JP4964703B2 - Earthquake information transmission method and system - Google Patents

Earthquake information transmission method and system Download PDF

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JP4964703B2
JP4964703B2 JP2007202736A JP2007202736A JP4964703B2 JP 4964703 B2 JP4964703 B2 JP 4964703B2 JP 2007202736 A JP2007202736 A JP 2007202736A JP 2007202736 A JP2007202736 A JP 2007202736A JP 4964703 B2 JP4964703 B2 JP 4964703B2
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治 金子
裕之 池端
康樹 佐藤
泰樹 香月
武士 大野
俊司 佐藤
誠一 稲村
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Toda Corp
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Description

本発明は、例えば、緊急地震速報に基づいて、所定の建物や作業所にいち早く地震の来ることを連絡して、地震被害を最小にしようとする地震情報の伝達方法とそのシステムに関するものである。   The present invention relates to a method and a system for transmitting earthquake information to minimize earthquake damage by, for example, notifying an early earthquake to a predetermined building or work place based on an earthquake early warning, for example. .

従来、地震に対して、小地域などの限定された地域の地震被害や影響を、その地域に設置された観測手段の観測情報から短時間で地震被害を推定できる地震被害予測システムの被害推定方法が知られている(特許文献1参照)。
特開2003−161783号公報
Conventionally, the damage estimation method of earthquake damage prediction system that can estimate earthquake damage and impact of limited areas such as small areas in a short time from the observation information of observation means installed in that area. Is known (see Patent Document 1).
JP 2003-161783 A

しかし、従来の予測システムでは、観測された地震データを建物の被害推定をするものであり、未然に地震による被害を防ごうとするものではない。また、従来の緊急地震速報は、対象となる建物に、警報受信及び地震情報解析の為の端末装置,パーソナルコンピュータ等を装備し、それぞれの建物位置情報、地盤増幅度のデータを入力しておくのが一般的である。その端末装置,コンピュータ等に気象庁から配信される、日本全国の発生地震の配信を受け、各個別に、地震と対象建物との距離,地盤増幅特性から、予測到達余裕時間および予測震度をすべて計算し、影響の有りそうな地震のみについて警報を発している。   However, the conventional prediction system estimates the damage of the building based on the observed earthquake data, and does not attempt to prevent damage caused by the earthquake. In addition, the conventional earthquake early warning is equipped with a terminal device, personal computer, etc. for alarm reception and earthquake information analysis in the target building, and each building location information and ground amplification data are input. It is common. Receiving earthquakes from all over Japan distributed from the Japan Meteorological Agency to the terminal device, computer, etc., and calculating each predicted arrival time and predicted seismic intensity individually from the distance between the earthquake and the target building and the ground amplification characteristics. However, it only warns about earthquakes that are likely to be affected.

しかしながら、対象となる建物の端末装置,パーソナルコンピュータ等ごとに、解析プログラムおよびメンテナンスが必要であり、特に設置期間の限られている工事現場での建設作業所用の設備としては合理的ではない。また、施工済み物件については、地震情報は地震が発生した後に手動で入力して、被害の予測される物件をピックアップしているので、対応時の迅速性に欠ける。本発明に係る地震情報の伝達方法とシステムは、このような課題を解決するために提案されたものである。   However, each terminal device, personal computer, etc. in the target building requires an analysis program and maintenance, and is not reasonable as a facility for a construction site, particularly at a construction site where the installation period is limited. In addition, as for the already completed property, the earthquake information is manually input after the earthquake occurs, and the property that is predicted to be damaged is picked up. The earthquake information transmission method and system according to the present invention have been proposed in order to solve such problems.

