JP2006038725A - Balloon releasing system - Google Patents

Balloon releasing system Download PDF

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JP2006038725A
JP2006038725A JP2004221146A JP2004221146A JP2006038725A JP 2006038725 A JP2006038725 A JP 2006038725A JP 2004221146 A JP2004221146 A JP 2004221146A JP 2004221146 A JP2004221146 A JP 2004221146A JP 2006038725 A JP2006038725 A JP 2006038725A
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balloon
gas
observation
tray
gas supply
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JP3843436B2 (en
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Yoshikatsu Yamamoto
義勝 山本
Yasomi Oike
八十美 大池
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METEOROLOGICAL AGENCY
Meisei Electric Co Ltd
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METEOROLOGICAL AGENCY
Meisei Electric Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a balloon releasing system capable of inflating normally a balloon for observation in a balloon releasing tower to release safely the balloon. <P>SOLUTION: A gas supply port 13 is provided in a moving-directional tip side, in a tray 2b horizontally movable from a balloon release preparation chamber 2 toward the balloon releasing tower 3 of a chamber adjacent thereto, and an intake port 14 of the balloon for the observation before filling gas is connected disconnectably to the gas supply port 13. A small cylinder 12 stored with the balloon 11 for the observation before filling the gas is arranged along a moving direction of the tray 2b to incline a tip opening 12a toward an upper side, and a portion ranging over from the intake port 14 in the balloon 11 for the observation to the tip opening 12a is formed into a ridge shape protruded upwards. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、気象観測用気球を自動的に無人で放球する放球装置に係り、特に放球塔内の気球の張付きを防止できる放球装置に関する。   The present invention relates to a balloon launching device that automatically launches a weather observation balloon unattended, and more particularly to a balloon launching device that can prevent sticking of balloons in a launch tower.

高層気象観測システムとして、図7に示すような集合型のシステムが提案されている。この集合型高層気象観測システムは、観測用気球に吊り下げられたラジオゾンデからの観測情報を種々の受信機により受信する受信室1と、この受信室1に隣接する放球準備室2と、放球準備室2に隣接する筒体3aが上下方向に直立する放球塔3とを有している。   As a high-rise weather observation system, a collective system as shown in FIG. 7 has been proposed. This collective high-rise meteorological observation system includes a receiving room 1 for receiving observation information from a radiosonde suspended from an observation balloon by various receivers, a launch preparation room 2 adjacent to the receiving room 1, A cylindrical body 3a adjacent to the discharge preparation chamber 2 has a discharge tower 3 upright in the vertical direction.

放球準備室2は、間欠的に回転する水平に配置されたターンテーブル2aを有し、このターンテーブル2aには放射方向に細長いトレー2bが周方向に沿って等間隔に複数配置されている。この複数のトレー2bには、径方向先端部に水素ガス等のガス供給口が取り付けられている。観測用気球は、このガス供給口に吸入口が取り外し可能に連結され、トレー2b上に畳まれて径方向内側に向けて載置されている。また、観測用の気球には、ロープを介してラジオゾンデが取り付けられている。   The launch preparation chamber 2 has a horizontally arranged turntable 2a that rotates intermittently, and a plurality of trays 2b that are elongated in the radial direction are arranged at equal intervals in the circumferential direction on the turntable 2a. . A gas supply port such as hydrogen gas is attached to the plurality of trays 2b at the distal ends in the radial direction. The observation balloon is detachably connected to the gas supply port, and is folded on the tray 2b and placed radially inward. A radiosonde is attached to the balloon for observation via a rope.

したがって、このトレー2b上に載置されている観測用気球に例えば水素ガスを前記ガス供給口から充填すれば、観測用気球の放球が可能となる。   Accordingly, if the observation balloon placed on the tray 2b is filled with, for example, hydrogen gas from the gas supply port, the observation balloon can be released.

ターンテーブル2aに配置されている複数のトレー2bは、放射方向に沿って移動可能に支持されている。   The plurality of trays 2b arranged on the turntable 2a are supported so as to be movable along the radial direction.

放球準備室2と放球塔3との隔壁4には、開閉ドアー付の開口5が形成されており、ターンテーブル2aが1回の間欠送りを行うと、一つのトレー2bの外端がこの開口5に正対し、次にターンテーブル2aを間欠駆動すると、次のトレー2bが開口5に正対する。   An opening 5 with an opening / closing door is formed in the partition wall 4 between the launch preparation chamber 2 and the launch tower 3, and when the turntable 2 a performs one-time intermittent feed, the outer end of one tray 2 b is When the turntable 2a is intermittently driven next to the opening 5, the next tray 2b faces the opening 5.

