JP6799892B1 - Combustion equipment - Google Patents
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Abstract
【課題】従来のロケットストーブは、種々の目的構造を異にする多数の出願があり、また市場に提案されている。その中で関連する発明は、蓋で開閉する開口と下部に設けた吸気口とでなる燃焼室に燃焼筒を垂下し、燃焼筒の下端開口と燃焼室の底面との間に隙間を形成する。隙間は燃焼ガスを燃焼筒に誘引し、燃焼筒で完全燃焼を図る。しかし、燃焼筒への誘引(煙突による誘引力)と燃焼筒内での燃焼のみでは高温燃焼(略完全燃焼)は図れない。【解決手段】本発明は、燃焼器本体に第1吸気口と排気口とを備えた薪を燃焼する燃焼器具において、排気口に第3開口を形成し燃焼筒を付設し第3開口は燃焼器本体の底面より離間した吸込み口を備え、吸込み口より煙突の吸引力の働きで燃焼ガスを取込むとともに、上昇してこの燃焼筒の第4開口から吸込んだ高温でかつ軽くなった燃焼ガスとの混合燃焼による自然現象により二次燃焼(略完全燃焼)する燃焼器具。【選択図】 図1−1PROBLEM TO BE SOLVED: To provide a conventional rocket stove with a large number of applications having different target structures and to be proposed to the market. Among them, a related invention is to hang a combustion cylinder in a combustion chamber consisting of an opening that opens and closes with a lid and an intake port provided at the bottom, and forms a gap between the lower end opening of the combustion chamber and the bottom surface of the combustion chamber. .. The gap attracts the combustion gas to the combustion cylinder, and complete combustion is achieved in the combustion cylinder. However, high-temperature combustion (almost complete combustion) cannot be achieved only by attracting to the combustion cylinder (attracting force by the chimney) and combustion in the combustion cylinder. According to the present invention, in a combustion appliance for burning firewood having a first intake port and an exhaust port in a combustor main body, a third opening is formed in the exhaust port and a combustion cylinder is attached, and the third opening is for combustion. It has a suction port that is separated from the bottom of the main body of the vessel, and the combustion gas is taken in from the suction port by the suction force of the chimney, and the combustion gas that rises and is sucked in from the 4th opening of this combustion cylinder becomes hot and light. Combustion equipment that performs secondary combustion (almost complete combustion) due to a natural phenomenon caused by mixed combustion with. [Selection diagram] Fig. 1-1
Description
本発明は、薪、木材、間伐材等の廃材(廃棄木材)、又は草、生木とか、又はその乾燥状態に関わらず、未乾燥木材、未乾燥廃材等を、差別することなく、この種の燃料を、燃焼器具内において、略完全燃焼(完全燃焼とする)することができる燃焼器具に関する。 The present invention does not discriminate between undried wood, undried waste, etc., regardless of whether it is waste wood (waste wood) such as firewood, wood, thinned wood, grass, raw wood, or its dry state. The present invention relates to a combustion appliance capable of almost completely burning (referred to as complete combustion) in the combustion appliance.
本発明は、一般に云われている「ロケットストーブ」の改良形であって、目的は、燃焼材料を問わず燃焼できることと、小型の装置であっても、燃焼と、燃焼効率とが図れ、かつ持運び支障がない小型の燃焼器具を提案することである。 The present invention is an improved version of the so-called "rocket stove", and an object of the present invention is to be able to burn regardless of the combustion material, to achieve combustion and combustion efficiency even with a small device, and to achieve combustion efficiency. It is to propose a small combustion appliance that does not hinder carrying.
「ロケットストーブ(以下、燃焼器とする)」に関しては、種々の目的、構造を異にする多数の出願があり、また市場に提案されている。そして、本発明の目的と、構造とに関連するものは、特開2016−205795号公報に記載の発明がある(文献(1))。この発明は、蓋で開閉する開口と、下部に設けた吸気口とでなる燃焼室に、燃焼筒を垂下するとともに、燃焼筒の下端開口と、燃焼室の底面との間に、隙間を形成する構造であって、隙間を利用して、燃焼ガスを燃焼筒に誘引するとともに、この燃焼筒で完全燃焼を図る構成である。しかしながら、単なる誘引と、煙突による誘引力のみでは、燃焼筒での高温燃焼は図れず、かえって、不完全燃焼の要因となる恐れが考えられる。 Regarding "rocket stove" (hereinafter referred to as "combustor"), there are many applications with different purposes and structures, and they have been proposed to the market. Then, there is an invention described in Japanese Patent Application Laid-Open No. 2016-205795 that is related to the object of the present invention and the structure (Reference (1)). In the present invention, a combustion cylinder is hung in a combustion chamber consisting of an opening that opens and closes with a lid and an intake port provided at the bottom, and a gap is formed between the lower end opening of the combustion chamber and the bottom surface of the combustion chamber. The structure is such that the combustion gas is attracted to the combustion cylinder by using the gap, and complete combustion is achieved in this combustion cylinder. However, high-temperature combustion in the combustion cylinder cannot be achieved only by the mere attraction and the attraction force by the chimney, and it is considered that it may cause incomplete combustion.
