JP3144730B2 - Method and apparatus for drying grain using solar heat - Google Patents

Method and apparatus for drying grain using solar heat

Info

Publication number
JP3144730B2
JP3144730B2 JP09364093A JP9364093A JP3144730B2 JP 3144730 B2 JP3144730 B2 JP 3144730B2 JP 09364093 A JP09364093 A JP 09364093A JP 9364093 A JP9364093 A JP 9364093A JP 3144730 B2 JP3144730 B2 JP 3144730B2
Authority
JP
Japan
Prior art keywords
drying
solar heat
grain
dried
solar
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP09364093A
Other languages
Japanese (ja)
Other versions
JPH06281336A (en
Inventor
愛次郎 金子
正幸 土門
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
KANEKONOKI CO., LTD.
Original Assignee
KANEKONOKI CO., LTD.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by KANEKONOKI CO., LTD. filed Critical KANEKONOKI CO., LTD.
Priority to JP09364093A priority Critical patent/JP3144730B2/en
Publication of JPH06281336A publication Critical patent/JPH06281336A/en
Application granted granted Critical
Publication of JP3144730B2 publication Critical patent/JP3144730B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Drying Of Solid Materials (AREA)
  • Adjustment And Processing Of Grains (AREA)

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【産業上の利用分野】本発明は、太陽熱吸収乾燥庫内に
堆積した被乾燥穀物層に、太陽熱吸収乾燥庫の上部空間
に太陽熱の吸収により生じた加温空気を外気を取り入れ
ながら吸引流通させて穀物を乾燥する太陽熱利用の穀物
乾燥方法およびその装置に関する。
BACKGROUND OF THE INVENTION The present invention relates to a solar heat drying oven.
The upper space of the solar heat absorption drying room
Heated air generated by the absorption of solar heat into the outside air
The present invention relates to a method and an apparatus for drying cereals utilizing solar heat, in which cereals are dried by suction and circulation .

【0002】[0002]

【従来の技術】従来、タンク(穀槽)内に張込んだ25
%以上の高水分穀粒をタンク内において公転しながら自
転する竪型オーガーにより上昇するよう撹拌流動せしめ
るとともに、揚送機を利用して循環流動させ、圧送され
た乾燥風により前記穀粒を所望の水分に乾燥するように
した穀粒の乾燥方法は、本出願前例えば特公昭63−4
0579号公報に記載されていて公知である。
2. Description of the Related Art Conventionally, 25
% Or more of the high-moisture grains are stirred and fluidized by a vertical auger that rotates while revolving in the tank, and circulated and fluidized using a lifting machine. Prior to the present application, for example, Japanese Patent Publication No. Sho 63-4
No. 0579, which is publicly known.

【0003】[0003]

【発明が解決しようとする課題】ところで、従前のこの
種穀粒の乾燥方法においては、穀粒の乾燥に利用される
乾燥熱風は、火炉および圧送ファンを備えた熱風生成装
置により得られたものであるため、長時間を要する穀粒
の乾燥に際しては多くの燃料を消費するので、燃費が嵩
むは勿論のこと、その維持管理作業が大変である許り
か、熱風温度がたとえば30〜35℃以上、湿度が30
%以下あるいは70%以上の場合には乾燥中の穀粒の品
質に悪影響を与え食味が低下するという問題点があっ
た。
By the way, in the conventional method of drying seed grains, the dry hot air used for drying the grains is obtained by a hot air generator provided with a furnace and a pressure fan. Therefore, a large amount of fuel is consumed in drying the kernel, which takes a long time, so that not only the fuel efficiency is increased, but also the maintenance work is difficult, or the hot air temperature is, for example, 30 to 35 ° C. or higher. , Humidity is 30
% Or 70% or more, there is a problem that the quality of the grain during drying is adversely affected and the taste is reduced.