観測時間が近づくと、前記ラジオゾンデの注水電池に自動的に水が給水され、開口5のドアーが開く。そして、ターンテーブル2aの上方から開口5の形成された隔壁に向かってレール6が水平に配置され、このレール6にシリンダー駆動により水平移動する不図示の押し出し部材が取り付けられている。この押し出し部材は開口5に正対するトレー2bの内径端に係合し、該押し出し部材が該開口5に向かって移動することにより、トレー2bを開口5を通して放球塔3の筒体3a内に送り込む。トレー2bの先端部が筒体3a内の所定位置まで送り込まれると、トレー2bの送り込み動作が停止し、開口5の開閉ドアーが閉じられる。   When the observation time approaches, water is automatically supplied to the water injection battery of the radiosonde, and the door of the opening 5 is opened. A rail 6 is horizontally arranged from above the turntable 2a toward the partition wall in which the opening 5 is formed, and an unillustrated pushing member that moves horizontally by cylinder driving is attached to the rail 6. The pushing member engages with the inner diameter end of the tray 2 b facing the opening 5, and the pushing member moves toward the opening 5, whereby the tray 2 b passes through the opening 5 and enters the cylindrical body 3 a of the launch tower 3. Send it in. When the tip of the tray 2b is fed to a predetermined position in the cylinder 3a, the feeding operation of the tray 2b is stopped and the opening / closing door of the opening 5 is closed.

トレー2bが筒体3a内の所定位置に停止すると、筒体3aの底部からトレー2bの裏面側に向けてガス供給ノズルが上昇し、トレー2bに設けたガス供給口の下端に該ガス供給ノズルが連結される。すると、水素ガスボンベ7からの水素ガスが観測用気球内に供給される。観測用気球内に水素ガスが充填されるにつれて、観測用気球が大きくなって浮かび上がりはじめ、所定量の水素ガスが供給されると、トレー2bに固定されているガス供給口から観測用気球のガス吸入口を離脱させると、筒体3aの開口している上部からラジオゾンデが観測用気球と共に放球される。その際、筒体3aの上部開口を覆っている開閉ドーム8が開いており、前記観測用気球と前記ラジオゾンデが放球可能となっている。   When the tray 2b stops at a predetermined position in the cylinder 3a, the gas supply nozzle rises from the bottom of the cylinder 3a toward the back side of the tray 2b, and the gas supply nozzle is placed at the lower end of the gas supply port provided in the tray 2b. Are concatenated. Then, hydrogen gas from the hydrogen gas cylinder 7 is supplied into the observation balloon. As the observation balloon is filled with hydrogen gas, the observation balloon starts to increase in size, and when a predetermined amount of hydrogen gas is supplied, the observation balloon is supplied from the gas supply port fixed to the tray 2b. When the gas suction port is removed, the radiosonde is released together with the observation balloon from the upper part where the cylindrical body 3a is opened. At that time, the open / close dome 8 covering the upper opening of the cylindrical body 3a is opened so that the observation balloon and the radiosonde can be released.

また、放球が終了すると、開口5の開閉ドアーが開いて空となったトレー2bが前記押し出し部材により再びターンテーブル2aの元の位置まで戻され、該開口5の開閉ドアーが閉ざされる。   When the ball discharge is completed, the opening / closing door of the opening 5 is opened and the tray 2b which is empty is returned to the original position of the turntable 2a by the pushing member, and the opening / closing door of the opening 5 is closed.

ところで、放球塔3は、放球のためにトレー2bが筒体3a内に送り込まれると、開閉ドーム8が開く。開閉ドーム8が開いている時に雨、雪が降っていると、筒体3a内にも入り込み、筒体3内を濡らしてしまう。   By the way, in the launch tower 3, when the tray 2b is fed into the cylinder 3a for launching, the open / close dome 8 is opened. If it is raining or snowing when the open / close dome 8 is open, it will also enter the cylindrical body 3a and wet the cylindrical body 3.

一方、観測用気球には、外表面にパウダーがかかっており、畳んでいる観測用気球に水素ガスを供給した際に観測用気球がスムーズに広がるようにしている。   On the other hand, the observation balloon is covered with powder on the outer surface so that the observation balloon spreads smoothly when hydrogen gas is supplied to the folded observation balloon.

しかしながら、筒体3aの内面が濡れていると、観測用気球内にガスを充填している最中に当該観測用気球が膨らんで行く途中でトレー2bから外れて床あるいは側面に触れると、観測用気球の表面が濡れ、観測用気球の表面同士が張り付き、観測用気球の下端である吸入口の少し上の位置を膨らみのトップとし、このトップ位置が徐々に上方へ移動し、最後に気球のトップに達するという正規の膨れ方が出来なくなることがある。   However, if the inner surface of the cylinder 3a is wet, if the observation balloon is removed from the tray 2b and touches the floor or the side surface while the observation balloon is being filled with gas, The surface of the balloon for observation is wet, the surfaces of the balloon for observation stick together, and the top of the bulge is located at a position slightly above the inlet, which is the lower end of the balloon for observation. The regular bulge that reaches the top of may not be possible.

また、筒体3の内面が濡れていると、観測用気球が筒体3aの内面に張り付き、上述のような正規の膨れ方ができなくなり、気球が破裂するおそれがある。このような気球外表面の張り付きは、気球の外表面にかけてあるパウダーが濡れると更に助長する原因ともなっていた。   Further, if the inner surface of the cylinder 3 is wet, the observation balloon sticks to the inner surface of the cylinder 3a, and the above-described normal swelling cannot be performed, and the balloon may burst. Such sticking of the outer surface of the balloon has been a cause of further promotion when the powder on the outer surface of the balloon gets wet.