前記文献(1)は、燃焼筒への燃焼ガスの誘引は、主として、隙間を利用する。また、燃焼筒における燃焼ガスの完全燃焼は、主として、煙突による誘引力と、吸気口から、新しい空気の取り入れとによって、完全燃焼を図る構造と考えられる。しかしながら、この構造では、十分とは考えられない。 According to the above document (1), the gap is mainly used for attracting the combustion gas to the combustion cylinder. Further, the complete combustion of the combustion gas in the combustion cylinder is considered to be a structure in which the complete combustion is achieved mainly by the attractive force by the chimney and the intake of new air from the intake port. However, this structure is not considered sufficient.
上記に鑑み、本発明は、燃焼器本体の面において第2・第1開口となる第1吸気口と排気口とを備えた薪、廃材を燃焼する燃焼器具において、
排気口の下側に、二次燃焼用の燃焼筒を付設とするとともに、燃焼筒の下端に第3開口を形成し、第3開口は、燃焼器本体の底面より離間した吸込み口を形成し、吸込み口は、燃焼器具の燃焼室の一次燃焼で生成された燃焼ガスを取込み、取込まれた直近の燃焼ガスは、燃焼筒内を、煙突の吸引力で、スムースに上昇し、この直近の燃焼ガスと、燃焼筒に形成した第4開口から入る高温で、かつ軽く変換された上昇した高温の燃焼ガスとが、自然現象により、二次燃焼(完全燃焼)する燃焼器具であって、有用であることと、取扱いが容易な、燃焼器具である。室内使用に、最適な、燃焼器具である。
In view of the above, the present invention relates to a combustor for burning firewood and waste materials having a first intake port and an exhaust port which are second and first openings on the surface of the combustor main body.
A combustion cylinder for secondary combustion is attached to the lower side of the exhaust port, and a third opening is formed at the lower end of the combustion cylinder, and the third opening forms a suction port separated from the bottom surface of the combustor body. , The suction port takes in the combustion gas generated by the primary combustion of the combustion chamber of the combustion equipment, and the latest combustion gas taken in smoothly rises in the combustion cylinder by the suction force of the chimney, and this latest The combustion gas of No. 1 and the high temperature and lightly converted high temperature combustion gas that enters from the 4th opening formed in the combustion cylinder are combustion appliances that perform secondary combustion (complete combustion) by a natural phenomenon. It is a combustion appliance that is useful and easy to handle. It is a combustion appliance that is ideal for indoor use.
上記に鑑み、本発明は、請求項1〜5を提供することで、燃焼室内、及び/又は、燃焼筒内での炎、及び/又は、燃焼ガス、未燃焼ガス、又は排気等の流れを、スムースにしつつ、効率的な燃焼を図り、かつ違和感がなく、また、高温燃焼を介して、薪、廃材等の全てのものが燃焼できる燃焼機器の提供と、併せて、効率的な燃焼と、火力不足が少ない燃焼器具を提供する。 In view of the above, by providing claims 1 to 5, the present invention allows the flow of flame and / or combustion gas, unburned gas, exhaust, etc. in the combustion chamber and / or in the combustion cylinder. Efficient combustion, along with the provision of combustion equipment that enables efficient combustion while making it smooth, does not cause discomfort, and can burn everything such as firewood and waste materials through high-temperature combustion. , Providing combustion equipment with less heat shortage.