【0004】本発明は、太陽熱吸収乾燥庫内に堆積した
被乾燥穀物層に、太陽熱吸収乾燥庫の上部空間に太陽熱
の吸収により生じた加温空気を外気を取り入れながら吸
引流通させて穀物を乾燥するにあたり、加温空気の湿度
が穀物の乾燥に有効な50〜60%のときだけ被乾燥穀
物層に加温空気を吸引流通させることにより、太陽熱だ
けの利用であっても穀物を効率よく乾燥でき、しかも、
ゆっくりと乾燥せしめて品質良好な乾燥穀物を得ること
ができる太陽熱利用の穀物乾燥方法およびその装置を提
供することを目的としている。
[0004] The present invention is a method of depositing in a solar heat absorption drying cabinet.
Solar heat is applied to the layer to be dried,
Absorbs warm air generated by air absorption while taking in outside air.
Humidity of the heated air when the grain is dried for distribution
Cereal to be dried only when is 50-60% effective for drying the cereal
By heating and circulating heated air through the material layer,
Cereal can be dried efficiently even if
It is an object of the present invention to provide a grain drying method using solar heat and an apparatus therefor that can be dried slowly to obtain dried grains of good quality .

【0005】[0005]

【課題を解決するための手段】上記目的を達成するため
に、本発明における太陽熱利用の穀物乾燥方法およびそ
の装置においては、第1の発明太陽熱吸収乾燥庫内
に堆積した被乾燥穀物層に、太陽熱吸収乾燥庫の上部空
間に太陽熱の吸収により生じた加温空気を外気を取り入
れながら吸引流通させて穀物を乾燥する穀物乾燥方法に
おいて、太陽熱吸収乾燥庫の上部空間内の空気をその湿
度が50〜60%のときだけ被乾燥穀物層に吸引流通さ
せて穀物を乾燥するものである。
To achieve the above object, according to the solution to ## in cereals drying method and apparatus of the solar heat utilization in the present invention, the first invention, solar absorption drying-compartment
The dried grain layer deposited on
Intakes warm air generated by the absorption of solar heat in between
Cereal drying method in which cereals are dried by suction circulation while drying
The air in the upper space of the solar heat absorption drying cabinet
Only when the degree is 50-60%
Let the grain dry .

【0006】そして、第2の発明は、太陽熱吸収乾燥庫
内に堆積した被乾燥穀物層に、太陽熱吸収乾燥庫の上部
空間に太陽熱の吸収により生じた加温空気を外気を取り
入れながら吸引流通させて穀物を乾燥する穀物乾燥装置
であって、太陽熱吸収乾燥庫 屋根面側および南面側を
該太陽熱吸収乾燥庫の上部空間と外気に通じた加温空気
流通路が形成されるよう二重壁構成とし、かつ内部を通
気床のある乾燥室とし太陽熱吸収乾燥庫にはその上部
空間から乾燥室を通して吸引風を生じさせる通風装置を
設けるとともに、前記太陽熱吸収乾燥庫の上部空間には
湿度センサを備え、該湿度センサが50〜60%を検出
しているときだけ通風装置運転する通風装置制御回路
を設たものである。
[0006] A second invention is a solar heat absorption drying cabinet.
The dried grain layer deposited in the upper part of the solar absorption drying cabinet
Takes outside air from heated air generated by the absorption of solar heat
A grain drying device that dries the grains by suction circulation while putting
The roof side and the south side of the solar heat absorption drying cabinet
A double wall construction so that said solar absorbing drying oven top space and through the outside air heated air flow passage is formed, and the internal drying chamber with a venting the bed, the solar absorption drying oven thereon
In addition to providing a ventilation device that generates suction air from the space through the drying chamber , the upper space of the solar heat absorption drying cabinet is
Equipped with a humidity sensor, which detects 50-60%
Those digits only set the ventilation control circuit <br/> for operating a ventilation apparatus while.

