENGINE}High Temperature Heat Exchanger for Stirling Engines {HIGH TEMPERATURE HEAT EXCHANGER FOR STIRLING ENGINE}

본 발명은 스털링 엔진의 가열버너로부터 열을 복사와 전도방식으로 직접 열을 흡수하여 흡수하는 열의 효율을 증가시킬 수 있는 스털링 엔진용 고온 열교환기에 관한 것이다.
The present invention relates to a high temperature heat exchanger for a Stirling engine, which can increase the efficiency of heat absorbing and absorbing the heat directly from the heating burner of the Stirling engine by radiation and conduction.

일반적으로 도 1에 도시된 바와 같이, 스털링 엔진(1)은 대략 헤더(2), 냉각장치(3) 및 교류발전기(4)의 3부분으로 나누어진다. In general, as shown in FIG. 1, the Stirling engine 1 is roughly divided into three parts: a header 2, a chiller 3 and an alternator 4.

헤더(3)는 스털링 엔진이 가열되는 단부로서 헤더(3)를 둘러싸고 있는 연소장치(5)의 환형의 가열버너(6)에서 발생된 열을 공급받는다. 가열버너에서 발생된 열은 다단으로 적층된 환형의 열교환기(7)를 통해 헤더(3)로 전달된다. The header 3 receives the heat generated by the annular heating burner 6 of the combustion device 5 surrounding the header 3 as the end where the Stirling engine is heated. Heat generated in the heating burner is transferred to the header 3 through an annular heat exchanger 7 stacked in multiple stages.

연소장치(5)는 상부 내면에 형성된 혼합가스유입통로(11)에 연결된 혼합가스공급부(10)를 통해 가스/공기의 혼합가스를 공급받아 가열버너(6)에서 연소하며, 혼합가스의 연소로 발생된 열 및 고온의 배기가스는 헤더(3)와 연소장치(5) 사이에 형성된 중공부(9)를 통과한 후에 연소장치(5)의 상부에 형성된 배기가스 배출부(8)를 거쳐 상부의 물가열기(12)로 배출된다.The combustion device 5 receives the mixed gas of air / gas through the mixed gas supply unit 10 connected to the mixed gas inflow passage 11 formed on the upper inner surface, and burns the combustion gas in the heating burner 6, and burns the mixed gas. The generated heat and the hot exhaust gas pass through the hollow part 9 formed between the header 3 and the combustion device 5, and then through the exhaust gas discharge part 8 formed in the upper part of the combustion device 5. It is discharged to the water heater (12).

냉각장치(3)는 헤더의 하부에 위치하며 스털링 엔진(1)을 둘러싸는 환형도관을 통해 물 등의 냉각 액체를 제공받아 냉각시키며, 교류발전기(4)는 스털링 엔진의 하부에 위치하며 헤더를 통해 흡수된 열을 이용하여 전기를 생산한다.The cooling device 3 is located at the bottom of the header and is cooled by receiving a cooling liquid such as water through an annular conduit surrounding the Stirling engine 1. The alternator 4 is located at the bottom of the Stirling engine. Electricity is generated by using the heat absorbed through.

한편, 이러한 종래의 스털링 엔진에 장착되는 열교환기는 일측이 헤더에 장착되고 타측이 가열버너방향으로 돌출된 판형상으로 헤더에 다층으로 장착되어 가열버너로부터 발생된 열을 전달받는다. 이러한 다층으로 형성된 열교환기는 아래층과 윗층 사이의 공간으로 가열버너의 복사열이 유입되면 상부면과 하부면을 통해 반사시키면서 열을 흡수하였다. 그러나, 이러한 종래의 열교환기는 가열버너 방향으로만 개구된 형태이기 때문에 흡수되는 열의 대부분을 복사를 통해서만 제공받기 때문에 효율이 낮은 문제가 있다.
On the other hand, the heat exchanger mounted in the conventional Stirling engine is mounted on the header in a multi-layered plate shape in which one side is mounted on the header and the other side protrudes in the direction of the heating burner to receive heat generated from the heating burner. The heat exchanger formed of the multilayer absorbs heat while reflecting through the upper and lower surfaces when radiant heat of the heating burner flows into the space between the lower and upper layers. However, such a conventional heat exchanger has a problem of low efficiency because most of the heat absorbed is provided only through radiation because it is opened only in the direction of the heating burner.