本願発明は、このような従来の問題を解決し、放球塔内で観測用気球が正規に膨らみ、安全に放球できる放球装置を提供しようとするものである。   The present invention is intended to solve such a conventional problem, and to provide a launching device capable of safely launching an observation balloon inflating in a launch tower.

本願発明の目的を実現する構成は、請求項1に記載のように、放球準備室から隣室の放球塔に向けて水平移動可能で、移動方向先端側にガス供給口を設けたトレーと、前記ガス供給口に脱着可能にガス吸入口が連結され、該トレーの移動方向後端側に向けて配置されたガス充填前の観測用気球と、前記トレーが前記放球塔内に供給されると前記ガス供給口から前記ガス吸入口を介して前記観測用気球内にガスを充填するガス供給手段とを有し、前記観測用気球に所定量のガスが充填されると前記ガス供給口から前記ガス吸入口の連結を解除して放球を行なう放球装置において、前記トレーには、前記トレーの移動方向に沿って前記ガス充填前の観測用気球が収納される小筒が配置されており、該小筒は先端開口が前記ガス供給口と対向し、且つ該先端開口が上方に傾斜していることを特徴とする放球装置とするものである。   The structure which realizes the object of the present invention is a tray which is horizontally movable from the launch preparation chamber toward the launch tower of the adjacent chamber and has a gas supply port on the front end side in the movement direction, as described in claim 1. A gas inlet port is detachably connected to the gas supply port, and an observation balloon before gas filling arranged toward the rear end side in the moving direction of the tray and the tray are supplied into the discharge tower. Gas supply means for filling the observation balloon with gas from the gas supply port via the gas inlet, and when the observation balloon is filled with a predetermined amount of gas, the gas supply port In the launching device for releasing the gas from the gas inlet, the tray is provided with a small cylinder in which the observation balloon before the gas filling is stored along the moving direction of the tray. The small cylinder has a tip opening facing the gas supply port, and It is intended to Hotama and wherein the the distal end opening is inclined upwards.

上記した構成で、前記小筒に先端開口より前記観測用気球が収納された状態において、前記観測用気球における前記ガス吸入口から前記小筒の開口先端にかかる部分は上方に凸の山なり形状にしていることを特徴とする。   With the configuration described above, when the observation balloon is housed in the small cylinder from the tip opening, the portion of the observation balloon that extends from the gas suction port to the opening tip of the small cylinder has an upwardly convex mountain shape. It is characterized by that.

上記した構成で、前記トレーは複数設けられ、選択された一つのトレーが前記放球塔に向けて移動されるようにした。   With the above-described configuration, a plurality of trays are provided, and one selected tray is moved toward the launch tower.

本願発明によれば、観測用気球に水素などのガスを充填すると、正規の膨らみ方で放球塔の中心部に向けて気球全体が押し出されるように浮かび上がりながら膨らむので、膨らむ途中でねじれたり、放球塔の内周面への張り付くことがなくなり、破裂などを生じさせることなく確実に放球することができる。   According to the present invention, when the observation balloon is filled with a gas such as hydrogen, the balloon expands while being lifted up so that the entire balloon is pushed out toward the center of the discharge tower in a normal way. Thus, it is possible to reliably release the ball without causing rupture or the like without sticking to the inner peripheral surface of the ball tower.

以下本発明を図面に示す実施の形態に基づいて説明する。   Hereinafter, the present invention will be described based on embodiments shown in the drawings.

図1及び図2は、本発明の実施の形態を示す。   1 and 2 show an embodiment of the present invention.

本実施の形態は、図7に示すと同様に、通信室1、放球準備室2及び放球塔3から構成される集合型高層気象観測システムに利用されるもので、図7に示す部材と同じ部材には同じ符号を付してその説明を省略する。   As shown in FIG. 7, the present embodiment is used in a collective high-rise weather observation system including the communication room 1, the launch preparation room 2, and the launch tower 3. The members shown in FIG. The same members are denoted by the same reference numerals, and the description thereof is omitted.

図1及び図2において、本実施の形態は、ターンテーブル2aに用意されている複数(本実施の形態では24個)のトレー2bに、観測用気球11を収納する小筒12を傾斜配置している。   1 and 2, in the present embodiment, small cylinders 12 for accommodating observation balloons 11 are inclinedly arranged on a plurality (24 in the present embodiment) of trays 2b prepared on the turntable 2a. ing.

この小筒12は、ターンテーブル2の径方向に沿って配置されると共に、トレー2bの外端部に固定されているガス供給口13に対向する外方端12aが上方に向かって傾斜している。   The small cylinder 12 is arranged along the radial direction of the turntable 2, and the outer end 12a facing the gas supply port 13 fixed to the outer end of the tray 2b is inclined upward. Yes.

小筒12の外方端12aは開口し且つ拡開して観測用気球11の挿入を容易としており、観測用気球11の吸入口14がガス供給口13に連結された状態において、ガスがまだ充填されていない観測用気球11は小筒12内に先端側から挿入されている。   The outer end 12a of the small cylinder 12 is open and widened to facilitate the insertion of the observation balloon 11, and in the state where the suction port 14 of the observation balloon 11 is connected to the gas supply port 13, the gas still remains. The observation balloon 11 which is not filled is inserted into the small cylinder 12 from the tip side.