気象庁からの緊急地震速報のデータを配信する配信手段に接続されるとともに所定のネットワークに接続された現場地震速報サーバーと、前記現場地震速報サーバーに電気的に接続されると共に地震情報を伝えたい複数の所定の場所の位置データと当該所定の場所における地盤増幅のデータとを入力装置で予め入力されて記憶する記憶装置と、前記所定のネットワークを介して前記地震情報を伝えたい所定の場所にて前記現場地震速報サーバーからの送信された警報信号を受信するとともに警報を発する警報用表示端末機と、前記現場地震速報サーバーの中央演算処理装置に記憶されるプログラムで、前記緊急地震速報のデータが配信されて受信されると、前記記憶装置から前記所定の場所の位置データと当該所定の場所における地盤増幅のデータを中央演算装置に取り込み、前記配信されたデータを基にして予測震度と予測到達余裕時間とを前記各所定の場所毎に所定の計算式で計算するとともに、前記計算された予測震度が閾値を越えた所定の場所に対して警報信号を前記現場地震速報サーバーから前記所定のネットワークに送信させる地震警報プログラムとからなり、
前記所定の場所において建物が完成した後には、前記警報用表示端末機が前記所定の場所から撤去されると共に、その所定の場所の位置データと前記建物情報を加味した地盤増幅のデータとが更新されて前記記憶装置に記憶され、
前記現場地震速報サーバーに接続され緊急地震速報による施工済みの建物に係る予測震度と予測被害とのデータを受信するとともに緊急対策が必要な建物に警報を発する施工物件管理用サーバーと、
前記施工物件管理用サーバーに接続される管理人室の端末及びインターホン制御装置と、
前記インターホン制御装置に接続される前記建物内全住戸の警告用インターホンとが設けられることである。
A local earthquake early warning server connected to a distribution means for delivering emergency earthquake early warning data from the Japan Meteorological Agency and connected to a predetermined network, and a plurality of electrical earthquakes connected to the local earthquake early warning server and transmitting earthquake information At a predetermined location where it is desired to transmit the earthquake information via the predetermined network An alarm display terminal that receives an alarm signal transmitted from the local earthquake early warning server and issues an alarm, and a program stored in a central processing unit of the local earthquake early warning server, the emergency earthquake early warning data is When distributed and received, the position data of the predetermined location and the ground amplification at the predetermined location are stored from the storage device. And calculating a predicted seismic intensity and a predicted arrival time based on the distributed data with a predetermined calculation formula for each predetermined location, and the calculated predicted seismic intensity An earthquake warning program for sending an alarm signal from the on-site earthquake early warning server to the predetermined network for a predetermined location exceeding a threshold;
After the building is completed at the predetermined location, the alarm display terminal is removed from the predetermined location, and the location data of the predetermined location and the ground amplification data considering the building information are updated. And stored in the storage device,
A construction property management server that is connected to the site earthquake early warning server and receives data of predicted seismic intensity and predicted damage related to a building that has been constructed by emergency earthquake early warning and issues an alarm to a building that requires emergency measures;
A management room terminal and an intercom control device connected to the construction property management server;
A warning intercom for all the dwelling units in the building connected to the intercom control device is provided.

気象庁からの緊急地震速報のデータを配信する配信手段に接続されるとともに所定のネットワークに接続された現場地震速報サーバーと、前記現場地震速報サーバーに電気的に接続されると共に地震情報を伝えたい複数の所定の場所の位置データと当該所定の場所における地盤増幅のデータとを入力装置で予め入力されて記憶する記憶装置と、前記所定のネットワークを介して前記地震情報を伝えたい所定の場所にて前記現場地震速報サーバーからの送信された警報信号を受信するとともに警報を発する警報用表示端末機と、前記所定の場所において建物が完成した後には、前記警報用表示端末機が前記所定の場所から撤去されると共に、その所定の場所の位置データと前記建物情報を加味した地盤増幅のデータとが更新されて前記記憶装置に記憶され、前記現場地震速報サーバーに接続され緊急地震速報による施工済みの建物に係る予測震度と予測被害とのデータを受信するとともに緊急対策が必要な建物に警報を発する施工物件管理用サーバーと、前記施工物件管理用サーバーに接続される管理人室の端末及びインターホン制御装置と、前記インターホン制御装置に接続される前記建物内全住戸の警告用インターホンとを備え、
地震時の際に、前記配信された緊急地震速報のデータにより、前記各所定の場所毎に地震が届く迄の時間と震度とを前記現場地震速報サーバーのプログラムで計測し、
その後、そのプログラムによって前記予測震度を計測した中で閾値の震度を超える所定の場所に対して、前記所定のネットワークを介して前記所定の場所に備えられた施工物件管理用サーバーを介して前記インターホンから全住戸に警報を発するようにしたことである。
A local earthquake early warning server connected to a distribution means for delivering emergency earthquake early warning data from the Japan Meteorological Agency and connected to a predetermined network, and a plurality of electrical earthquakes connected to the local earthquake early warning server and transmitting earthquake information At a predetermined location where it is desired to transmit the earthquake information via the predetermined network The alarm display terminal that receives the alarm signal transmitted from the site earthquake early warning server and issues an alarm; and after the building is completed at the predetermined location, the alarm display terminal is moved from the predetermined location. The storage device is updated with the position data of the predetermined place and the ground amplification data taking the building information into account while being removed. A server for construction property management that is stored and connected to the on-site earthquake early warning server, receives data of predicted seismic intensity and predicted damage related to a building that has been constructed by emergency earthquake early warning, and issues an alarm to a building that requires emergency measures; A management room terminal connected to the construction property management server and an intercom control device, and a warning intercom for all dwelling units in the building connected to the intercom control device,
In the event of an earthquake, based on the distributed earthquake early warning data, measure the time and seismic intensity until the earthquake arrives for each of the predetermined locations with the program of the local earthquake early warning server,
After that, the intercom via the construction property management server provided at the predetermined location via the predetermined network for a predetermined location exceeding the threshold seismic intensity among the predicted seismic intensity measured by the program This is to issue an alarm to all dwelling units.