본 발명이 해결하고자 하는 과제는 스털링 엔진의 가열버너로부터 열을 흡수하는 열교환기의 표면에 관통홀을 형성하여 가열버너에서 발생된 열을 복사를 통해 흡수하면서도 유동하는 배기가스로부터 전도방식으로 직접 열을 흡수하여 흡수하는 열의 효율을 증가시킬 수 있는 스털링 엔진용 고온 열교환기를 제공하는 데 있다.
The problem to be solved by the present invention is to form a through-hole on the surface of the heat exchanger that absorbs heat from the heating burner of the Stirling engine to directly absorb heat generated from the heating burner through radiation while conducting heat directly from the flowing exhaust gas. It is to provide a high temperature heat exchanger for the Stirling engine that can increase the efficiency of the heat absorbing and absorbing.

본 발명에 따른 스털링 엔진용 고온 열교환기는, 원통형상으로 형성되고 스털링 엔진의 표면에 밀착되는 내부밀착부(110)와, 내부밀착부(110)에서 가열버너로 연장된 열전달몸체(120), 및 열전달몸체(120)를 상하로 관통하는 관통홀(130)을 포함하는 것을 특징으로 한다.The high temperature heat exchanger for a Stirling engine according to the present invention is formed in a cylindrical shape and is in close contact with the surface of the Stirling engine 110, the heat transfer body 120 extending from the inner contact portion 110 to the heating burner, and It characterized in that it comprises a through hole 130 penetrating the heat transfer body 120 up and down.

바람직하게, 열교환기는 내부밀착부(110)와 열전달몸체(120)는 열팽창 계수가 같은 금속재질로 형성된 것을 특징으로 한다.Preferably, the heat exchanger is characterized in that the inner close contact portion 110 and the heat transfer body 120 is formed of a metal material having the same thermal expansion coefficient.

바람직하게, 내부밀착부(110)는 열전달몸체(120)의 높이보다 상부방향으로 돌출되도록 형성된 것을 특징으로 한다.Preferably, the inner close contact portion 110 is characterized in that it is formed to protrude in the upper direction than the height of the heat transfer body (120).

바람직하게, 열전달몸체(120)는 외측부분의 두께가 내측부분의 두께보다 얇게 형성된 것을 특징으로 한다.Preferably, the heat transfer body 120 is characterized in that the thickness of the outer portion is formed thinner than the thickness of the inner portion.

바람직하게, 관통홀(130)은 열전달몸체(120)의 주위에 방사형태로 형성된 것을 특징으로 한다.Preferably, the through hole 130 is characterized in that formed in a radial shape around the heat transfer body (120).

바람직하게, 열전달몸체(120)의 외측면에는 상부로 돌출된 돌출부(140)가 형성된 것을 특징으로 한다.
Preferably, the outer surface of the heat transfer body 120 is characterized in that the protrusion 140 protruding upward.

본 발명의 스털링 엔진용 고온 열교환기는 적층된 상부면과 하부면를 통해서 가열버너의 연소로 발생된 열을 복사방식으로 흡수할 수 있고, 또한, 표면에 관통홀을 통해 가열버너의 연소로 발생된 배기가스로부터 전도방식으로 열을 흡수하여 엔진으로 공급되는 열의 효율을 증가시킬 수 있는 장점이 있다.
The high temperature heat exchanger for the Stirling engine of the present invention can absorb heat generated by the combustion of the heating burner through the stacked upper and lower surfaces in a radiation manner, and exhaust the exhaust heat generated by the combustion of the heating burner through the through hole on the surface. There is an advantage to increase the efficiency of the heat supplied to the engine by absorbing heat from the gas in a conductive manner.