【0007】[0007]

【作用】図1に示すように、太陽熱吸収乾燥庫の乾燥室
内に所定量の穀物を収容した後、暫時この状態を維持さ
せる。そして、太陽熱吸収乾燥庫に太陽光があたり続け
ると、乾燥室内の温度は太陽熱の吸熱作用で自然に上昇
ると同時に湿度が低下する。
As shown in FIG. 1, after a predetermined amount of cereals is stored in the drying room of the solar heat absorption drying cabinet, this state is maintained for a while. And the sunlight keeps hitting the solar heat drying oven
Then , the temperature in the drying room naturally rises due to the heat absorption effect of the solar heat
It is that at the same time the humidity is lowered.

【0008】この状態で太陽熱吸収乾燥庫の上部空間
の加温空気の湿度が略50〜60%になったことを湿
度センサが検出したら、通風装置が運転を開始し、加温
空気を穀物に浴びせて乾燥せしめるとともに、通風装置
の吸引作用で加温空気流通路を経て外気を乾燥室内に吸
引する。
[0008] In this state, the upper space of the solar heat absorption drying cabinet
When the humidity sensor detects that the humidity of the heated air in the inside has become approximately 50 to 60%, the ventilation device starts operation, bathes the heated air in the grain to dry it, and uses the suction effect of the ventilation device. Outside air is sucked into the drying chamber through the heated air flow passage.

【0009】ところで、加温空気流通路が設けられた太
陽熱吸収乾燥庫の屋根面側および南面側は、特に、太陽
熱を有効的に吸熱できるよう二重壁構成となっているの
で、吸引作用により乾燥室内に吸引された外気は加温空
気流通路中を通る過程で太陽熱の吸熱作用で加温され、
上記湿度条件が維持される。
By the way, since the roof side and the south side of the solar heat absorbing and drying cabinet provided with the heated air flow passage are of a double wall construction so as to be able to effectively absorb the solar heat, they are attracted by suction. The outside air sucked into the drying chamber is heated by the heat absorption of solar heat while passing through the heated air flow passage,
The above humidity conditions are maintained.

【0010】したがって、乾燥室内に収容された穀物は
通風装置の運転中においては、加温空気流通路より吸引
された加温空気を浴びて品質を損なうことなく、ゆっく
りと乾燥される。
[0010] Therefore, during operation of the ventilation device, the grains contained in the drying chamber are slowly dried without losing quality due to the heated air sucked from the heated air flow passage.

【0011】そして、前記の乾燥作業中において天候の
変化、あるいは夜間等において太陽熱吸収乾燥庫の上部
空間内の加温空気の湿度が略50〜60%の範囲外にな
った ことを湿度センサが検出したら、直ちに通風装置の
運転を停止し、乾燥条件の悪い空気が乾燥室内に吸引さ
れ穀物に浴びせられないように確実に防止する。
[0011] Then, the upper part of Oite solar absorption drying cabinet weather changes or night, etc. during the drying work
The humidity of the heated air in the space is out of the range of about 50-60%.
As soon as the humidity sensor detects that the air has blown, the operation of the ventilation device is immediately stopped, and the air with poor drying conditions is reliably prevented from being sucked into the drying chamber and being exposed to the grains.

【0012】[0012]