請求項1の発明は、燃焼器本体の面において第2・第1開口となる第1吸気口と排気口とを備え、薪、廃材を燃焼する燃焼室を備えた燃焼器具において、
排気口の下側に、二次燃焼用の短管の燃焼筒を付設し、燃焼筒の下端と燃焼器本体の底面との間に第3開口を形成し、
燃焼筒には、燃焼室内に直接開口する第4開口を形成し、
第1開口は八角形の形状に開口しており、
排気口に設けた燃焼筒の絞込み円筒部、又は燃焼筒に設けた煙突と、八角形の第1開口との間に、第5開口を形成し、
燃焼器本体の底面の燃焼ガスは、第3開口から、燃焼筒内に取込まれ、その後、燃焼筒の上方に吸引された燃焼ガスと、燃焼筒の第4開口から取込まれた高温の燃焼ガス(燃焼ガスと合流した高温の燃焼ガス)とで二次燃焼を図ることを特徴とした燃焼器具であり、排気口の下側に、二次燃焼用の燃焼筒を付設とするとともに、燃焼筒の下端に第3開口を形成し、第3開口は、燃焼器本体の底面より離間した吸込み口を形成し、吸込み口は、燃焼器具の燃焼室の一次燃焼で生成された燃焼ガスを取込む。そして、直近の燃焼ガスは、燃焼筒内を、煙突(煙突部位)の吸引力の働きで、スムースに上昇するとともに、燃焼筒に形成した第4開口からの、高温で、かつ軽くなった燃焼ガスとにより、自然現象により、二次燃焼する燃焼器具の提供である(略完全燃焼、即ち、無煙化した燃焼ガスの生成である)。
The invention of claim 1 is a combustor having a first intake port and an exhaust port which are second and first openings on the surface of the combustor body, and a combustion chamber for burning firewood and waste materials.
A short-tube combustion cylinder for secondary combustion is attached to the lower side of the exhaust port, and a third opening is formed between the lower end of the combustion cylinder and the bottom surface of the combustor body.
The combustion cylinder is formed with a fourth opening that opens directly into the combustion chamber.
The first opening has an octagonal shape and
A fifth opening is formed between the narrowing cylindrical portion of the combustion cylinder provided at the exhaust port or the chimney provided in the combustion cylinder and the first octagonal opening.
The combustion gas on the bottom surface of the combustor body is taken into the combustion cylinder from the third opening, and then the combustion gas sucked above the combustion cylinder and the high temperature taken from the fourth opening of the combustion cylinder. It is a combustion appliance characterized by secondary combustion with combustion gas (high-temperature combustion gas that merges with the combustion gas). A combustion cylinder for secondary combustion is attached to the underside of the exhaust port, and a combustion cylinder is attached. A third opening is formed at the lower end of the combustion cylinder, the third opening forms a suction port separated from the bottom surface of the combustor body, and the suction port forms a combustion gas generated by the primary combustion of the combustion chamber of the combustion appliance. Take in. Then, the latest combustion gas rises smoothly in the combustion cylinder by the action of the suction force of the chimney (chimney part), and at the same time, the combustion becomes hot and light from the fourth opening formed in the combustion cylinder. It is the provision of a combustion appliance that secondarily burns by a natural phenomenon with a gas (nearly complete combustion, that is, the production of smokeless combustion gas).
請求項1の特徴は、燃焼室による一次燃焼で燃焼ガスを生成し、この燃焼ガスを燃焼筒の上方において、高温の燃焼ガスとの合流で二次燃焼し略完全燃焼する。従って、燃焼筒、及び/又は、煙突からの燃焼ガス(燃焼空気)を室外に提供できる。また、完全燃焼した燃焼ガスは、煙突より放散される。完全燃焼を介して、薪、廃材等の全てのものを燃焼させることができる。また、前記の流れにより、炎、未燃焼ガス、又は排気等のスムースな流れを確保できる。 The feature of claim 1 is that combustion gas is generated by primary combustion in a combustion chamber, and this combustion gas is secondarily burned by merging with high-temperature combustion gas above a combustion cylinder to be substantially completely burned. Therefore, the combustion gas (combustion air) from the combustion cylinder and / or the chimney can be provided to the outside. In addition, the completely burned combustion gas is dissipated from the chimney. Through complete combustion, everything such as firewood and waste materials can be burned. In addition, the above-mentioned flow can ensure a smooth flow of flame, unburned gas, exhaust gas, or the like.
請求項1の発明は更に、排気口に設けた燃焼筒の絞込み円筒部、又は燃焼筒に設けた煙突と、第1開口との間に、第5開口を形成することを特徴とした燃焼器具である。 The invention of claim 1 is further characterized in that a fifth opening is formed between a narrowing cylindrical portion of a combustion cylinder provided at an exhaust port or a chimney provided in the combustion cylinder and a first opening. Is.
従って、請求項1の特徴は更に、請求項1の特徴と、燃焼室内、又は燃焼筒内での燃焼効率と、スムースな燃焼とが図れる特徴がある。 Therefore, the feature of claim 1 is further characterized by the feature of claim 1, the combustion efficiency in the combustion chamber or the combustion cylinder, and the smooth combustion.