도 1은 일반적인 스털링 엔진의 개략도.
도 2는 본 발명의 일실시예에 따른 스털링 엔진용 고온 열교환기에 대한 사시도.
도 3은 본 발명의 일실시예에 따른 스털링 엔진용 고온 열교환기의 설치 상태도.
도 4a는 도 3의 A-A를 통한 열흡수 과정을 나타낸 단면도.
도 4b는 도 3의 B-B를 통한 열흡수 과정을 나타낸 단면도.
도 5는 본 발명의 다른 실시예에 따른 스털링 엔진용 고온 열교환기에 대한 사시도.
도 6은 본 발명의 다른 실시예에 따른 스털링 엔진용 고온 열교환기를 통한 열흡수 과정을 나타낸 단면도.
1 is a schematic diagram of a typical Stirling engine.
2 is a perspective view of a high temperature heat exchanger for a Stirling engine according to one embodiment of the present invention;
3 is an installation state diagram of a high temperature heat exchanger for a Stirling engine according to an embodiment of the present invention.
4A is a cross-sectional view illustrating a heat absorption process through AA of FIG. 3.
Figure 4b is a cross-sectional view showing the heat absorption process through the BB of FIG.
5 is a perspective view of a high temperature heat exchanger for a Stirling engine according to another embodiment of the present invention.
6 is a cross-sectional view showing a heat absorption process through a high temperature heat exchanger for a Stirling engine according to another embodiment of the present invention.

이하, 첨부된 도면을 참조하여 본 발명에 따른 스털링 엔진용 고온 열교환기에 대하여 자세히 설명한다.Hereinafter, a high temperature heat exchanger for a Stirling engine according to the present invention will be described in detail with reference to the accompanying drawings.

본 발명에 따른 스털링 엔진용 고온 열교환기는 일반적인 열교환기와 같이 일단이 헤드에 장착되고 타단이 가열버너방향으로 연장된 상태에서 가열버너에서 발생된 열을 흡수하여 스털링 엔진이 작동되도록 헤드로 전달한다.The high temperature heat exchanger for a Stirling engine according to the present invention absorbs the heat generated from the heating burner in one end of the head mounted on the head and extends in the direction of the heating burner, and transmits the heat to the head so that the Stirling engine is operated.

도 2 내지 도 4에 도시된 바와 같이, 본 발명의 일실시예에 따른 스털링 엔진용 고온 열교환기(100)는 원통형상으로 형성되고, 스털링 엔진의 표면에 밀착되는 내부밀착부(110)와, 내부밀착부(110)에서 가열버너(6)방향으로 연장된 열전달몸체(120), 및 열전달몸체(120)를 상하로 관통하는 관통홀(130)을 구비한다. 열교환기(100)는 열전도가 높은 금속재질로 형성되는 것이 바람직하다. 열교환기(100)의 내부밀착부(110)와 열전달몸체(120)는 열팽창 계수가 같은 동일한 재질로 형성되는 것이 바람직하다.As shown in Figure 2 to 4, the high temperature heat exchanger 100 for the Stirling engine according to an embodiment of the present invention is formed in a cylindrical shape, the inner close contact portion 110 in close contact with the surface of the Stirling engine, The heat transfer body 120 extending from the inner close contact portion 110 toward the heating burner 6, and the through hole 130 penetrating the heat transfer body 120 up and down. The heat exchanger 100 is preferably formed of a metal material having high thermal conductivity. The internal close contact portion 110 and the heat transfer body 120 of the heat exchanger 100 is preferably formed of the same material having the same thermal expansion coefficient.

내부밀착부(110)는 원통형상으로 스털링 엔진에 용접 등으로 접합되며, 열전달몸체(120)의 높이보다 상부방향으로 돌출되도록 형성되어 상하 적층되는 열전달몸체(120)들 사이에 일정한 간격을 형성한다. 내부밀착부(110)는 가열버너(6)에서 발생되어 열전달몸체(120)를 통해 흡수된 열을 전달받아 스털링 엔진의 헤드로 전달한다.The inner contact part 110 is joined to the Stirling engine by welding in a cylindrical shape, and is formed to protrude upward from the height of the heat transfer body 120 to form a predetermined gap between the heat transfer bodies 120 stacked up and down. . The internal close contact part 110 is generated by the heating burner 6 and receives the heat absorbed through the heat transfer body 120 to be delivered to the head of the Stirling engine.