【実施例】実施例について図面を参照して説明する。図
1は、本発明方法を実施させるための太陽熱利用の穀物
乾燥装置の要部を破断した正面図である。1は、全体を
円筒状に塑成した太陽熱吸収乾燥庫であって、該太陽熱
吸収乾燥庫1内の底部側には排風路2を介して多孔板状
の通風床3を水平に敷設し、前記通風床3の上方に被乾
燥穀物を収容できる乾燥室4が設けられている。そし
て、通風床3の上部には通風床3の上面を自転しながら
公転する横軸排出オーガー5を水平状に設けて乾燥室4
内の乾燥穀物を通風床3の中心位置に開口した排出口6
へ向け搬送せしめるとともに、前記横軸排出オーガー5
よりも下方位置には、横軸排出オーガー5によって排出
口6まで移送されてきた乾燥穀物を受け継いで太陽熱吸
収乾燥庫1外に搬送するためのコンベア式の搬送ベルト
7が回転自在に懸回されている。前記太陽熱吸収乾燥庫
1の屋根面側Aは天井壁8と内壁9との間に加温空気流
通路10が形成された二重壁構成とするとともに、南面
側Bも内壁9と外壁11との間に加温空気流通路12が
形成された二重壁構成に形成せしめてあり、前記加温空
気流通路10は、吸気側13が外部と連通するように開
口され、噴出側14,14が太陽熱吸収乾燥庫1の上部
空間内に開口され、また、南面側Bに設けられた加温空
気流通路12の吸気側15は外と通るように開口さ
れ、噴出側16は前記の加温空気流通路10に接続され
ている。したがって、天井壁8および外壁11を太陽熱
を効率的に吸熱することができる壁板で構成すれば、太
陽熱の吸熱作用で加温空気流通路10,12に沿い乾燥
室4に向けて流通する空気を効率よく加温せしめること
ができる。17は、排風路2に吸気側を接続した通風装
置である。18は、太陽熱吸収乾燥庫1の上部空間内に
おいて加温空気の湿度を検出するための湿度センサであ
って、加温空気流通路10,10の噴出側14,16近
傍位置の乾燥室4内に配設されている。19は、太陽熱
吸収乾燥庫1の頂部中心位置に設けた穀物張込装置であ
る。なお、本発明の実施例には図示されていないが、乾
燥室4内に収容した穀物を下方より上方に向けて撹拌流
動し加温空気の流通を促進させる目的を達成するため
に、乾燥室4内を自転しながら公転し、かつ往復移動す
る複数本の竪型オーガーを配設してもよいことは勿論で
ある。
An embodiment will be described with reference to the drawings. Figure 1 is a Ru front view der was broken the main part of the grain drying apparatus Solar for causing carrying out the method of the present invention. Reference numeral 1 denotes a solar heat absorbing and drying cabinet formed entirely in a cylindrical shape, and a perforated plate-shaped ventilation floor 3 is laid horizontally on the bottom side of the solar heat absorbing and drying cabinet 1 through an exhaust passage 2. A drying chamber 4 is provided above the ventilation floor 3 for accommodating grains to be dried. A horizontal axis discharging auger 5 that revolves around the upper surface of the ventilation floor 3 while rotating on the upper surface of the ventilation floor 3 is provided horizontally, and a drying chamber 4 is provided.
Outlet 6 opened at the center of ventilation floor 3 for dried cereals inside
To the horizontal axle 5
Below this, a conveyor-type conveyor belt 7 for rotatably suspending the dried grains transferred to the outlet 6 by the horizontal-axis discharge auger 5 and transporting the dried grains to the outside of the solar-heat-absorbing drying cabinet 1 is suspended. ing. The roof side A of the solar heat absorbing and drying cabinet 1 has a double wall configuration in which a heated air flow passage 10 is formed between the ceiling wall 8 and the inner wall 9, and the south side B also has the inner wall 9 and the outer wall 11. The heated air flow passage 10 is formed so as to communicate with the outside, and the heated air flow passage 10 is opened so that the intake side 13 communicates with the outside. There are openings in the upper space of the solar absorption drying cabinet 1, the intake side 15 of the heating air flow passage 12 provided on the south side B is opened to the outer air and passing Ji so that, ejection side 16 the Is connected to the warmed air flow passage 10. Therefore, if the ceiling wall 8 and the outer wall 11 are made of a wall plate capable of efficiently absorbing the solar heat, the air flowing toward the drying chamber 4 along the heated air flow passages 10 and 12 by the heat absorbing action of the solar heat. Can be efficiently heated. Reference numeral 17 denotes a ventilation device in which the intake side is connected to the exhaust path 2. 18 is in the upper space of the solar heat absorption drying cabinet 1
A humidity sensor for detecting humidity of Oite warming air is disposed in the drying chamber 4 of the ejection side 14, 16 near the position of the heating air flow passage 10, 10. Reference numeral 19 denotes a grain filling device provided at the center of the top of the solar heat absorbing drying cabinet 1. Although not shown in the embodiments of the present invention, in order to achieve the purpose of stirring and flowing the grains contained in the drying chamber 4 upward from below to promote the flow of heated air, the drying chamber Needless to say, a plurality of vertical augers that revolve and reciprocate while rotating inside 4 may be provided.