請求項2の発明は、何れかの面は、燃焼器本体の上面とする燃焼器である。 The invention of claim 2 is a combustor in which any surface is an upper surface of a combustor main body.
請求項2の特徴は、請求項1の特徴と、燃焼器本体(燃焼室)への外気の吸込と、燃焼ガスの排気とを確実に行えることと、燃焼器の小型化に寄与できる特徴がある。 The features of claim 2 are the features of claim 1, that the outside air can be surely sucked into the combustor body (combustion chamber) and the exhaust gas can be exhausted, and that the combustor can be miniaturized. is there.
請求項3の発明は、排気口に、煙突を取付ける燃焼器具である。 The invention of claim 3 is a combustion appliance in which a chimney is attached to an exhaust port.
請求項4の発明は、燃焼器本体は、密閉した容器とする燃焼器具である。 The invention of claim 4 is a combustor in which the combustor body is a closed container.
請求項5の発明は、燃焼器本体は、一斗缶か、ペール缶、ドラム缶、構造物の缶、又は地中の穴を利用する燃焼器具である。 According to the fifth aspect of the present invention, the combustor main body is an itto-kan, a pail can, a drum can, a can of a structure, or a combustor using a hole in the ground.
請求項5の特徴は、請求項1の特徴と、廃品の有効利用と、コストの低廉化に寄与できる特徴がある。 The feature of claim 5 is the feature of claim 1 and the feature that can contribute to effective utilization of waste products and cost reduction.
以下、本発明の好ましい、一実施例を説明する。 Hereinafter, a preferred embodiment of the present invention will be described.
1は直方体(一例であり限定されない。円柱体、角形、その他の形状を含む)の燃焼器本体(燃焼器)であり、図1〜図5−2の例では、燃焼器本体1は、周辺を囲繞する壁面100(壁板)と、上方の上面101(天板)、下方の底面102(底板)とで構成する。そして、望ましくは、部材は、高熱燃焼を意図することから、耐熱性の金属とする。また、燃焼器本体1は、例えば、一斗缶が望ましく、かつ廃材を利用するが限定されない。尚、上面とは、上面101(燃焼器本体1)の上面である。燃焼器本体1の内部1aは、燃焼室104である。また、上面101は、立上部101aに切溝103を形成し、この切溝103を、壁面100に被嵌する。この被嵌構造を利用して、燃焼器本体1(燃焼室104)の上面開放部とで第2開口105(第1吸込口)を形成する。この第2開口105は、燃焼室104の第1吸気口となり、外気等の空気を取込むことと、薪等の供給口を兼ねる。即ち、上面101の移動、例えば、後述する図4−1〜図4−3の如く、上面101の移動(開け閉め)で、例えば、第2開口105の広さの調整とか、図1において、前後X、Y方向の開放面積の大小調整、又は一方側yのみの開放を選択する行為である。例えば、図4−1〜図4−3に示した一例がある。図4−1は、図1−1の平面図であり、上面101が、後Yにあり、第2開口105からのみの外気(空気)吸込となる。また、図4−2は、上面101が図4−1より前Xに移動したが、図4−1と同じように後Yにあり、第2開口105からのみの外気吸込となる。但し、第2開口105は狭くなり、外気吸込は、図4−1に比し、少なくなり、例えば、火力調整とか、薪Wの消耗を少なくできる。また図4−3は、上面101が図4−2の状態より、さらに前Xに移動し、かつ後Yに第6開口107を形成し、第2開口105と併せて、第6開口107からの外気吸込となる。これにより、燃焼室104に、略均等に外気を吸込み、かつ均等な燃焼が図れる。その他として、第2開口105の調整は、例えば、空気の吸込量と、後述する燃焼筒の第4開口との関係を変え得ること、また、高温の燃焼ガスの取り込み方向と、その取り込み量等を変え得ること、さらには、二次燃焼の状況を変え得ること、等が考えられる(他の構造でも同じと考えられる)。この第2開口105は、板材(図示せず)、やかん、調理機器等の機器とか、閉塞物を乗せることで、その開放面積を調整可能である。図8の如く、第2開口105は、燃焼器本体1(燃焼室104)の壁面100に設ける構造も有り得る。図6等は、煙突3の開口部に五徳4とやかんとを載せた図であり、一例である。また、第2開口105(第1吸込口)は、薪等の供給口を兼ねる。尚、上面101は平板も有り得る。 Reference numeral 1 denotes a combustor body (combustor) of a rectangular parallelepiped (including, but not limited to, a cylindrical body, a square shape, and other shapes), and in the example of FIGS. 1 to 5-2, the combustor body 1 is a peripheral. It is composed of a wall surface 100 (wall plate) surrounding the above surface, an upper surface 101 (top plate), and a bottom surface 102 (bottom plate) below. And, preferably, the member is made of a heat-resistant metal because it is intended for high-temperature combustion. Further, as the combustor main body 1, for example, an itto-kan can is desirable, and waste material is used, but the present invention is not limited. The upper surface is the upper surface of the upper surface 101 (combustor main body 1). The inside 1a of the combustor main body 1 is a combustion chamber 104. Further, the upper surface 101 forms a cut groove 103 in the rising portion 101a, and the cut groove 103 is fitted on the wall surface 100. Using this inlaid structure, a second opening 105 (first suction port) is formed with the upper surface opening portion of the combustor main body 1 (combustion chamber 104). The second opening 105 serves as a first intake port of the combustion chamber 