観測用気球11としては、例えばガス吸入口の長さが約10cm、気球部の長さが170cmのゴム製で、膨らむと直径180cm程度となる。また筒体12に収める気球の長さは先端から約150cmまでとし、ガス吸入口14の長さ10cmと、続く20cmの部分が筒体12から外部に露出している部分となる。   The observation balloon 11 is made of rubber, for example, having a gas inlet having a length of about 10 cm and a balloon having a length of 170 cm. The length of the balloon accommodated in the cylinder 12 is about 150 cm from the tip, and the length of the gas suction port 14 is 10 cm, and the subsequent 20 cm portion is exposed from the cylinder 12 to the outside.

また、トレー2bが放球塔3の筒体3aの所定位置まで送り込まれた状態で、小筒12の後端は筒体3a内まで入り込んでおり、放球準備室2と放球塔3との隔壁4に形成されている開口5の開閉ドアーを閉めることに小筒12は何らの影響も与えない。   In addition, the rear end of the small cylinder 12 has entered the cylindrical body 3a in a state where the tray 2b has been sent to a predetermined position of the cylindrical body 3a of the discharge tower 3, and the discharge preparation chamber 2, the discharge tower 3 and The small cylinder 12 does not have any influence on closing the opening / closing door of the opening 5 formed in the partition wall 4.

図2に示すように、傾斜している小筒12内に観測用気球11を収納した状態において、吸入口14から小筒12の開口端にかけて観測用気球11は全体的に上方に凸の山なり状になっている。この状態で吸入口14側からガス(水素ガス)を観測用気球11内に供給すると、水素ガスは吸入口14の上方の山なり部分に溜まり、そこから大きく膨らみながら上方に浮かぶという正規の膨らみ方で観測用気球11内に水素ガスが供給される。もしもこの小筒12がなければ、ガスの供給初期時において、従来のように観測用気球11は放球塔3の濡れた内面に張り付く場合があり、膨らむ途中で気球が捩れたり、想定外の方向に膨らむおそれがある。   As shown in FIG. 2, in a state in which the observation balloon 11 is housed in the inclined small cylinder 12, the observation balloon 11 is generally convex upward from the inlet 14 to the opening end of the small cylinder 12. It is in a shape. When gas (hydrogen gas) is supplied into the observation balloon 11 from the suction port 14 side in this state, the hydrogen gas accumulates in a mountainous portion above the suction port 14, and a normal bulge that floats upward while bulging from there. On the other hand, hydrogen gas is supplied into the observation balloon 11. If this small cylinder 12 is not provided, the observation balloon 11 may stick to the wet inner surface of the discharge tower 3 at the initial stage of gas supply, and the balloon may be twisted during expansion, which is not expected. There is a risk of swelling in the direction.

しかしながら、本実施の形態のように、小筒12内に観測用気球11を収めておき、この小筒11を傾斜させることにより吸入口14と小筒12の傾斜上端の開口との間に差し渡される観測用気球11の下端部を上方に凸となる山なり状態に保持させておくことにより、水素ガスの供給時に上述した正規の膨らみ方で観測用気球11が膨らむので、観測用気球11が放球塔3の内面に張り付きにくくすることができる。また、観測用気球11は放球塔3の筒体3aの中央部分に向けて押し出されるので、筒体3a内での大きな偏りが生じることなく膨らむことになる。   However, as in the present embodiment, the observation balloon 11 is housed in the small cylinder 12, and the small cylinder 11 is inclined to be inserted between the suction port 14 and the opening at the upper end of the inclination of the small cylinder 12. The observation balloon 11 is expanded in the above-described normal expansion method when the hydrogen gas is supplied by keeping the lower end portion of the observation balloon 11 that is passed upward in a convex mountain state. Can be made difficult to stick to the inner surface of the launch tower 3. Further, since the observation balloon 11 is pushed out toward the central portion of the cylindrical body 3a of the discharge tower 3, the observation balloon 11 is expanded without causing a large deviation in the cylindrical body 3a.

このため、観測用気球11の表面同士が張り付いたり、筒体3aの内面にべったりと接触することが防止でき、観測用気球11を安全に放球することが可能となる。   For this reason, the surfaces of the observation balloons 11 can be prevented from sticking to each other or coming into contact with the inner surface of the cylindrical body 3a, and the observation balloons 11 can be safely released.

このように、小筒12をトレー2bに設けるという簡単な構成で、観測用気球11に水素ガスを充填する際に、観測用気球11の外表面同士の張り付き、観測用気球11の外表面が筒体3aの内面に触れて張り付くことが防止できる。   Thus, when the observation balloon 11 is filled with hydrogen gas with a simple configuration in which the small cylinders 12 are provided on the tray 2b, the outer surfaces of the observation balloons 11 are stuck to each other, and the outer surfaces of the observation balloons 11 are It can prevent sticking to the inner surface of the cylinder 3a.