本発明の地震情報の伝達方法とシステムとによれば、地震が発生したときに、気象庁の緊急地震速報により、現場地震速報サーバーで、各事業所、作業所、建築物などへの、地震の予測到達余裕時間と予測震度を一括して瞬時に計算し、そのうち、予測震度が例えば、4以上の作業所等にネットワームを介して送信し、前記作業所等の警報用表示端末機から警報を発するので、予め地震が来ることが判るので、作業員等が落ち着いて対応することができるようになる。その結果、地震による物理的な被害を極力小さくすることができるとともに、作業員等の安全をいち早く確保することができる。例えば、足場から建物に移る、脚立から降りる、クレーンを止める、電動工具を止める、火気作業をやめる、荷物を降ろす、等の安全処置を採ることができる。   According to the method and system for transmitting earthquake information according to the present invention, when an earthquake occurs, an earthquake early warning server of the Meteorological Agency uses the earthquake early warning server to report the earthquake to each office, work place, building, etc. Predicted allowance time and predicted seismic intensity are calculated instantaneously in a lump sum, of which the predicted seismic intensity is transmitted to a work place with 4 or more, for example, via a network, and an alarm is displayed from the alarm display terminal at the work place. Since it is known that an earthquake will occur in advance, workers and the like can calmly respond. As a result, physical damage due to the earthquake can be minimized, and the safety of workers and the like can be ensured quickly. For example, it is possible to take safety measures such as moving from a scaffold to a building, getting off a stepladder, stopping a crane, stopping a power tool, stopping a fire work, or unloading a load.

また、専用サーバーで作業所等の位置データ等を一元管理するので、作業所の開閉や移動に迅速に対応することができる。前記警報用表示端末機は、配線と電源だけ確保して動作させることができ、手間の掛かる設定が全くないので専門的操作が不要で取り扱いが容易である。前記警報用表示端末機の稼働状況は、ネットワークを介して双方向にて監視することができるので、例えば、ある作業所の警報用表示端末機が故障等している場合には、専用サーバーによって注意が喚起されて、本社から該当する作業所等へ直すように連絡することができて、警報漏れを防止できる。   In addition, since the position data of the work place and the like are centrally managed by the dedicated server, it is possible to respond quickly to opening and closing and movement of the work place. The alarm display terminal can be operated with only a wiring and a power source, and since there is no troublesome setting, no special operation is required and the handling is easy. The operating status of the alarm display terminal can be monitored in both directions via the network. For example, when the alarm display terminal at a certain work place is out of order, Attention is alerted, and it is possible to contact the headquarters to correct the situation, and prevent alarm leaks.

また、施工後の建物に対しても、管理用のサーバーを前記現場地震速報サーバーに接続して引き続き管理するようにする。これにより、地震発生による前記施工済み建物の予測震度と予測被害とが知られ、緊急対応が必要な物件を表示させて、迅速に、地震被害に対する対応策を立てることができる。   In addition, a management server is connected to the on-site earthquake early warning server to continuously manage buildings after construction. As a result, the predicted seismic intensity and predicted damage of the constructed building due to the occurrence of an earthquake are known, and it is possible to quickly display countermeasures against earthquake damage by displaying properties that require emergency response.