104, and serves both as an intake port for air such as outside air and as a supply port for firewood and the like. That is, by moving the upper surface 101, for example, as shown in FIGS. 4-1 to 4-3 described later, by moving (opening and closing) the upper surface 101, for example, adjusting the width of the second opening 105, in FIG. It is an act of selecting the size adjustment of the open area in the front-rear X and Y directions, or the opening of only one side y. For example, there is an example shown in FIGS. 4-1 to 4-3. FIG. 4-1 is a plan view of FIG. 1-1, in which the upper surface 101 is located at the rear Y and the outside air (air) is sucked only from the second opening 105. Further, in FIG. 4-2, the upper surface 101 has moved to the front X from FIG. 4-1 but is located at the rear Y as in FIG. 4-1 and the outside air is sucked only from the second opening 105. However, the second opening 105 is narrowed, and the outside air suction is reduced as compared with FIG. 4-1. For example, it is possible to reduce the heat power adjustment and the consumption of the firewood W. Further, in FIG. 4-3, the upper surface 101 moves further forward X from the state of FIG. 4-2 and forms a sixth opening 107 in the rear Y, and together with the second opening 105, from the sixth opening 107. It becomes the outside air suction. As a result, the outside air is sucked into the combustion chamber 104 substantially evenly, and even combustion can be achieved. Other than that, the adjustment of the second opening 105 can change, for example, the relationship between the suction amount of air and the fourth opening of the combustion cylinder described later, the intake direction of the high-temperature combustion gas, the intake amount thereof, and the like. It is conceivable that the situation of secondary combustion can be changed, and so on (the same can be said for other structures). The open area of the second opening 105 can be adjusted by placing a plate material (not shown), a kettle, a device such as a cooking device, or a closed object. As shown in FIG. 8, the second opening 105 may be provided on the wall surface 100 of the combustor main body 1 (combustion chamber 104). FIG. 6 and the like are views in which the trivet 4 and the kettle are placed in the opening of the chimney 3, which is an example. Further, the second opening 105 (first suction port) also serves as a supply port for firewood and the like. The upper surface 101 may be a flat plate.
そして、上面101に設けた第1開口106(排気口)は、この一例では、八角形端面形状とし、この第1開口106には燃焼筒2を吊下するが、この燃焼筒2の下端の第3開口200は、燃焼器本体1の底面102より離間する(吸込み口となる)。したがって、燃焼器本体1で生成された燃焼ガスAは、第3開口200を通過し、抵抗を受けることなく、燃焼筒2の内部201に到る構造なっている。尚、燃焼筒2の上方(Z方向)に膨出形成した環状膨らみ部203の上部は、上面101の上面より突出する。この環状膨らみ部203は、例えば、吊下げ用で、また、突出部は煙突3の支持用である。 In this example, the first opening 106 (exhaust port) provided on the upper surface 101 has an octagonal end face shape, and the combustion cylinder 2 is suspended from the first opening 106, but the lower end of the combustion cylinder 2 is suspended. The third opening 200 is separated from the bottom surface 102 of the combustor main body 1 (it serves as a suction port). Therefore, the combustion gas A generated in the combustor main body 1 has a structure that passes through the third opening 200 and reaches the inside 201 of the combustion cylinder 2 without receiving resistance. The upper portion of the annular bulging portion 203 bulging upward (Z direction) of the combustion cylinder 2 protrudes from the upper surface of the upper surface 101. The annular bulge 203 is used for hanging, for example, and the protruding portion is for supporting the chimney 3.