一方、このような小筒12を使用しなくても、観測用気球11が放球塔3の筒体3a内で外表面が濡れるのを防止する構成を図3に示す。また、図3に示す構成をこの小筒12と併用することにより、より一層観測用気球11の張り付きを防止することができる。   On the other hand, FIG. 3 shows a configuration in which the observation balloon 11 is prevented from getting wet in the cylinder 3 a of the discharge tower 3 without using such a small cylinder 12. Moreover, sticking of the observation balloon 11 can be further prevented by using the configuration shown in FIG.

図3に示す構成は、放球塔3の筒体3aの内周面に繊維製の網16を張り巡らす共に、筒体3aの床15にも繊維製の網17を張り巡らすものである。   In the configuration shown in FIG. 3, a fiber net 16 is stretched around the inner peripheral surface of the cylindrical body 3 a of the launch tower 3, and a fiber net 17 is stretched around the floor 15 of the cylindrical body 3 a.

また、床15に張り巡らす網17は、床15の全域に張り巡らしても良いが、筒体3a内に送り込まれているトレー2bの先端部(筒体3bの中心よりも開口5側に位置する)から開口5の間に観測用気球11が存在していることから、ガス充填開始時に観測用気球11が膨らみ始めの拡開状態如何により、観測用気球11が触れる床15の領域は、床全体のうち開口5側の約半部分と言える。このため、網17は略半円の上記した開口5側の領域に張り巡らせている。   Further, the net 17 extending around the floor 15 may extend over the entire area of the floor 15, but it is positioned on the opening 5 side of the end of the tray 2b fed into the cylinder 3a (the center of the cylinder 3b). Since the observation balloon 11 exists between the opening 5 and the opening 5, the area of the floor 15 that the observation balloon 11 touches depends on whether the observation balloon 11 starts to expand when gas filling starts. It can be said that it is about half of the entire floor on the opening 5 side. For this reason, the net 17 is stretched around a region of the above-described opening 5 side of a substantially semicircle.

さらに、筒体3aの内周面に張り巡らす網16は、筒体3aの内周面の全周、上下方向の全域に張り巡らしても良いが、筒体3a内に送り込まれているトレー2bの先端部(筒体3bの中心よりも開口5側に位置する)から開口5の間に観測用気球11が存在していることから、ガス充填開始時に観測用気球11が膨らみ始めの拡開領域は、開口5側の略半部分であることから、筒体3aの内周面のうち、開口5側の略半部分とし、また観測用気球11が大きく膨らむと、もはや張り付きの問題も無くなるので、床からせいぜい1.5m程度の高さまでとしている。なお、開口5を除いて網16は筒体3aの内周面に張り巡らされている。この網16,17は例えば穴径15mm角のナイロン製ネットを使用している。   Further, the net 16 extending around the inner peripheral surface of the cylindrical body 3a may be extended all around the inner peripheral surface of the cylindrical body 3a and the entire area in the vertical direction, but the tray 2b fed into the cylindrical body 3a. Since the observation balloon 11 exists between the tip 5 (located on the opening 5 side of the center of the cylinder 3b) and the opening 5, the observation balloon 11 expands when the gas filling starts. Since the region is a substantially half portion on the opening 5 side, it is a substantially half portion on the opening 5 side in the inner peripheral surface of the cylindrical body 3a, and when the observation balloon 11 expands greatly, there is no longer a problem of sticking. So, it is about 1.5m at most from the floor. Except for the opening 5, the net 16 is stretched around the inner peripheral surface of the cylindrical body 3a. For the nets 16 and 17, for example, a nylon net having a hole diameter of 15 mm square is used.

図3に示すように、筒体3aの内周面及び床15に網16,17を張り巡らすことにより、開閉ドーム8を開いているときに雨や雪などが筒体3a内に入り込み、筒体3aの内周面及び床15が濡れていても、これらの網16、17に遮られて観測用気球11が筒体3aの内周面及び床15に直接触れることがない。網16、17自体も濡れるが、観測用気球の外表面との接触面積が少ないので、張り付きの問題は発生しない。   As shown in FIG. 3, when the net 16, 17 is stretched around the inner peripheral surface of the cylinder 3 a and the floor 15, rain or snow enters the cylinder 3 a when the open / close dome 8 is opened, Even when the inner peripheral surface of the body 3a and the floor 15 are wet, the observation balloon 11 is not directly touched by the inner peripheral surface of the cylindrical body 3a and the floor 15 by being blocked by the nets 16 and 17. The nets 16 and 17 themselves also get wet, but the problem of sticking does not occur because the contact area with the outer surface of the observation balloon is small.

このように、床15上に網17を張り巡らせることにより、ガス充填初期時に観測用気球11が床に落ちて外表面が広範囲に亘って濡れることを防ぎ、また筒体3aの内周面に網16を張り巡らすことにより、膨らみ始めて浮かんだ観測用気球11の外表面が筒体3aの内周面に直接触れて濡らされ、観測用気球11の外表面が筒体3aの内表面に張り付くことを防ぐことができ、確実に筒体3aから観測用気球11を放球することができる。   As described above, the net 17 is stretched over the floor 15 to prevent the observation balloon 11 from falling on the floor and getting the outer surface wet over a wide range at the initial stage of gas filling, and to the inner peripheral surface of the cylinder 3a. When the net 16 is stretched around, the outer surface of the observation balloon 11 that has started to swell and is wetted by directly touching the inner peripheral surface of the cylinder 3a, and the outer surface of the observation balloon 11 sticks to the inner surface of the cylinder 3a. This can be prevented, and the observation balloon 11 can be reliably released from the cylinder 3a.