本発明に係る地震情報の伝達システム1は、図1乃至図2に示すように、気象庁2からの緊急地震速報のデータを配信する配信手段である配信業者(例えば、(財)気象業務支援センター)3のサーバーに専用線4で接続されるとともに所定のネットワーク5に接続された現場地震速報サーバー6がある。   As shown in FIGS. 1 and 2, the earthquake information transmission system 1 according to the present invention is a distributor (for example, a meteorological service support center) serving as a distribution means for distributing emergency earthquake warning data from the Meteorological Agency 2. ) There is a site earthquake early warning server 6 connected to the server 3 by the dedicated line 4 and connected to a predetermined network 5.

前記緊急地震速報とは、気象庁2が提供する地震データである。この地震データが、具体的には、配信業者3である気象事業支援センターのサーバーから専用線4にて配信される。   The earthquake early warning is earthquake data provided by the Meteorological Agency 2. Specifically, this earthquake data is distributed on a dedicated line 4 from a server of a weather business support center which is a distributor 3.

前記現場地震速報サーバー6に電気的に接続されると共に地震情報を伝えたい複数の所定の場所8の位置データと、当該所定の場所8における地盤増幅のデータとを入力装置で予め入力されて記憶する記憶装置7がある。この記憶装置7は、前記現場地震速報サーバー6の一部に組み込まれている。   The position data of a plurality of predetermined locations 8 that are electrically connected to the site earthquake early warning server 6 and to transmit earthquake information and the ground amplification data at the predetermined locations 8 are previously input and stored by an input device. There is a storage device 7 to perform. This storage device 7 is incorporated in a part of the site earthquake early warning server 6.

前記所定の場所8とは、例えば、本社、支店、工作所、営業所、全国に散らばる現場の作業所等である。また、前記位置データは、作業所のIPアドレスと経度、緯度に関するデータであり、地盤増幅のデータとは、作業所等が存在する場所の、地層の特性により定めた地震増幅係数のデータである。   The predetermined place 8 is, for example, a head office, a branch office, a work place, a sales office, a work place in the field scattered throughout the country, or the like. The position data is data relating to the IP address, longitude, and latitude of the work place, and the ground amplification data is data of an earthquake amplification coefficient determined by the characteristics of the stratum at the place where the work place exists. .

前記所定のネットワーク5、例えば、社内ネットワーク若しくはインターネットVPN(Virtual Private Network)を介して前記地震情報を伝えたい所定の場所8にて、前記現場地震速報サーバー6からの送信された警報信号を受信するとともに警報を発する警報用表示端末機9(9a,…)がある。   An alarm signal transmitted from the earthquake early warning server 6 is received at a predetermined location 8 where the earthquake information is to be transmitted via the predetermined network 5, for example, an in-house network or the Internet VPN (Virtual Private Network). In addition, there is an alarm display terminal 9 (9a,...) That issues an alarm.

この端末機9には、特にプログラムなどはインストールされているわけではなく、前記現場地震速報サーバー6と社内ネットワークやインターネットで双方向で繋がっていて、常に電源が入っていて、警報信号を受信することで、警報を発するものである。当該端末機9は、電源及びLAN回線の接続を行い電源投入後、本体通信確認のテストを行い確認することで端末装置が設置されたことを検知する機能がサーバーに搭載されている。この操作により端末機9は、システムに接続され稼働開始となる。前記警報用表示端末機9による警報には、公知の手段であって、例えば、光によるライトの点滅、音声による警告、LEDなどによる文字情報の表示などがある。   This terminal 9 is not particularly installed with a program, and is connected to the local earthquake early warning server 6 in two ways via an in-house network or the Internet, is always turned on, and receives an alarm signal. In this way, a warning is issued. The terminal 9 has a function of detecting that the terminal device is installed by connecting a power source and a LAN line, turning on the power, and performing a confirmation test of the main body communication to confirm that the terminal device has been installed. By this operation, the terminal 9 is connected to the system and starts to operate. The alarm by the alarm display terminal 9 is a known means, for example, blinking of light by light, warning by sound, display of character information by LED or the like.