この燃焼筒2の上方(燃焼器本体1の燃焼室104の上方の絞込み円筒部2bの下側)には、第4開口202を開設し、この第4開口200は、燃焼器本体1で生成された後、燃焼室104を上昇した、高温の燃焼ガスA1(上面101に向かって上昇した燃焼ガス)を取入れ、この高温の燃焼ガスA1と、燃焼筒2の内部201を上昇した燃焼ガスAと合流する混合燃焼ガスA2の燃焼(二次燃焼)が図れる特徴がある。この絞込み円筒部2bとは、例えば、燃焼筒2の蓋体101より上方になる箇所(部分)で、かつ煙突3を取付け得る箇所である。また、絞込み円筒部2bは煙突の働きがある。 A fourth opening 202 is opened above the combustion cylinder 2 (lower side of the narrowing cylindrical portion 2b above the combustion chamber 104 of the combustor body 1), and the fourth opening 200 is generated by the combustor body 1. After that, the high-temperature combustion gas A1 (combustion gas rising toward the upper surface 101) that has risen in the combustion chamber 104 is taken in, and the high-temperature combustion gas A1 and the combustion gas A that has risen inside 201 of the combustion cylinder 2 are taken in. It is characterized by being able to burn (secondary combustion) the mixed combustion gas A2 that merges with. The narrowing cylinder portion 2b is, for example, a portion (part) above the lid 101 of the combustion cylinder 2 and a portion to which the chimney 3 can be attached. Further, the narrowing cylindrical portion 2b functions as a chimney.
図中3は煙突であり、燃焼筒2の絞込み円筒部2bに連結する。また、4は五徳を示す。 Reference numeral 3 in the figure is a chimney, which is connected to the narrowing cylindrical portion 2b of the combustion cylinder 2. Also, 4 indicates the trivet.
燃焼筒2は、その円筒部2aを、上面101の第1開口106に回転自在に設ける構造であり、かつ上方に第4開口202を備える構造である。従って、前述の二次燃焼が図れる。また、回転自在であることを利用して、燃焼室104の何れかの箇所から、選択して、高温の燃焼ガスA1を取り込めること、及び/又は、その取り込み量を調整できる。尚、第4開口202は、例えば、燃焼筒2の全周面の1/2の広さとしてある。この燃焼筒2は、第1開口106内での嵌合位置を変更できる。例えば、燃焼筒2は、燃焼器具を設置した状態(例えば、水平状態)で、水平方向に回転できる。この回転を利用して、第4開口202の向く方向を自由に変更できる。また、この変更で、燃焼室104内の高温の燃焼ガスA1等のガスの取込み量(燃焼筒2内において、燃焼ガスAと合流する高温の燃焼ガスA1の分量)の調整とか、第2開口105からの空気の取込み量を調整できる。また、併せて、第5開口108からの空気の取込み量をも調整できる。 The combustion cylinder 2 has a structure in which the cylindrical portion 2a is rotatably provided in the first opening 106 of the upper surface 101, and has a structure in which the fourth opening 202 is provided above. Therefore, the above-mentioned secondary combustion can be achieved. Further, by utilizing the fact that it is rotatable, it is possible to select from any part of the combustion chamber 104 to take in the high-temperature combustion gas A1 and / or adjust the amount of the uptake. The fourth opening 202 is, for example, halved in size of the entire peripheral surface of the combustion cylinder 2. The fitting position of the combustion cylinder 2 in the first opening 106 can be changed. For example, the combustion cylinder 2 can rotate in the horizontal direction in a state where a combustion appliance is installed (for example, in a horizontal state). By utilizing this rotation, the direction in which the fourth opening 202 faces can be freely changed. Further, by this change, the intake amount of gas such as high-temperature combustion gas A1 in the combustion chamber 104 (the amount of high-temperature combustion gas A1 that merges with the combustion gas A in the combustion cylinder 2) can be adjusted, or the second opening. The amount of air taken in from 105 can be adjusted. At the same time, the amount of air taken in from the fifth opening 108 can be adjusted.
