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市場調查報告書

建設業的智慧結構:市場、技術預測 (2016年∼2025年)

Smart Structures in the Construction Industry: A Market and Technology Forecast - 2016 to 2025

出版商 n-tech Research, a NanoMarkets company 商品編碼 352116
出版日期 內容資訊 英文 85 Pages
商品交期: 最快1-2個工作天內
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建設業的智慧結構:市場、技術預測 (2016年∼2025年) Smart Structures in the Construction Industry: A Market and Technology Forecast - 2016 to 2025
出版日期: 2016年02月29日 內容資訊: 英文 85 Pages
簡介

本報告以建設業的智慧結構的機會為主題,以10年預測 (數量、金額) 為焦點,提供價值鏈分析,技術發展藍圖,主要供應商的市場策略等系統性資訊。

摘要整理

第1章 簡介

第2章 建設業的智慧結構:材料、技術

  • 智慧結構的智慧材料
  • 智慧結構的感測器
  • 智慧混凝土、智慧柏油、智慧磚等的作用
  • 建設業的智慧結構的10年技術預測
  • 要點

第3章 建設業的智慧結構:市場演進

  • 地震監測、修復的成熟市場
  • 其他災害復原市場
  • SHM:新市場、功能性
  • 智慧介面轉移
  • 要點

第4章 建設業的智慧結構的發展:地區、市場

  • 智慧結構的內部:國際比較
  • 新的普雷斯蒂奇大樓:維修、住宅市場
  • 未來的智慧結構對智慧城市的影響
  • 與BIPV市場的相似性
  • 美國的建設業的智慧結構市場
  • 歐洲的建設業的智慧結構市場
  • 日本的建設業的智慧結構市場
  • 中國的建設業的智慧結構市場
  • 中東的建設業的智慧結構市場
  • 可處理智慧結構應的市場10年預測:各地區
  • 要點

簡稱

關於作者

目錄
Product Code: Nano-865

n-tech believes that the market for smart structures in buildings, bridges and tunnels is about to take off as new business cases for deployment of smart structures begin to appear. Traditionally smart structures have been used to provide disaster avoidance, especially through the use of structural health monitoring (SHM) systems; themselves a rapidly growing market. However, we are now seeing the functionality of smart structures expand to include improving enhanced energy efficiency, lowering the cost of construction, increasing the lifespan of the building and even improving the aesthetics of the building.

These new developments fit in very well with the current buzz about the Internet-of-Things (IoT) and smart cities and we believe this megatrend will help boost the prospects for smart structures in the construction industry worldwide. As a result we expect to see important new revenue generation potential for suppliers of smart materials, building materials firms, SHM system suppliers, energy companies and the construction firms themselves.

About the Report:

This report pinpoints the opportunities for smart structures in the construction industry and quantifies them in form of ten-year volume and value forecasts. These forecasts include breakouts by type of technology, materials, and components used. And while the current focus of smart structures is on large prestige buildings, this report also discusses how current technology trends will bring the benefits of smart structures down to smaller buildings and residential construction.

The forecasts in this report are also segmented by the geographical location of the building in which the smart structures are used - all construction is local and the forecasting models used here are designed to map smart building activities in specific countries and regions into our projections. For example, we have specifically taken account of activity in the Middle East in this report, because so many smart buildings are being constructed in this region at the present time with smart structures inside.

The analysis in this report ranges over the complete value chain and covers materials, components and final products. Our intent is to provide a technological roadmap for smart structures in the construction, showing how they can create value by enhancing the safety, energy efficiency, aesthetics, and lifetimes of buildings. This roadmap analyzes the revenue generation potential for smart structures in buildings ranging from existing products such as smart windows and SHM systems, through the latest self-cleaning walls to future smart skins using the most advanced smart materials.

Finally, this report examines the product market strategies of leading suppliers active in this space. This analysis includes both the largest firms playing at the international level and interesting new startups. We also examine where the funding for these companies is coming including a look at important government funding for smart structure deployment in the construction industry.

This study is part of n-tech's ongoing and expanding program of analysis of smart materials markets. Previous reports have covered self-healing materials, self-cleaning materials, color-shifting materials, smart coatings, smart surfaces, smart composites, smart windows, etc. The goal of n-tech smart materials program is to identify where the money will be made in smart materials and to set out realistic product market strategies for smart materials that make sense in today's economy.