更に、前記現場地震速報サーバー6の中央演算処理装置に記憶されるプログラムで、前記緊急地震速報のデータが配信されて受信されると、前記記憶装置7から前記所定の場所8の位置データと当該所定の場所8における地盤増幅のデータを中央演算装置に取り込み、前記配信されたデータを基にして予測震度と予測到達余裕時間とを前記各所定の場所8毎に所定の計算式で計算するとともに、前記計算された予測震度が閾値を越えた所定の場所8に対して警報信号を、前記現場地震速報サーバー6から前記所定のネットワーク5に送信させる地震警報プログラム(図示せず)がある。   Further, when the data of the earthquake early warning is distributed and received by the program stored in the central processing unit of the site earthquake early warning server 6, the position data of the predetermined location 8 and the relevant data are received from the storage device 7. The ground amplification data at the predetermined place 8 is taken into the central processing unit, and the predicted seismic intensity and the predicted arrival time are calculated by the predetermined calculation formula for each predetermined place 8 based on the distributed data. There is an earthquake alarm program (not shown) for transmitting an alarm signal from the local earthquake early warning server 6 to the predetermined network 5 for a predetermined location 8 where the calculated predicted seismic intensity exceeds a threshold value.

以上のような構成から成る地震情報の伝達システム1によって、実際に地震が発生すると、前記気象庁2から配信された緊急地震速報のデータにより、前記各所定の場所8毎に地震が届く迄の時間と震度とを前記現場地震速報サーバー6の前記地震警報プログラムで計測する。   When an earthquake occurs by the earthquake information transmission system 1 having the above-described configuration, the time required for an earthquake to arrive at each of the predetermined locations 8 based on the emergency earthquake warning data distributed from the Meteorological Agency 2 And the seismic intensity are measured by the earthquake warning program of the site earthquake early warning server 6.

その後、前記地震警報プログラムによって前記予測震度を計測した中で、閾値、例えば、予測震度が4若しくは5、の震度を超える所定の場所8に対して、前記所定のネットワーク5を介して前記所定の場所8に備えられた警報用表示端末機9に警報信号が送信される。該警報用表示端末機9から警報機によって警報を発する。   Thereafter, in the measurement of the predicted seismic intensity by the earthquake warning program, for the predetermined location 8 where the predicted seismic intensity exceeds the seismic intensity of 4 or 5, the predetermined seismic intensity via the predetermined network 5 An alarm signal is transmitted to the alarm display terminal 9 provided at the place 8. An alarm is issued from the alarm display terminal 9 by an alarm.

このような伝達システム1により、例えば、発生した地震のS波の地震が届くまでに10秒程度の余裕があれば、作業所に置いて、作業員の安全性を確保できるものであり、更に、物理的な被害を最小に食い止めることができるものである。   With such a transmission system 1, for example, if there is a margin of about 10 seconds before the arrival of the S-wave earthquake of the earthquake that has occurred, it can be placed at the work place to ensure the safety of the worker. , Which can stop physical damage to a minimum.

また、この地震情報の伝達システム1において、前記所定の場所8が建物の完成によって、他の場所に移動したのであれば、移動後の位置情報のデータを前記記憶装置7に入力装置からデータを入力して更新するものである。   Further, in this earthquake information transmission system 1, if the predetermined location 8 has moved to another location upon completion of the building, the location information data after the movement is transferred from the input device to the storage device 7. It is input and updated.

更に、図1と図3に示すように、所定の場所8において建物10が完成した後には、警報用表示端末機9が前記所定の場所8から撤去されると共に、その所定の場所8の位置データと前記建物情報を加味した地盤増幅のデータとが別途設けられた施工物件管理用サーバー11に記憶され、前記現場地震速報サーバー6に接続され緊急地震速報による施工済みの建物10に係る予測震度と予測被害とのデータを受信する。   Further, as shown in FIGS. 1 and 3, after the building 10 is completed at the predetermined location 8, the alarm display terminal 9 is removed from the predetermined location 8 and the position of the predetermined location 8. Data and ground amplification data taking into account the building information are stored separately in the construction property management server 11 and connected to the site earthquake early warning server 6 to predict the predicted seismic intensity related to the building 10 already constructed by the emergency earthquake early warning And receive data with predicted damage.

前記建物10は、例えば、中高層マンション、病院、学校、生産施設などである。そして、地震があった場合に、前記現場地震速報サーバー6と地震警報プログラムとから、前記建物10の構造特性による補正などを施した予測震度と予測被害のデータを施工物件管理用サーバー11が受信した後、この施工物件管理用サーバー11により前記地震警報プログラムによりピックアップされた緊急対策が必要な建物を、モニター等の表示手段に表示し、印刷装置により印字などするものである。   The building 10 is, for example, a medium to high-rise apartment, a hospital, a school, a production facility, or the like. When there is an earthquake, the construction property management server 11 receives the predicted seismic intensity and the predicted damage data corrected by the structural characteristics of the building 10 from the site earthquake early warning server 6 and the earthquake warning program. After that, the construction property management server 11 displays the building that is picked up by the earthquake warning program and needs emergency measures on a display means such as a monitor, and prints it by a printing device.

