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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/97223


    Title: 桃園市觀音區多功能場館之工程品質精進作為;Engineering Quality Improvement Measures for the Multi-Functional Venue in Guanyin District,Taoyuan City
    Authors: 蔡濬承;TSAI, JUN-CHENG
    Contributors: 土木工程學系在職專班
    Keywords: 公共工程三級品管制度;履約情形計分;金品獎;綠建築標章證書;智慧建築標章證書;金質獎;金安獎
    Date: 2025-07-07
    Issue Date: 2025-10-17 11:00:11 (UTC+8)
    Publisher: 國立中央大學
    Abstract: 本研究針對「桃園市觀音區多功能場館新建統包工程」進行探討,該工程位於人口快速成長的草漯地區,周邊規劃為商業及住宅區。為滿足當地居民的需求,桃園市政府引入了多項公共設施,包括超級市場、日照中心、親子休閒館、市民活動中心及圖書館,旨在提供一個全齡友善及生活休閒的社區空間,促進居民的社交與學習。
    本研究的主要目的是提升公共工程的建設品質,通過導入督導機制、工程查核及履約情形計分等方法,改善公共工程團隊的素質。研究方法包括文獻分析和歸納分析,透過對公共工程金質獎、金安獎之相關文獻進行分析,確定提升工程品質的策略。
    研究結果顯示,觀音區多功能場館的設計理念結合了當地的海岸地形,並強調綠色建築及智慧建築的概念,提升了建築的環保與節能效益。此外,該工程在獲得桃園市金品獎後,帶來了顯著的效益,包括:
    一、品牌形象提升:獲獎後,施工單位的市場競爭力增強,提升了企業的品牌形象和知名度,吸引更多的合作機會。
    二、經濟激勵:金品獎得獎廠商在公共工程招標中可享有加分優勢,並且工程押標金、履約保證金及保固保證金可減收50%,有效改善了廠商的現金流動壓力。
    三、品質管理提升:透過履約情形計分制度,施工單位能夠明確了解自身在施工進度、品質、安全衛生等方面的表現,進而持續改進,確保未來項目的成功執行。
    本研究還強調履約情形計分要點的重要性,該機制不僅為施工廠商提供了清晰的績效評估標準,還促使其在施工過程中更加注重品質管理與職業安全衛生,最終實現更高的工程品質和效率。
    總結,本研究不僅提供了對觀音區多功能場館的深入分析,也對未來公共工程的品質管理提出了建議,以期能夠更好地滿足社區需求,促進地方經濟發展。
    ;This study explores the "Taoyuan City Guanyin District Multi-Functional Venue New Construction Project," located in the rapidly growing Caoshuo area, which is planned to include commercial and residential zones. To meet the needs of local residents, the Taoyuan City Government has introduced various public facilities, including supermarkets, daylight centers, parent-child recreational centers, civic activity centers, and libraries, aiming to provide an age-friendly and leisure-oriented community space that promotes social interaction and learning among residents.
    The main objective of this study is to enhance the quality of public construction projects by introducing supervision mechanisms, project audits, and performance scoring methods to improve the quality of public engineering teams. The research methods include literature analysis and inductive analysis, through which strategies for improving project quality are identified by analyzing relevant literature on the Public Engineering Gold Quality Award and the Gold Safety Award.
    The results of the study indicate that the design concept of the multi-functional venue in Guanyin District integrates the local coastal terrain while emphasizing the concepts of green buildings and smart buildings, thereby enhancing the environmental and energy-saving benefits of the construction. Furthermore, after receiving the Taoyuan City Gold Quality Award, the project has brought significant benefits, including:
    1. Enhanced Brand Image: After receiving the award, the market competitiveness of the contractor has increased, improving the company′s brand image and visibility, thus attracting more collaboration opportunities.
    2. Economic Incentives: Award-winning contractors can enjoy scoring advantages in public project tenders, and the bid bond, performance guarantee, and warranty can be reduced by 50%, effectively alleviating the cash flow pressure on contractors.
    3. Improved Quality Management: Through the performance scoring system, contractors can clearly understand their performance in terms of construction progress, quality, and safety and health standards, allowing for continuous improvement and ensuring the successful execution of future projects.
    This study also emphasizes the importance of the performance scoring points, as this scoring mechanism not only provides clear performance evaluation standards for contractors but also encourages them to pay more attention to quality management and occupational health and safety during the construction process, ultimately achieving higher engineering quality and efficiency.
    In summary, this study not only provides an in-depth analysis of the multi-functional venue in Guanyin District but also offers suggestions for future public engineering quality management, aiming to better meet community needs and promote local economic development.
    Appears in Collections:[Executive Master of Civil Engineering] Electronic Thesis & Dissertation

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