また、筒体3aの底部には、空気孔が形成され、筒体3aの上方に向けて気流の流れを作り、放球時に観測用気球11が真上に向かって放球できるようにしている。   In addition, an air hole is formed at the bottom of the cylindrical body 3a to create a flow of airflow upward of the cylindrical body 3a so that the observation balloon 11 can be released right above when it is released. .

上述した説明は、網16、17により観測用気球11の外表面が筒体3aの内周面、床15に直接触れないようにした例について述べているが、観測用気球11へのガス充填時に観測用気球11が筒体3aの内周面に接触することにより、観測用気球11のスムーズな拡開が阻害されることがある。以下にこのような現象の発生とその防止対策について説明する。   In the above description, an example in which the outer surface of the observation balloon 11 is prevented from directly touching the inner peripheral surface of the cylindrical body 3a and the floor 15 by the nets 16 and 17 is described. Occasionally, the observation balloon 11 may come into contact with the inner peripheral surface of the cylindrical body 3a, thereby preventing the observation balloon 11 from being smoothly expanded. The occurrence of such a phenomenon and countermeasures for preventing it will be described below.

開口5を通して筒体3a内に送り込まれているトレー2bは、その先端部に設けたガス供給口13から開口5の間に観測用気球11が存在していることから、観測用気球11に水素ガスを供給するに従って、ガス供給口13を中心とし先端が延びながら円弧を描くように上方に向けて移動する。その際、観測用気球11の延びる先端部は開口5の上方位置における筒体3aの内周面に接触する。   The tray 2b fed into the cylindrical body 3a through the opening 5 has an observation balloon 11 between the opening 5 and the gas supply port 13 provided at the tip thereof. As the gas is supplied, it moves upward so as to draw a circular arc with the tip extending from the gas supply port 13 as the center. At this time, the extending tip of the observation balloon 11 is in contact with the inner peripheral surface of the cylindrical body 3 a at a position above the opening 5.

観測用気球11の外表面には前述のようにパウダーがかかっているため、筒体3aの内表面と接触してもスムーズな接触が保障される。しかし、ガス充填の初期時のように、観測用気球11の先端が径方向外方に向けて延びる状態で筒体内面が濡れている場合、観測用気球11の先端部が大きな摩擦力を持って筒体3aの内周面と接触する。そして、トレー2bに対して観測用気球11がその長さ方向に沿って横たわっていることから、この大きな摩擦力を持って接触する接触部分は、開口5の左右周囲とその上方部分となる。   Since the powder is applied to the outer surface of the observation balloon 11 as described above, smooth contact is ensured even if it contacts the inner surface of the cylinder 3a. However, when the inner surface of the cylinder is wet with the tip of the observation balloon 11 extending radially outward as in the initial stage of gas filling, the tip of the observation balloon 11 has a large frictional force. In contact with the inner peripheral surface of the cylindrical body 3a. Since the observation balloon 11 lies along the length direction with respect to the tray 2b, the contact portions that come into contact with the large frictional force are the left and right periphery of the opening 5 and the upper portion thereof.

そこで、図4に示すように、開口5の左右周囲とその上方の範囲に、撥水性に優れたシート(テフロン(登録商標)製のシート)18を貼り付けている。   Therefore, as shown in FIG. 4, a sheet (a sheet made of Teflon (registered trademark)) 18 having excellent water repellency is attached to the left and right periphery of the opening 5 and the range above it.

したがって、膨らんだ観測用気球11の先端部がこの高撥水シート18に接触しても水滴が殆ど付着しておらず、しかも表面が滑らかなので気球11の拡開がスムーズに行なわれる。   Therefore, even if the tip of the bulging observation balloon 11 comes into contact with the highly water-repellent sheet 18, almost no water droplets adhere to it and the surface 11 is smooth, so that the balloon 11 can be expanded smoothly.

なお、図3に示す網16を筒体3aの内周面に張り巡らした上に、この高撥水性のシート18を貼るようにしても良い。勿論、図1、2に示す小筒12を用いた上に、この高撥水性シート18を用いれば、より一層観測用気球11の放球を確実に行なえるが、小筒12を使用しなくても、この高撥水性シート18と網16、17を筒体3aの内周面に設けるだけでも観測用気球11への水素ガスの充填時に観測用気球11を正規の膨らみ手順に則ってスムーズに膨らませる(拡開させる)ことができる。   Note that the highly water-repellent sheet 18 may be attached after the net 16 shown in FIG. 3 is stretched around the inner peripheral surface of the cylinder 3a. Of course, if the high water-repellent sheet 18 is used in addition to the small cylinder 12 shown in FIGS. 1 and 2, the observation balloon 11 can be released more reliably, but the small cylinder 12 is not used. However, even when the highly water-repellent sheet 18 and the nets 16 and 17 are provided on the inner peripheral surface of the cylindrical body 3a, the observation balloon 11 can be smoothly moved in accordance with the normal inflation procedure when the observation balloon 11 is filled with hydrogen gas. Can be inflated (expanded).