このような伝達方法により、施工済みの建物10に係る予測震度と予測被害とのデータによって、例えば、図3に示すように、前記施工物件管理用サーバー11からネットーワーク(インターネットVPN等)を介して管理人室10aの端末機10bに大きな被害が予測されることを知らせ、インターホン制御装置10cに接続され、マンションの高層の全住戸にインターホン等で警告するものである。   By such a transmission method, the data of the predicted seismic intensity and the predicted damage relating to the building 10 that has been constructed, for example, as shown in FIG. The terminal 10b of the manager room 10a is informed that a large damage is predicted, is connected to the intercom control device 10c, and warns all the high-rise dwelling units of the apartment with an intercom or the like.

本発明に係る地震情報の伝達システム1の概略構成図である。1 is a schematic configuration diagram of an earthquake information transmission system 1 according to the present invention. 同本発明の地震情報の伝達システム1の使用状態の説明図である。It is explanatory drawing of the use condition of the transmission system 1 of the earthquake information of the same invention. 同建物10に対する地震情報の伝達方法を示す説明図である。4 is an explanatory diagram showing a method of transmitting earthquake information to the building 10. FIG.

符号の説明Explanation of symbols

1 地震情報の伝達システム、
2 気象庁、
3 配信業者、
4 専用線、
5 ネットワーク、
6 現場地震速報サーバー、
7 記憶装置、
8 所定の場所、
9 警報用表示端末機、
10 建物、 10a 管理人室、
10b 端末機、 10c インターホン制御装置、
11 施工物件管理用サーバー。
1 Earthquake information transmission system,
2 Japan Meteorological Agency,
3 distributors,
4 Dedicated line,
5 network,
6 Earthquake Early Warning Server,
7 storage device,
8 Predetermined place,
9 Alarm display terminal,
10 building, 10a management room,
10b terminal, 10c intercom control device,
11 Server for construction property management.

Claims (2)