【0013】図2に示されたものは、第1発明の方法を
実施させるためのブロック回路である。18は、湿度セ
ンサ、20は、湿度検出回路、21は、加温空気判定回
路、22は、湿度設定回路、23は、通風装置制御回
路、17は、通風装置であって、湿度センサ18により
乾燥室4内の湿度を常に検出し、その検出信号を湿度検
出回路20に送り、その検出湿度が予め設定された条
件、すなわち湿度50〜60%となった加温空気
判定回路21により判定したら、通風装置制御回路23
により通風装置17を運転せしめ、太陽熱の吸熱作用で
流通路10,12中を流通する間に乾燥条件に適合する
湿度に加温された加温空気を乾燥室4内へ吸引し、収容
された穀物に浴びせて品質を損なうことなく、ゆっくり
と乾燥し食味良好な乾燥穀物を得ることができる。な
お、湿度センサ18が50〜60%の範囲外の湿度を検
出したときには通風装置17は直ちにその運転を停止す
ようになっている。前述した太陽熱吸収乾燥庫1は、
貯蔵庫として使用することができるものである。
[0013] those shown in Figure 2, Ru block circuit der in order to implement the method of the first invention. 18 is a humidity sensor, 20 is a humidity detection circuit, 21 is a heated air determination circuit, 22 is a humidity setting circuit, 23 is a ventilation device control circuit, and 17 is a ventilation device. the humidity in the drying chamber 4 always detects and sends a detection signal to the humidity detecting circuit 20, conditions the detected humidity is higher than a predetermined level, i.e. humidity 50% to 60% and became this and warming air judging circuit 21 , The ventilation device control circuit 23
The ventilation device 17 is operated, and the heated air heated to the humidity suitable for the drying conditions is sucked into the drying chamber 4 while being circulated through the flow passages 10 and 12 by the heat absorbing action of solar heat, and is accommodated therein. It is possible to obtain a dried cereal that is slowly dried and has a good taste without losing quality by being poured onto the cereal. Note that immediately so as to stop the operation ventilation device 17 when the humidity sensor 18 detects humidity outside the range of 50% to 60%. The above-mentioned solar heat absorption drying cabinet 1
It can be used as a storage.

【0014】[0014]

【発明の効果】本発明は、以上説明したような方法およ
び装置を有するので、以下に記載されたような効果を奏
する。太陽熱吸収乾燥庫内に堆積した被乾燥穀物層に、
太陽熱吸収乾燥庫の上部空間に太陽熱の吸収により生じ
た加温空気を外気を取り入れながら吸引流通させて穀物
を乾燥するにあたり、加温空気の湿度が穀物の乾燥に有
効な50〜60%のときだけ被乾燥穀物層に加温空気を
吸引流通させることにより、太陽熱だけの利用であって
も穀物を効率よく乾燥でき、しかも、ゆっくりと乾燥せ
しめて品質良好な乾燥穀物を得ることができる。
Since the present invention has the above-described method and apparatus, the following effects can be obtained. In the layer of cereal to be dried that has accumulated in the solar heat absorption drying cabinet,
Generated by the absorption of solar heat in the upper space of the solar absorption drying cabinet
The heated air is sucked and distributed while taking in outside air,
When drying cereals, the humidity of the heated air is
Heating air to the dried grain layer only when the effective 50-60%
By suction circulation, only solar heat is used.
Can dry the grain efficiently and slowly.
A dried grain of good quality can be obtained.

【図面の簡単な説明】[Brief description of the drawings]

【図1】太陽熱利用の穀物乾燥装置の要部を破断した正
面図である。
FIG. 1 is a front view in which main parts of a grain drying device using solar heat are cut away.

