環境資源報告成果查詢系統

毒性化學物質應變車輛管理系統建置及毒災資訊維運計畫

中文摘要 於強化毒災防救管理資訊系統資訊安全與系統功能方面,執行115項微軟更新、10項系統功能服務與確認、15筆人員權限異動、12次資安檢查與10次系統維護以及更新10次應變人員資料等系統資訊安全工作,41件出勤事故輔助成果及系統滿意度資料調查工作,環保領域人員使用率為9成以上,其使用滿意度達91.0%以上。系統強化工作方面則建置初期管制區建議以及匯入潛勢風險區域之擴散模擬分析結果,並提供即時、預測即使用者自訂等三項功能;完成學習護照、毒災事故應變車輛管理子系統網頁功能設計、建置完成毒災事故應變車輛管理系統與行動裝置APP的開發與測試工作,提供車輛資訊輸入、上傳、資料查詢、QRCode輸出、回傳出勤軌跡以及現場照片等功能。 於建置高風險場所資訊系統,強化應變經驗傳承與事故分析方面,開發「高風險運作場所資訊行動傳輸系統」,並完成行動裝置交接狀況追蹤,設備妥善率為100%;依據毒化物種類、存量、位置完成風險區域統計分析功能;強化應變經驗傳承部分,則延續103年建置應變經驗模組資料,已擴充55起事故應變經驗模組,整體資料庫已擴充至233組。 於推動全國性毒性化學物質聯防組織系統方面,執行國防部、跨區域運作聯防組織業者端與管理端之線上申請、變更以及審核系統等功能,包括申請流程、、變更、引用、瀏覽、刪除等。於建置新版全國毒災聯防系統方面,完成聯防組織首頁版面、資材調度功能、聯防媒合平台功能以及聯防組織架構等功能,並持續維持103年建置之簽核系統,包含業者線上填寫資料、提出申請。環保局審查以及瀏覽等相關功能。 於提升系統應用經驗方面完成持續維護訓練平台功能運作,並製作18種不同類型之事故情境操作手冊,現階段整體訓練平台使用率為100%;於新北市、新竹市、臺中市、彰化市、基隆市、新竹縣、苗栗縣、花蓮縣、嘉義縣、屏東縣、臺南市及桃園市等12縣市辦理沙盤推演與系統結合之實機操作工作,共342人次參與;共辦理5場次「毒災防救管理資訊系統」說明會,計有88人次參與;訂定4種量化系統績效指標之評估效益內容,並完成毒災系統預防、整備、應變以及復原等四項指標項目與其量化數據。
中文關鍵字 毒災應變、應變車輛、毒災聯防

基本資訊

專案計畫編號 EPA-104-J104-03-101 經費年度 104 計畫經費 4960 千元
專案開始日期 2015/05/19 專案結束日期 2015/12/31 專案主持人 陳新友
主辦單位 環管處 承辦人 彭富科 執行單位 財團法人工業技術研究院

成果下載

類型 檔名 檔案大小 說明
期末報告 104毒災系統期末報告公開版.pdf 12MB

The project of establishing toxic incidents response vehicle management system and maintaining of to

英文摘要 Apart from strengthening the Toxic Chemical Accident Prevention and Response Management Information System's information security and system functions, we have implemented 115 Microsoft upgrades, 10 system function service and confirmation tasks, 15 personnel user rights changes, 12 information security inspection and system maintenance tasks, 10 response personnel data updates, and 41 service accident assistance result and system satisfaction survey tasks; the environmental protection personnel utilization rate was over 90%, and system use satisfaction was above 91.0%. System improvements have included the development of preliminary control district recommendations, incorporation of the results of potentially risky area diffusion simulations, and provision of real-time, predictive, and user-defined functions. We have further completed the design and layout of learning passports and toxic chemical accident response vehicle management subsystem website pages, and establishment of a toxic chemical accident response vehicle management system and mobile device app development and testing; the system provides vehicle information input, upload, data query, and QR code output functions. We have also completed the development of cell phone apps able to relay back travel route information and on-site photographs. With regard to the establishment of information systems at high risk locations, strengthening of response experience transmission, and accident analysis, we have developed a "High-risk Site Mobile Information Transmission System," and completed mobile device hand-over status tracking; equipment availability was 100%. We have further completed development of high-risk area statistical analysis functions reflecting toxic chemical substance types, inventories, and locations; and we have strengthened the transmission of response experience: building on the response experience module data established in 2014, we have now developed 55 accident response experience modules and the system database now contains 233 datasets. In order to promote the country's toxic chemical substance joint prevention organization, we have completed design and development of functions for Ministry of National Defense, inter-regional joint prevention organization operator, and management online application, change, and review systems, including application process planning, change, citation, browsing, and deletion functions. With regard to establishment of a new version of the national toxic chemical accident joint prevention system, we have completed a new joint prevention organization front page, assets dispatching function, joint prevention matchmaking platform functions, and joint prevention organization framework functions. We are also continuing to maintain the sign-up system established in 2014, including data and applications submitted by companies. We have further developed Bureau of Environmental Protection review and browsing functions. As for enhancing system application experience, we have continued to maintain training platform functions, and have produced 15 operating manuals addressing different types of accident scenarios. The overall training platform usage rate is currently 100%. We have conducted sand table simulations and system linkage tasks in 12 cities and counties (New Taipei, Hsinchu, Taichung, Changhua, Keelung, Hsinchu County, Miaoli County, Hualien County, Chiayi County, Pingtung County, Tainan City, and Taoyuan County), and 342 persons participated in these activities. We held five explanatory meetings on the toxic chemical accident prevention management information system attended by 88 persons, further determined four quantitative system performance indicators for use in effectiveness assessment, and completed collection of quantitative data concerning the toxic chemical accident system's four indicators of prevention, readiness, response, and recovery.
英文關鍵字 Toxic Disaster Prevention and Relief, Response Vehicle, Mutual Aid