所定量のガスが観測用気球11内に充填されると、トレー2bのガス供給口13からガス吸入口14の接続が解除され、圧縮空気が上方の気球11に向けて噴出されて観測用気球11の放球が行なわれる。そして、トレー2bのガス供給口13等に対してトレー2bの下部で接続されていたガス供給ユニット(不図示)が下方に降下し、トレー2bが放球準備室2内のターンテーブル2aに戻される。   When the observation balloon 11 is filled with a predetermined amount of gas, the connection of the gas suction port 14 is released from the gas supply port 13 of the tray 2b, and the compressed air is ejected toward the upper balloon 11 to be observed. Eleven shots are performed. Then, a gas supply unit (not shown) connected to the gas supply port 13 of the tray 2b at the lower part of the tray 2b descends downward, and the tray 2b is returned to the turntable 2a in the discharge preparation chamber 2. It is.

上述のように、観測用気球11の放球の際に、筒体3aの床15には孔部(通風口)が形成され、この通風口を通して下方から筒体3a内に空気が流れ込み、上方から抜け出るという上昇気流を作り出しているが、床15を通過する際の空気の流れに乱れが生じると、筒体3a内に対流が生じたり、旋回流が生じたり、また対流と旋回流との組み合わせで複雑な流れが生じる。   As described above, when the observation balloon 11 is released, a hole (ventilation opening) is formed in the floor 15 of the cylinder 3a, and air flows into the cylinder 3a from below through the ventilation opening. However, if the air flow is disturbed when passing through the floor 15, convection will occur in the cylindrical body 3a, swirl will occur, and convection and swirl A complicated flow occurs in combination.

そこで、前記通風口に整流ボックス19を床15の外側から設け、該通風口を通過する空気の流れを下方から上方に向けて真っ直ぐな流れとしている。この整流ボックス19は上下方向に多数のハニカム構造の通風路を形成したもので、風が各通風路を通過する際に真っ直ぐな流れに整えられ、通風口を通過する際に斜めに流れたりすることがなくなり、上述の対流や旋回流などの発生が防止される。また、トレー2bのガス供給口13等と接続されるガス供給ユニットは床15よりも外側に出ているため、ここからも筒体3a内に空気が流れ込み、上述の乱流、旋回流の流れが発生することもある。このため、このガス供給ユニットを覆う外装ボックス20を床15の外面側に設けている。   Therefore, a rectifying box 19 is provided at the ventilation port from the outside of the floor 15 so that the air flow passing through the ventilation port is a straight flow from the lower side to the upper side. The rectifying box 19 is formed with a large number of honeycomb-structured ventilation paths in the vertical direction, and the wind is straightened when passing through each ventilation path and flows obliquely when passing through the ventilation openings. The above-described convection and swirling flow are prevented. Further, since the gas supply unit connected to the gas supply port 13 and the like of the tray 2b protrudes outside the floor 15, the air flows into the cylindrical body 3a also from here, and the turbulent flow and the swirl flow described above. May occur. For this reason, the exterior box 20 which covers this gas supply unit is provided on the outer surface side of the floor 15.

床15は半円板部21がヒンジ部材15aを介して床15に開閉自在に取り付けられ、この半円板部21に前記通風口が形成されると共に整流ボックス19が取り付けられている。そして一対のハンドル部材22を手で握って半円板部21の開閉操作を行なえるようにしている。図5及び図6に示すように、整流ボックス19は、床15において、放球準備室2から最も離れた位置に設けているが、これに限定されるものではなく、通風口が形成できる位置であれば制限されるものではない。   The floor 15 has a semicircular plate portion 21 attached to the floor 15 via a hinge member 15a so as to be openable and closable. The semicircular plate portion 21 is formed with the vent hole and a rectifying box 19 is attached. The pair of handle members 22 are grasped by hand so that the semi-disc portion 21 can be opened and closed. As shown in FIG.5 and FIG.6, although the rectification | straightening box 19 is provided in the position farthest from the launch preparation room 2 in the floor 15, it is not limited to this, The position which can form a vent hole If it is, it will not be restricted.

本発明の特徴的部分を示すターンテーブルの平面図。The top view of the turntable which shows the characteristic part of this invention. 図1の側面図。The side view of FIG. 放球塔内の様子を示す一部切欠斜視図。The partial notch perspective view which shows the mode in the firing tower. 放球塔内の様子を示す一部切欠斜視図。The partial notch perspective view which shows the mode in the firing tower. 放球塔の底側を外部から見た斜視図。The perspective view which looked at the bottom side of the firing tower from the outside. 図5の底面図。FIG. 6 is a bottom view of FIG. 5. 集合型高層気象観測システムの概要を示す図。The figure which shows the outline | summary of a collective type high-rise weather observation system.