【図2】本発明方法を実施させるためのブロック回路図
である。
FIG. 2 is a block circuit diagram for implementing the method of the present invention.

【符号の説明】[Explanation of symbols]

1 太陽熱吸収乾燥庫 3 通風床 4 乾燥室 8 天井壁 9 内壁 10,12 加温空気流通路 A 屋根面側 B 南面側 17 通風装置 18 湿度センサ 20 湿度検出回路 21 加温空気判定回路 22 湿度設定回路 23 通風装置制御回路 DESCRIPTION OF SYMBOLS 1 Solar heat absorption drying room 3 Ventilation floor 4 Drying room 8 Ceiling wall 9 Inner wall 10, 12 Heating air flow path A Roof side B South side 17 Ventilation device 18 Humidity sensor 20 Humidity detection circuit 21 Heated air judgment circuit 22 Humidity setting Circuit 23 Ventilator control circuit

───────────────────────────────────────────────────── フロントページの続き (56)参考文献 特開 昭63−238388(JP,A) 特開 昭63−267879(JP,A) 特開 昭62−255783(JP,A) 特開 平5−312470(JP,A) 実開 昭60−83891(JP,U) 実開 昭61−54195(JP,U) 特公 昭58−39483(JP,B2) (58)調査した分野(Int.Cl.7,DB名) F26B 3/28,9/06,23/00 F26B 17/14,25/22 F26B 21/00 - 21/12 ──────────────────────────────────────────────────続 き Continuation of the front page (56) References JP-A-63-238388 (JP, A) JP-A-63-267879 (JP, A) JP-A-62-255783 (JP, A) 312470 (JP, A) Japanese Utility Model Showa 60-83891 (JP, U) Japanese Utility Model Showa 61-54195 (JP, U) Japanese Patent Publication No. 58-39483 (JP, B2) (58) Field surveyed (Int. Cl. 7 , DB name) F26B 3 / 28,9 / 06,23 / 00 F26B 17 / 14,25 / 22 F26B 21/00-21/12

Claims (2)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 太陽熱吸収乾燥庫内に堆積した被乾燥穀
物層に、太陽熱吸収乾燥庫の上部空間に太陽熱の吸収に
より生じた加温空気を外気を取り入れながら吸引流通さ
せて穀物を乾燥する穀物乾燥方法において、太陽熱吸収
乾燥庫の上部空間内の空気をその湿度が50〜60%の
ときだけ被乾燥穀物層に吸引流通させて穀物を乾燥する
ことを特徴とする太陽熱利用の穀物乾燥方法。
1. A dried grain deposited in a solar heat absorbing drying cabinet.
To absorb solar heat in the upper layer of the solar heat drying oven
The generated warm air is sucked and circulated while taking in outside air.
Cereal drying method to dry cereal
The humidity in the upper space of the drying cabinet is reduced to 50-60%.
A grain drying method using solar heat, characterized in that the grain is dried by suction circulation only in the grain layer to be dried .
【請求項2】 太陽熱吸収乾燥庫内に堆積した被乾燥穀
物層に、太陽熱吸収乾燥庫の上部空間に太陽熱の吸収に
より生じた加温空気を外気を取り入れながら吸引流通さ
せて穀物を乾燥する穀物乾燥装置であって、太陽熱吸収
乾燥庫の屋根面側および南面側を該太陽熱吸収乾燥庫の
上部空間と外気に通じた加温空気流通路が形成されるよ
う二重壁構成とし、かつ内部を通気床のある乾燥室と
太陽熱吸収乾燥庫にはその上部空間から乾燥室を通
して吸引風を生じさせる通風装置を設けるとともに、前
太陽熱吸収乾燥庫の上部空間には湿度センサを備え、
該湿度センサが50〜60%を検出しているときだけ
風装置運転する通風装置制御回路を設たことを特徴
とする太陽熱利用の穀物乾燥装置。
2. Grains to be dried deposited in a solar heat absorbing drying cabinet.
To absorb solar heat in the upper layer of the solar heat drying oven
The generated warm air is sucked and circulated while taking in outside air.
A grain drying device that dries the grain
The roof side and the south side of the drying cabinet
A double wall construction so that warm air passage through the upper space and the outside air is formed, and the internal drying chamber with a venting the bed, the solar absorption drying oven through the drying chamber from the upper space
A ventilation device for generating a suction wind is provided, and a humidity sensor is provided in an upper space of the solar heat absorption drying cabinet ,
Grain drying apparatus Solar which the humidity sensor is characterized only the ventilation control circuit for operating a passing <br/> wind device digits set while detecting a 50% to 60%.
JP09364093A 1993-03-29 1993-03-29 Method and apparatus for drying grain using solar heat Expired - Fee Related JP3144730B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP09364093A JP3144730B2 (en) 1993-03-29 1993-03-29 Method and apparatus for drying grain using solar heat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP09364093A JP3144730B2 (en) 1993-03-29 1993-03-29 Method and apparatus for drying grain using solar heat