また、第1開口106に燃焼筒2を差し込んだ際に、第1開口106と煙突3との間には第5開口108(燃焼筒2を差し込んだ際に形成される隙間)が形成される。第5開口108は、第2吸気口(第2吸込み口)となる。その他は、例えば、吸込んだ空気で、燃焼筒2の絞込み円筒部2b、及び/又は、煙突3の高熱部の冷却に役立てる。また、第2吸気口として、燃焼機本体1の燃焼室104(室内)に、空気を吸込むことも可能である。 Further, when the combustion cylinder 2 is inserted into the first opening 106, a fifth opening 108 (a gap formed when the combustion cylinder 2 is inserted) is formed between the first opening 106 and the chimney 3. .. The fifth opening 108 serves as a second intake port (second suction port). Others, for example, use the sucked air to cool the narrowed cylindrical portion 2b of the combustion cylinder 2 and / or the high heat portion of the chimney 3. It is also possible to suck air into the combustion chamber 104 (indoor) of the combustor main body 1 as the second intake port.
図7の例では、燃焼器本体1は、地中の穴1000とする他の例の構造である。以下、原則として、燃焼器本体1には、穴1000を含む。そして、この他の例において、その他の構造は、前述の図1〜図5−2の例と同じであり、この他の例では、燃焼状態と、その働き、並びに各燃焼ガス、及び/又は、空気等の流れとか、排気の関係等は、前記例に準ずる。 In the example of FIG. 7, the combustor main body 1 is the structure of another example in which the hole 1000 is in the ground. Hereinafter, as a general rule, the combustor main body 1 includes a hole 1000. And in this other example, the other structure is the same as the above-mentioned example of FIGS. 1 to 5-2, and in this other example, the combustion state and its function, and each combustion gas, and / or , The flow of air, etc., the relationship with exhaust, etc. conform to the above example.
図1−1、図1−2を利用して、外気の吸込み、内部の空気の流れとか、燃焼ガスAの流れ、即ち、燃焼器具の使用を説明すると、解放された第2開口105を利用し、燃焼器本体1の燃焼室104に、に薪Wを投入する。薪Wに着火する。燃焼室104において、薪Wが燃焼し、高温(高熱)の燃焼ガスA(第1燃焼ガス、高温の空気)が生成される。この燃焼ガスA(未燃焼ガスを含めて)は、底面102を迂回した後、燃焼筒2の方向に流れる(吸引される)。即ち、底面102を這うように流れた後に、スムースに、第3開口200より燃焼筒2内に導かれた後に、燃焼筒2を上昇する。また、他の燃焼ガスAは、燃焼筒2に発生する吸引力の影響を受けるとともに、その大部分は、第4開口202から燃焼筒2内に誘引される。 Explaining the suction of outside air, the flow of internal air, and the flow of combustion gas A, that is, the use of combustion appliances, using FIGS. 1-1 and 1-2, the open second opening 105 is used. Then, the firewood W is put into the combustion chamber 104 of the combustor main body 1. Ignite firewood W. In the combustion chamber 104, the firewood W is burned to generate high temperature (high heat) combustion gas A (first combustion gas, high temperature air). The combustion gas A (including the unburned gas) flows (sucks) in the direction of the combustion cylinder 2 after bypassing the bottom surface 102. That is, after flowing so as to crawl on the bottom surface 102, the combustion cylinder 2 is smoothly guided from the third opening 200 into the combustion cylinder 2 and then raised. Further, the other combustion gas A is affected by the suction force generated in the combustion cylinder 2, and most of the combustion gas A is attracted into the combustion cylinder 2 from the fourth opening 202.
この誘引された燃焼ガスAは、燃焼筒2内を上昇する。そして、その途中で、第4開口202と、第4開口202の背面側の上端の筒状部2cとの近傍に負圧現象が発生する。この負圧現象で、燃焼器本体1で生成された後、燃焼室104を上昇した高温の燃焼ガスA1を取入れる。従って、この高温の燃焼ガスA1と、燃焼筒2の内部201を上昇した燃焼ガスAとによる混合燃焼ガスA2の燃焼(二次燃焼)が図れる。この二次燃焼で、無煙化した燃焼ガスA3は、煙突3から屋外に放出される。 The attracted combustion gas A rises in the combustion cylinder 2. Then, on the way, a negative pressure phenomenon occurs in the vicinity of the fourth opening 202 and the tubular portion 2c at the upper end on the back surface side of the fourth opening 202. Due to this negative pressure phenomenon, the high-temperature combustion gas A1 that has risen in the combustion chamber 104 is taken in after being generated by the combustor main body 1. Therefore, the mixed combustion gas A2 can be burned (secondary combustion) by the high-temperature combustion gas A1 and the combustion gas A that has risen inside 201 of the combustion cylinder 2. In this secondary combustion, the smokeless combustion gas A3 is released to the outside from the chimney 3.