符号の説明Explanation of symbols

1 通信室
2 放球準備室
2a ターンテーブル 2b トレー
3 放球塔
3a 筒体
4 隔壁
5 開口
6 レール
7 水素ガスボンベ
8 開閉ドーム
11 観測用気球
12 小筒
13 ガス供給口
14 吸入口
15 床
16、17 網
18 高撥水シート
19 整流ボックス
20 外装ボックス

DESCRIPTION OF SYMBOLS 1 Communication room 2 Launch preparation room 2a Turntable 2b Tray 3 Launch tower 3a Cylindrical body 4 Bulkhead 5 Opening 6 Rail 7 Hydrogen gas cylinder 8 Opening and closing dome 11 Observation balloon 12 Small cylinder 13 Gas supply port 14 Inlet port 15 Floor 16, 17 Net 18 Highly water-repellent sheet 19 Rectification box 20 Exterior box

Claims (3)

放球準備室から隣室の放球塔に向けて水平移動可能で、移動方向先端側にガス供給口を設けたトレーと、前記ガス供給口に脱着可能にガス吸入口が連結され、該トレーの移動方向後端側に向けて配置されたガス充填前の観測用気球と、前記トレーが前記放球塔内に供給されると前記ガス供給口から前記ガス吸入口を介して前記観測用気球内にガスを充填するガス供給手段とを有し、前記観測用気球に所定量のガスが充填されると前記ガス供給口から前記ガス吸入口の連結を解除して放球を行なう放球装置において、
前記トレーには、前記トレーの移動方向に沿って前記ガス充填前の観測用気球が収納される小筒が配置されており、該小筒は先端開口が前記ガス供給口と対向し、且つ該先端開口が上方に傾斜していることを特徴とする放球装置。
A tray that can be moved horizontally from the launch preparation room toward the launch tower in the adjacent room and has a gas supply port at the front end in the moving direction is connected to a gas suction port detachably attached to the gas supply port. An observation balloon before gas filling arranged toward the rear end side in the movement direction, and the inside of the observation balloon from the gas supply port through the gas inlet when the tray is supplied into the discharge tower And a gas supply means for filling the gas with a gas supply means, and when the observation balloon is filled with a predetermined amount of gas, the connection from the gas inlet to the gas supply port is released to release the gas ,
The tray is provided with a small cylinder that accommodates the observation balloon before gas filling along the moving direction of the tray, and the small cylinder has a tip opening facing the gas supply port, and A ball release apparatus characterized in that a tip opening is inclined upward.
前記小筒に先端開口より前記観測用気球が収納された状態において、前記観測用気球における前記ガス吸入口から前記小筒の開口先端にかかる部分は上方に凸の山なり形状としたことを特徴とする請求項1に記載の放球装置。   In the state where the observation balloon is accommodated in the small cylinder from the front end opening, a portion of the observation balloon from the gas inlet to the front end of the small cylinder has an upward convex mountain shape. The launching device according to claim 1. 前記トレーは複数設けられ、選択された一つのトレーが前記放球塔に向けて移動されることを特徴とする請求項1または2に記載の放球装置。
The launching device according to claim 1 or 2, wherein a plurality of the trays are provided, and one selected tray is moved toward the launch tower.
JP2004221146A 2004-07-29 2004-07-29 Launching device Expired - Fee Related JP3843436B2 (en)

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Cited By (6)

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WO2010000942A1 (en) * 2008-07-02 2010-01-07 Vaisala Oyj Automatic balloon launcher and method for the automatic launch of meteorological balloons
CN104597525A (en) * 2015-03-13 2015-05-06 南京大桥机器有限公司 Automatic balloon releasing system for ground 8-level wind
CN105487138A (en) * 2015-12-28 2016-04-13 上海昊葛金自动化科技有限公司 Automatic balloon releasing system
WO2017125963A1 (en) * 2016-01-19 2017-07-27 明星電気株式会社 Balloon release device
WO2017125962A1 (en) 2016-01-19 2017-07-27 明星電気株式会社 Canister and canister module
CN115155089A (en) * 2022-06-23 2022-10-11 泰兴金江化学工业有限公司 Pressure balancing device for ethyl acetate rectifying tower

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010000942A1 (en) * 2008-07-02 2010-01-07 Vaisala Oyj Automatic balloon launcher and method for the automatic launch of meteorological balloons
CN104597525A (en) * 2015-03-13 2015-05-06 南京大桥机器有限公司 Automatic balloon releasing system for ground 8-level wind
CN105487138A (en) * 2015-12-28 2016-04-13 上海昊葛金自动化科技有限公司 Automatic balloon releasing system
WO2017125963A1 (en) * 2016-01-19 2017-07-27 明星電気株式会社 Balloon release device
WO2017125962A1 (en) 2016-01-19 2017-07-27 明星電気株式会社 Canister and canister module
JPWO2017125963A1 (en) * 2016-01-19 2018-01-25 明星電気株式会社 Launching device
US10132960B2 (en) 2016-01-19 2018-11-20 Meisei Electric Co., Ltd. Balloonsonde canister and balloonsonde canister module
US10495784B2 (en) 2016-01-19 2019-12-03 Meisei Electric Co., Ltd. Balloon-launching apparatus
CN115155089A (en) * 2022-06-23 2022-10-11 泰兴金江化学工业有限公司 Pressure balancing device for ethyl acetate rectifying tower
CN115155089B (en) * 2022-06-23 2024-01-05 泰兴金江化学工业有限公司 Pressure balancing device for ethyl acetate rectifying tower

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