열전달몸체(120)는 내부밀착부(110)의 하부면에서 외측방향으로 방사형태로 연장되어 있으며 납땜, 초음파 접합 등으로 접합된다. 열전달몸체(120)의 하부면과 상부면은 실질적으로 평탄하게 형성된다. 열전달몸체(120)는 내부밀착부(110)를 따라 상하방향으로 순차적으로 적층된다. 이때, 열전달몸체(120)의 내측부분과 외측부분의 두께는 외측부분의 두께가 내측부분의 두께보다 얇게 형성되어 가열버너(6)에서 복사열의 유입경로를 증가시키는 것이 바람직하다.The heat transfer body 120 extends radially outward from the lower surface of the inner contact part 110 and is joined by soldering, ultrasonic bonding, or the like. The lower surface and the upper surface of the heat transfer body 120 are formed to be substantially flat. The heat transfer body 120 is sequentially stacked in the vertical direction along the inner close contact portion 110. At this time, the thickness of the inner portion and the outer portion of the heat transfer body 120 is preferably formed such that the thickness of the outer portion is thinner than the thickness of the inner portion to increase the inflow path of the radiant heat in the heating burner (6).

관통홀(130)은 열전달몸체(120)의 외부면에서 내부면의 방향인 원주방향으로 형성되면서 열전달몸체(120)의 주위에 방사형태로 배치된다. 이러한 관통홀(130)은 가열버너(6)에 의해 발생된 대류열이 헤드의 하부에 장착된 열전달몸체(120)로 전달되면 대류열이 관통홀(130)을 따라 상부에 장착된 열전달몸체(120)를 따라 이동하게 되면서 추가적으로 열을 흡수할 수 있게 된다.The through hole 130 is radially disposed around the heat transfer body 120 while being formed in the circumferential direction of the inner surface from the outer surface of the heat transfer body 120. When the convection heat generated by the heating burner 6 is transferred to the heat transfer body 120 mounted on the lower portion of the head, the through hole 130 has a heat transfer body mounted on the upper portion along the through hole 130. Moving along 120 it is possible to absorb additional heat.

도 4a에 도시된 바와 같이, 본 발명의 스털링 엔진용 고온 열교환기(100)는 스털링 엔진에 상하로 적층되어 장착된 상태에서 전방의 가열버너(6)가 연소하면 열전달몸체(120)의 외측면은 직접 가열버너(6)에서 발생된 복사열을 전달받아 흡수한다. 또한, 상하로 적층된 열전달몸체(120) 사이의 공간으로 가열버너(6)에서 발생된 복사열이 입사되면 입사된 복사열은 상부에 장착된 열전달몸체(120)의 하부면과 하부에 장착된 열전달몸체(120)의 상부면 사이를 따라 반사되면서 내부밀착부(110)로 향하게 되고, 다시 내부밀착부(110)에서 반사된 후에도 열전달몸체(120)의 상하면을 따라 반사되면서 외부로 배출되는데 열전달몸체(120)의 상하부면은 반사되는 복사열로부터 추가적으로 열을 흡수할 수 있다.As shown in Figure 4a, the high-temperature heat exchanger 100 for the Stirling engine of the present invention is the outer surface of the heat transfer body 120 when the front burner 6 burns in a state in which the Stirling engine is stacked and mounted up and down Is directly absorbed by the radiant heat generated from the heating burner (6). In addition, when radiant heat generated from the heating burner 6 is incident to the space between the heat transfer bodies 120 stacked up and down, the incident radiant heat is attached to the lower surface of the heat transfer body 120 mounted on the upper side and the heat transfer body mounted on the lower side. Reflected along the upper surface of the 120 is directed toward the inner contact portion 110, and after being reflected back from the inner contact portion 110 is reflected along the upper and lower surfaces of the heat transfer body 120 is discharged to the outside heat transfer body ( Upper and lower surfaces of the 120 may additionally absorb heat from the reflected radiation.