Publications (2)

Publication Number Publication Date
JPH06281336A JPH06281336A (en) 1994-10-07
JP3144730B2 true JP3144730B2 (en) 2001-03-12

Family

ID=14087962

Family Applications (1)

Application Number Title Priority Date Filing Date
JP09364093A Expired - Fee Related JP3144730B2 (en) 1993-03-29 1993-03-29 Method and apparatus for drying grain using solar heat

Country Status (1)

Country Link
JP (1) JP3144730B2 (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9015958B2 (en) * 2013-03-09 2015-04-28 Ctb, Inc. Method and system to selectively dry grain in a grain bin
CN104964552B (en) * 2015-07-22 2017-09-26 宋开泉 Regenerative resource freeze-day with constant temperature stove
RU2687374C1 (en) * 2018-02-02 2019-05-13 Федеральное государственное бюджетное научное учреждение Федеральный научный агроинженерный центр ВИМ (ФГБНУ ФНАЦ ВИМ) Device for temporary storage of wet grain
RU2673657C1 (en) * 2018-02-26 2018-11-28 Федеральное государственное бюджетное образовательное учреждение высшего образования "Рязанский государственный агротехнологический университет имени П.А. Костычева" Method of drying and active ventilation of grain
CN114199015B (en) * 2021-12-12 2023-04-18 安徽兴永机电设备有限公司 Energy-conserving drying device of agricultural granary

Also Published As

Publication number Publication date
JPH06281336A (en) 1994-10-07

Similar Documents

Publication Publication Date Title
JP3144730B2 (en) Method and apparatus for drying grain using solar heat
CN207365592U (en) A kind of New drying device for preboiled rice
CN207707212U (en) A kind of drying device of rice
CN205897749U (en) Small -size grain drying machine
CN115325796A (en) Intelligent drying control device, control method and system for hot air cylinder
CN112985035A (en) Grain is with high-efficient quick drying equipment based on humidity
CN207054677U (en) A kind of novel rice dryer
CN220541617U (en) Energy-saving grain dryer with uniform hot air
JP3316250B2 (en) Grain drying storage
JPH10325681A (en) Grain drier
JP2004020054A (en) Drier
CN218846804U (en) Drying-machine for coarse cereals
JPS5813984A (en) Automatic controller for cereal drier
JP3235905B2 (en) Grain drying storage
JP3205835B2 (en) Grain co-drying facility
CN221055424U (en) Wood shaving and wood chip dryer
CN215893139U (en) Automatic change rice sunning drying-machine
JP3272957B2 (en) Cold storage method of grain and cold storage device of grain
JPS60627Y2 (en) Grain dryer ventilation control device
JP2592518Y2 (en) Drying facility using solar heat
CN217625356U (en) Tea-seed oil storage device
CN218895613U (en) Drying device
JPS6139000B2 (en)
JPH06345225A (en) Cereals storage tank
SU1414352A2 (en) Ventilated hopper for grain products

Legal Events

Date Code Title Description
LAPS Cancellation because of no payment of annual fees