そして、図面において、図1−2、図5−1等において、燃焼ガスAとか、高温の燃焼ガスA1とかの流れを矢視で示す。 Then, in the drawings, in FIGS. 1-2, 5-1 and the like, the flow of the combustion gas A and the high-temperature combustion gas A1 is shown by arrows.
上面101、五徳4は、鍋、釜、やかん等の載置用とか、食品の温め・調理に利用する。 The upper surface 101 and the trivet 4 are used for placing pots, kettles, kettles, etc., and for warming and cooking food.
本発明の特徴は、原則として、燃焼器本体1となる一斗缶、ペール缶、ドラム缶、又は地中の穴が、密閉状態であること基本的な特徴であるが、必要により、燃焼器本体1の周面壁面に開閉式の吸気口を設けることも有り得る。 The feature of the present invention is, as a general rule, that the Ito can, the pail can, the drum can, or the hole in the ground, which is the combustor main body 1, is in a sealed state, but if necessary, the combustor main body. It is also possible to provide an opening / closing type intake port on the peripheral wall surface of 1.
以上で説明した各実施例は、好ましい一例を示したものであり、同様な効果と特徴を有する他の構造、手段は、本発明の範疇である。 Each of the examples described above shows a preferable example, and other structures and means having similar effects and characteristics are within the scope of the present invention.
1 燃焼器本体(燃焼器、又は穴)
100 壁面(壁板)
101 上面(天板)
101a 立上部
102 底面(底板)
103 切溝
104 燃焼室(燃焼器本体の内部1a)
105 第2開口(第1吸気口)
106 第1開口(排気口)
107 第6開口
108 第5開口
1000 地中の穴
2 燃焼筒
200 第3開口
201 内部
202 第4開口
203 膨らみ部
2a 円筒部
2b 絞込み円筒部
2c 筒状部
3 煙突
4 五徳
A 燃焼ガス
A1 高温の燃焼ガス
A2 混合燃焼ガス
A3 無煙化した燃焼ガス
X 前
Y 後
y 一方側
Z 方向
W 薪
1 Combustor body (combustor or hole)
100 wall surface (wallboard)
101 Top surface (top plate)
101a Rising top 102 Bottom plate (bottom plate)
103 Cut groove 104 Combustion chamber (inside 1a of the combustor body)
105 2nd opening (1st intake port)
106 1st opening (exhaust port)
107 6th opening 108 5th opening 1000 Underground hole 2 Combustion cylinder 200 3rd opening 201 Inside 202 4th opening 203 Swelling part 2a Cylindrical part 2b Narrowing cylindrical part 2c Cylindrical part 3 Chimney 4 Gotoku A Combustion gas A1 High temperature Combustion gas A2 Mixed combustion gas A3 Smokeless combustion gas X Front Y Rear y One side Z direction W Firewood
Claims (5)
前記排気口の下側に、二次燃焼用の単管の燃焼筒を付設し、この燃焼筒の下端と前記燃焼器本体の底面との間に第3開口を形成し、
前記燃焼筒には、前記燃焼室内に直接開口する第4開口を形成し、
前記第1開口は八角形の形状に開口しており、
前記排気口に設けた燃焼筒の絞込み円筒部、又は燃焼筒に設けた煙突と、前記八角形の第1開口との間に、第5開口を形成し、
前記燃焼器本体の底面の燃焼ガスは、前記第3開口から、前記燃焼筒内に取込まれ、その後、当該燃焼筒の上方に吸引された前記燃焼ガスと、この燃焼筒の第4開口から取込まれた高温の燃焼ガスとで二次燃焼を図ることを特徴とした燃焼器具。 In a combustor appliance provided with a first intake port and an exhaust port that serve as second and first openings on any surface of the combustor body, and a combustion chamber for burning firewood and waste materials.
A single-tube combustion cylinder for secondary combustion is attached to the lower side of the exhaust port, and a third opening is formed between the lower end of the combustion cylinder and the bottom surface of the combustor main body.
A fourth opening that opens directly into the combustion chamber is formed in the combustion cylinder.
The first opening has an octagonal shape.
A fifth opening is formed between the narrowing cylindrical portion of the combustion cylinder provided at the exhaust port or the chimney provided at the combustion cylinder and the first octagonal opening.
The combustion gas on the bottom surface of the combustor body is taken into the combustion cylinder from the third opening, and then sucked above the combustion cylinder from the combustion gas and the fourth opening of the combustion cylinder. A combustion appliance characterized by secondary combustion with the high-temperature combustion gas taken in.
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