또한, 도 4b에 도시된 바와 같이, 본 발명의 스털링 엔진용 고온 열교환기(100)는 가열버너(6)의 연소에서 발생된 고온의 배기가스가 배기가스 배출부를 통해 외부로 배출되기 전에 열전달몸체(120)를 감싸면서 관통홀(130)을 따라 상하방향으로 유동할 수 있기 때문에 관통홀(130)의 내측에 위치하는 열전달몸체(120)에 접촉하게 되어 추가적으로 열을 흡수할 수 있게 된다.In addition, as shown in Figure 4b, the high temperature heat exchanger 100 for the Stirling engine of the present invention is a heat transfer body before the high-temperature exhaust gas generated in the combustion of the heating burner 6 is discharged to the outside through the exhaust gas discharge portion Since it can flow in the vertical direction along the through-hole 130 while wrapping the 120 is in contact with the heat transfer body 120 located inside the through-hole 130, it is possible to additionally absorb heat.

이와 같은 본 발명의 열교환기(100)는 1차적으로 열전달몸체(120)의 외측면을 따라 직접 가열버너(6)로부터 발생된 복사열을 흡수할 수 있고, 2차적으로 적층된 열전달몸체(120)의 상부면과 하부면에서 반사되는 복사열을 흡수할 수 있으며, 3차적으로 관통홀(130)을 통해서 가열버너(6)로부터 발생된 대류열을 흡수할 수 있기 때문에 열흡수 효율을 증가시킬 수 있다.Such a heat exchanger 100 of the present invention can primarily absorb the radiant heat generated from the heating burner 6 directly along the outer surface of the heat transfer body 120, the second heat transfer body 120 is laminated It can absorb the radiant heat reflected from the upper surface and the lower surface of the, and can absorb the convection heat generated from the heating burner 6 through the through hole 130 to increase the heat absorption efficiency. .

도 5 및 도 6에 도시된 바와 같이, 본 발명의 다른 실시예에 따른 스털링 엔진용 고온 열교환기(100)는 열전달몸체(120)의 외측에 상부로 돌출된 돌출부(140)가 형성된다.As shown in Figure 5 and 6, the high temperature heat exchanger 100 for the Stirling engine according to another embodiment of the present invention is formed with a protrusion 140 protruding upward on the outer side of the heat transfer body (120).

이러한 열교환기(100)는 상하로 적층된 열전달몸체(120) 사이의 공간으로 가열버너(6)에서 발생된 복사열이 입사되면, 입사된 복사열은 상부에 장착된 열전달몸체(120)의 하부면과 하부에 장착된 열전달몸체(120)의 상부면 사이를 따라 반사되면서 내부밀착부(110)로 향하게 되고, 다시 내부밀착부(110)에서 반사된 후에도 열전달몸체(120)의 상하면을 따라 반사되면서 외부로 배출되는데 열전달몸체(120)의 상하부면은 반사되는 복사열로부터 추가적으로 열을 흡수할 수 있다. 이때, 열교환기(100)의 외부로 배출되는 반사열은 돌출부(140)를 통해 반사되면 다시 내부밀착부(110)로 반사되어 더욱 많은 열을 흡수할 수 있다. 또한, 가열버너(6)로부터 노출되는 외측면의 면적이 증가되어 가열버너(6)로부터 직접 전달받는 복사열도 량이 증가될 수 있다.The heat exchanger 100 is a space between the heat transfer body 120 stacked up and down when the radiant heat generated from the heating burner 6 is incident, the incident radiant heat and the lower surface of the heat transfer body 120 mounted on the top Reflected along the upper surface of the heat transfer body 120 mounted on the lower side toward the inner contact portion 110, and after being reflected from the inner contact portion 110 again reflected along the upper and lower surfaces of the heat transfer body 120 outside The upper and lower surfaces of the heat transfer body 120 may further absorb heat from the reflected radiant heat. At this time, the reflected heat discharged to the outside of the heat exchanger 100 is reflected through the protrusion 140 is reflected back to the inner close contact portion 110 can absorb more heat. In addition, the area of the outer surface exposed from the heating burner 6 is increased to increase the amount of radiant heat directly transmitted from the heating burner 6.