気象庁からの緊急地震速報のデータを配信する配信手段に接続されるとともに所定のネットワークに接続された現場地震速報サーバーと、
前記現場地震速報サーバーに電気的に接続されると共に地震情報を伝えたい複数の所定の場所の位置データと当該所定の場所における地盤増幅のデータとを入力装置で予め入力されて記憶する記憶装置と、
前記所定のネットワークを介して前記地震情報を伝えたい所定の場所にて前記現場地震速報サーバーからの送信された警報信号を受信するとともに警報を発する警報用表示端末機と、
前記現場地震速報サーバーの中央演算処理装置に記憶されるプログラムで、前記緊急地震速報のデータが配信されて受信されると、前記記憶装置から前記所定の場所の位置データと当該所定の場所における地盤増幅のデータを中央演算装置に取り込み、前記配信されたデータを基にして予測震度と予測到達余裕時間とを前記各所定の場所毎に所定の計算式で計算するとともに、前記計算された予測震度が閾値を越えた所定の場所に対して警報信号を前記現場地震速報サーバーから前記所定のネットワークに送信させる地震警報プログラムとからなり、
前記所定の場所において建物が完成した後には、前記警報用表示端末機が前記所定の場所から撤去されると共に、その所定の場所の位置データと前記建物情報を加味した地盤増幅のデータとが更新されて前記記憶装置に記憶され、
前記現場地震速報サーバーに接続され緊急地震速報による施工済みの建物に係る予測震度と予測被害とのデータを受信するとともに緊急対策が必要な建物に警報を発する施工物件管理用サーバーと、
前記施工物件管理用サーバーに接続される管理人室の端末及びインターホン制御装置と、
前記インターホン制御装置に接続される前記建物内全住戸の警告用インターホンとが設けられること、
を特徴とする地震情報の伝達システム。
An on-site earthquake early warning server connected to a distribution means for delivering emergency earthquake early warning data from the Japan Meteorological Agency and connected to a predetermined network;
A storage device that is electrically connected to the site earthquake early warning server and stores the position data of a plurality of predetermined locations where the earthquake information is to be transmitted and the ground amplification data at the predetermined locations by being input in advance by an input device ,
An alarm display terminal for receiving an alarm signal transmitted from the local earthquake early warning server and issuing an alarm at a predetermined location where the earthquake information is to be transmitted via the predetermined network;
When the emergency earthquake bulletin data is distributed and received by the program stored in the central processing unit of the site earthquake early warning server, the location data of the predetermined location and the ground at the predetermined location from the storage device Amplifying data is taken into a central processing unit, and based on the distributed data, a predicted seismic intensity and a predicted arrival time are calculated by a predetermined calculation formula for each predetermined location, and the calculated predicted seismic intensity Comprising an earthquake warning program for transmitting an alarm signal from the on-site earthquake early warning server to the predetermined network for a predetermined location where the threshold value exceeds the threshold,
After the building is completed at the predetermined location, the alarm display terminal is removed from the predetermined location, and the location data of the predetermined location and the ground amplification data considering the building information are updated. And stored in the storage device,
A server for construction property management that is connected to the earthquake early warning server and receives data on predicted seismic intensity and predicted damage relating to a building that has been constructed by emergency earthquake early warning and issues an alarm to a building that requires emergency measures;
A management room terminal and an intercom control device connected to the construction property management server;
A warning intercom for all the dwelling units in the building connected to the intercom control device is provided;
An earthquake information transmission system characterized by
気象庁からの緊急地震速報のデータを配信する配信手段に接続されるとともに所定のネットワークに接続された現場地震速報サーバーと、前記現場地震速報サーバーに電気的に接続されると共に地震情報を伝えたい複数の所定の場所の位置データと当該所定の場所における地盤増幅のデータとを入力装置で予め入力されて記憶する記憶装置と、前記所定のネットワークを介して前記地震情報を伝えたい所定の場所にて前記現場地震速報サーバーからの送信された警報信号を受信するとともに警報を発する警報用表示端末機と、前記所定の場所において建物が完成した後には、前記警報用表示端末機が前記所定の場所から撤去されると共に、その所定の場所の位置データと前記建物情報を加味した地盤増幅のデータとが更新されて前記記憶装置に記憶され、前記現場地震速報サーバーに接続され緊急地震速報による施工済みの建物に係る予測震度と予測被害とのデータを受信するとともに緊急対策が必要な建物に警報を発する施工物件管理用サーバーと、前記施工物件管理用サーバーに接続される管理人室の端末及びインターホン制御装置と、前記インターホン制御装置に接続される前記建物内全住戸の警告用インターホンとを備え、
地震時の際に、前記配信された緊急地震速報のデータにより、前記各所定の場所毎に地震が届く迄の時間と震度とを前記現場地震速報サーバーのプログラムで計測し、
その後、そのプログラムによって前記予測震度を計測した中で閾値の震度を超える所定の場所に対して、前記所定のネットワークを介して前記所定の場所に備えられた施工物件管理用サーバーを介して前記インターホンから全住戸に警報を発するようにしたこと、
を特徴とする地震情報の伝達方法。
A local earthquake early warning server connected to a distribution means for delivering emergency earthquake early warning data from the Japan Meteorological Agency and connected to a predetermined network, and a plurality of electrical earthquakes connected to the local earthquake early warning server and transmitting earthquake information At a predetermined location where it is desired to transmit the earthquake information via the predetermined network The alarm display terminal that receives the alarm signal transmitted from the site earthquake early warning server and issues an alarm; and after the building is completed at the predetermined location, the alarm display terminal is moved from the predetermined location. The storage device is updated with the position data of the predetermined place and the ground amplification data taking the building information into account while being removed. A server for construction property management that is stored and connected to the on-site earthquake early warning server, receives data of predicted seismic intensity and predicted damage related to a building that has been constructed by emergency earthquake early warning, and issues an alarm to a building that requires emergency measures; A management room terminal connected to the construction property management server and an intercom control device, and a warning intercom for all dwelling units in the building connected to the intercom control device,
In the event of an earthquake, based on the distributed earthquake early warning data, measure the time and seismic intensity until the earthquake arrives for each of the predetermined locations with the program of the local earthquake early warning server,
After that, the intercom via the construction property management server provided at the predetermined location via the predetermined network for a predetermined location exceeding the threshold seismic intensity among the predicted seismic intensity measured by the program Has issued an alarm to all dwelling units,
An earthquake information transmission method characterized by
JP2007202736A 2007-08-03 2007-08-03 Earthquake information transmission method and system Expired - Fee Related JP4964703B2 (en)

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