Table of Contents

Executive Summary

  • E.1 Opportunities Presented by Smart Structures Deployment in the Construction Industry
    • E.1.1 Smart Materials Firms and the Specialty Chemicals Industry
    • E.1.2 Sensor and Components Makers
    • E.1.3 SHM and Control Systems Firms
    • E.1.4 Building Materials Firms
    • E.1.5 The Construction Industry: Architects, Designers and General Contractors
  • E.2 Summary of Market Opportunity by Geography: Ten-Year Forecasts
  • E.3 Summary of Market Opportunity by Addressable Market
    • E.3.1 Ten-Year Forecast of Smart Structures in Construction: Prestige Buildings
    • E.3.2 Ten-Year Forecast of Smart Structures in Construction: Other Commercial and Industrial Buildings
    • E.3.3 Ten-Year Forecast of Smart Structures in Construction: Residential Construction
    • E.3.4 Ten-Year Forecast of Smart Structures in Construction: Retrofit and "Facelift" Market
  • E.4 Six Firms to Watch in this Sector

Chapter One: Introduction

  • 1.1 Background to this Report
    • 1.1.1 Evolution of Smart Structures in the Construction Industry
    • 1.1.2 Smart Structures as Damage Control: From Isolation Designs to SHM
    • 1.1.3 Towards Smart Building Skins: The Role of Smart Structures
    • 1.1.4 Patterns of Opportunity
  • 1.2 Objective and Scope of this Report
  • 1.3 Methodology of this Report
    • 1.3.1 Forecasting Methodology
  • 1.4 Plan of this Report

Chapter Two: Smart Structures in Construction: Materials and Technologies

  • 2.1 Smart Materials for Smart Structures
    • 2.1.1 Shape Memory Alloys
    • 2.1.2 Piezoelectric Technology
    • 2.1.3 Self-Cleaning and Self-Healing Technologies
    • 2.1.4 Color-shifting Materials
    • 2.1.5 Biomaterials
    • 2.1.6 Other Important Smart Materials for Smart Structures in the Construction Industry
  • 2.2 Sensors for Smart Structures
    • 2.2.1 Fiber Optic Sensors
    • 2.2.2 Strain Gauges and Related Sensors
    • 2.2.3 Other Sensors for Smart Structures in the Construction Industry
  • 2.3 Role of Smart Concrete, Smart Asphalt, Smart Brick, etc.
    • 2.3 Technology Evolution of SHM Systems
  • 2.4 Ten-Year Technology Forecast for Smart Structures in the Construction Industry
    • 2.4.1 Smart Materials including Smart Concrete
    • 2.4.1 Sensors
    • 2.4.2 SHM
  • 2.5 Key Points from this Chapter

Chapter Three: Smart Structures in Construction: Market Evolution

  • 3.1 Mature Markets for Seismic Monitoring and Recovery
  • 3.2 Other Disaster Recovery Markets
  • 3.3 SHM: New Markets and Functionalities
  • 3.4 Shift Towards Smart Skins
    • 3.4.1 Enhanced Energy Efficiency and Environmental Functionality
    • 3.4.2 Lowering the Cost of Construction
    • 3.4.3 Increasing the Lifespan of the Building
    • 3.4.4 Improving the Aesthetics of the Building
  • 3.5 Key Points from this Chapter

Chapter Four: Smart Structure Deployment in Construction: Geographies and Markets

  • 4.1 Smart Structures Inside: An International Comparison
  • 4.2 Beyond New Prestige Buildings: Retrofits and Residential Markets
  • 4.3 The Impact on the Smart Cities on the Future of Smart Structures
  • 4.4 Similarities to the BIPV Market
  • 4.5 Smart Structures in the US Construction Market
    • 4.5.1 Notable Buildings Using Smart Structures in the US
    • 4.5.2 Expectations for the US Construction Industry: Implications for Smart Structures
  • 4.6 Smart Structures in the European Construction Market
    • 4.6.1 Notable Buildings Using Smart Structures in Europe
    • 4.6.2 Expectations for the European Construction Industry: Implications for Smart Structures
  • 4.7 Smart Structures in the Japanese Construction Market
    • 4.7.1 Notable Buildings Using Smart Structures in Japan
    • 4.7.2 Expectations for the Japanese Construction Industry: Implications for Smart Structures
  • 4.8 Smart Structures in the Chinese Construction Market
    • 4.8.1 Notable Buildings Using Smart Structures in China
    • 4.8.2 Expectations for the Chinese Construction Industry: Implications for Smart Structures
  • 4.9 Smart Structures in the Middle East Construction Market
    • 4.9.1 Notable Buildings Using Smart Structures in the Middle East
    • 4.9.2 Expectations for the Middle East Construction Industry: Implications for Smart Structures
  • 4.10 10-Year Forecast of Addressable Market for Smart Structures by Geography
  • 4.11 Key Points from this Chapter

Acronyms and Abbreviations Used in this Report

About the Author

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