이상과 같이, 본 발명은 비록 한정된 실시예와 도면에 의해 설명되었으나, 본 발명은 이것에 의해 한정되지 않으며, 본 발명이 속하는 기술분야에서 통상의 지식을 가진 자에 의해 본 발명의 기술사상과 아래에 기재될 청구범위의 균등범위 내에서 다양한 수정 및 변형이 가능함은 물론이다.
While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. Various modifications and variations are possible within the scope of the appended claims.

100 : 스털링 엔진용 고온 열교환기
110 : 내부밀착부
120 : 열전달몸체
130 : 관통홀
140 : 돌출부
100: high temperature heat exchanger for Stirling engine
110: close contact
120: heat transfer body
130: through hole
140: protrusion

Claims (6)

원통형상으로 형성되고 스털링 엔진의 표면에 밀착되는 내부밀착부와,
내부밀착부에서 가열버너로 연장된 열전달몸체 및
열전달몸체를 상하로 관통하는 관통홀을 포함하는 것을 특징으로 하는 스털링 엔진용 고온 열교환기.
An inner contact portion formed in a cylindrical shape and in close contact with the surface of the Stirling engine;
A heat transfer body extending from the inner contact portion to the heating burner and
A high temperature heat exchanger for a Stirling engine, characterized in that it comprises a through hole penetrating the heat transfer body up and down.
청구항 1에 있어서, 열교환기는 내부밀착부와 열전달몸체는 열팽창 계수가 같은 금속재질로 형성된 것을 특징으로 하는 스털링 엔진용 고온 열교환기.
The high temperature heat exchanger of claim 1, wherein the heat exchanger is formed of a metal material having the same thermal expansion coefficient as the inner close contact portion and the heat transfer body.
청구항 1에 있어서, 내부밀착부는 열전달몸체의 높이보다 상부방향으로 돌출되도록 형성된 것을 특징으로 하는 스털링 엔진용 고온 열교환기.
The high temperature heat exchanger of claim 1, wherein the inner close contact portion is formed to protrude upward from the height of the heat transfer body.
청구항 1에 있어서, 열전달몸체는 외측부분의 두께가 내측부분의 두께보다 얇게 형성된 것을 특징으로 하는 스털링 엔진용 고온 열교환기.
The high temperature heat exchanger of claim 1, wherein the heat transfer body is formed to have a thickness of the outer portion smaller than that of the inner portion.
청구항 1에 있어서, 관통홀은 열전달몸체의 주위에 방사형태로 형성된 것을 특징으로 하는 스털링 엔진용 고온 열교환기.
The high temperature heat exchanger of claim 1, wherein the through hole is formed radially around the heat transfer body.
청구항 1에 있어서, 열전달몸체의 외측면에는 상부로 돌출된 돌출부가 형성된 것을 특징으로 하는 스털링 엔진용 고온 열교환기.The high temperature heat exchanger of claim 1, wherein a protruding portion protruding upward is formed on an outer surface of the heat transfer body.
KR1020110138920A 2011-12-21 2011-12-21 High temperature heat exchanger for stirling engine KR101330135B1 (en)

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Publication number Priority date Publication date Assignee Title
CN109404160A (en) * 2018-11-01 2019-03-01 浙江大学 The cellular-type Stirling engine heater of thermal source complementary type

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GB0020012D0 (en) * 2000-08-15 2000-10-04 Bg Intellectual Pty Ltd Heat transfer head for a stirling engine
KR100472636B1 (en) * 2002-12-02 2005-03-09 주명자 Stirling cycle heat machinery

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109404160A (en) * 2018-11-01 2019-03-01 浙江大学 The cellular-type Stirling engine heater of thermal source complementary type

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