na structural health monitoring market

NA Structural Health Monitoring Market - Industry Trends and Forecast to 2030

  • Published Date: 2023-08-18
  • Report ID: 145257
  • Pages: 250
  • Format: prudent report format

North America structural health monitoring market is projected to register a CAGR of 18.0% in the forecast period of 2023 to 2030. The new market report contains data for historic year 2021, the base year of calculation is 2022 and the forecast period is 2023 to 2030.

Market Segmentation:

North America Structural Health Monitoring Market, By Type (Hardware, Software, Services), Connectivity (Wired and Wireless), Installation Type (New installation and Retrofit), Method (Visual Inspection and Non-Destructive Evaluation), Application (Damage Detection, Crack Detection, Strain Monitoring, Wire Break Monitoring, Leakage Detection, Multimodal Sensing, Corrosion Detection, Hotspot Monitoring, Impact Monitoring, Deflection Monitoring), End User (Civil, Aerospace, Energy, Mining, Marine, Industrial, Offshore Platform, Defense, School, Public park and recreation, Automotive and Others), Country (U.S., Canada, Mexico) Industry Trends and Forecast to 2030

Some of the major factors contributing to the growth of the North America structural health monitoring market are:

Rise in the technological advancement.
Increase in the improved safety, and maintainability of critical structures
Market Players
Some of the major players operating in the North America structural health monitoring market are:
Acellent Technologies Inc.
Campbell Scientific, Inc.
COWI A/S
Digitex
Digitexx Data Systems, Inc.
FEAC Engineering
First Sensor AG
GEOKON
Geomotion Singapore
GeoSIG Ltd
HBK
James Fischer and Sons plc
Kinemetrics
NATIONAL INSTRUMENTS CORP.
Nova Ventures
OSMOS Group SA
Sisgeo S.r.l.
SIXENSE Systems
SODIS Lab
STRUCTURAL MONITORING STSTEMS PLC.
Xylem Inc.


TABLE OF CONTENTS
1 INTRODUCTION 91
1.1 OBJECTIVES OF THE STUDY 91
1.2 MARKET DEFINITION 91
1.3 OVERVIEW OF THE NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET 91
1.4 CURRENCY AND PRICING 93
1.5 LIMITATIONS 93
1.6 MARKETS COVERED 94
2 MARKET SEGMENTATION 98
2.1 MARKETS COVERED 98
2.2 GEOGRAPHICAL SCOPE 99
2.3 YEARS CONSIDERED FOR THE STUDY 100
2.4 DBMR TRIPOD DATA VALIDATION MODEL 101
2.5 PRIMARY INTERVIEWS WITH KEY OPINION LEADERS 104
2.6 DBMR MARKET POSITION GRID 105
2.7 VENDOR SHARE ANALYSIS 107
2.8 MULTIVARIATE MODELING 108
2.9 TYPE TIMELINE CURVE 108
2.10 MARKET APPLICATION COVERAGE GRID 109
2.11 SECONDARY SOURCES 110
2.12 ASSUMPTIONS 110
3 EXECUTIVE SUMMARY 111
4 PREMIUM INSIGHTS 113
4.1 POTERS FIVE FORCES 114
4.2 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, REGULATIONS 115
4.3 TECHNOLOGICAL TRENDS 117
4.4 PATENT ANALYSIS 119
4.5 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, VALUE CHAIN ANALYSIS 122
4.6 CASE STUDIES 125
5 MARKET OVERVIEW 126
5.1 DRIVERS 128
5.1.1 GROWING INFRASTRUCTURAL DEVELOPMENT ACROSS THE GLOBE 128
5.1.2 INCREASING AUTOMATION, AND STANDARDIZATION IN THE MAINTENANCE & REPAIR OF CIVIL INFRASTRUCTURE 129
5.1.3 GROWING ADVANCEMENT IN SENSOR TECHNOLOGIES 130
5.1.4 IMPROVED SAFETY, AND MAINTAINABILITY OF CRITICAL STRUCTURES 130
5.2 RESTRAINTS 131
5.2.1 HIGH INSTALLATION AND MONITORING COSTS 131
5.2.2 INACCURATE RESULTS DUE TO CALIBRATION ERRORS 132
5.2.3 FLUCTUATING PRICES OF RAW MATERIALS 132
5.3 OPPORTUNITIES 133
5.3.1 INTEGRATION OF TECHNOLOGICALLY ADVANCED SOLUTIONS FOR STRUCTURAL HEALTH MONITORING 133
5.3.2 GROWTH IN INVESTMENTS IN INFRASTRUCTURE AND ADVANCES IN WIRELESS SENSOR NETWORKS 133
5.3.3 INCREASE IN VARIOUS STRATEGIC DECISIONS, SUCH AS PARTNERSHIP AND ACQUISITION 134
5.4 CHALLENGES 135
5.4.1 REQUIREMENT OF SKILLED OPERATORS FOR INSTALLATION AND CALIBRATION OF STRUCTURAL HEALTH MONITORING INSTRUMENTS 135
5.4.2 LACK OF STANDARDIZATION IN MANAGING LARGE VOLUMES OF DATA 135
5.4.3 TECHNICAL CHALLENGES AND OPERATIONAL FACTORS 135
6 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, BY TYPE 137
6.1 OVERVIEW 138
6.2 HARDWARE 141
6.2.1 SENSORS 142
6.2.1.1 ACCELEROMETERS 143
6.2.1.2 ULTRASONIC SENSORS 143
6.2.1.3 TEMPERATURE SENSORS 143
6.2.1.4 STRAIN GAUGES 143
6.2.1.5 CORROSION SENSORS 143
6.2.1.6 DISPLACEMENT SENSOR 143
6.2.1.7 INCLINOMETERS AND TILT METERS 143
6.2.1.8 SEISMOMETERS 143
6.2.1.9 OTHERS 143
6.2.2 DATA ACQUISITION UNITS 144
6.2.3 AMPLIFIERS 144
6.2.4 CAMERA 144
6.2.5 OTHERS 144
6.3 SOFTWARE 144
6.4 SERVICES 145
6.4.1 INSTALLATION 146
6.4.1.1 PRE INSTALLATION 146
6.4.1.2 POST INSTALLATION 146
6.4.2 DESIGNING AND CONSULTING 146
6.4.3 MAINTENANCE 146
7 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, BY CONNECTIVITY 147
7.1 OVERVIEW 148
7.2 WIRED 151
7.3 WIRELESS 152
8 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, BY INSTALLATION TYPE 153
8.1 OVERVIEW 154
8.2 NEW INSTALLATION 157
8.3 RETROFIT 158
9 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, BY METHOD 159
1.1. OVERVIEW 160
9.1 VISUAL INSPECTION 163
9.1.1 DATA-BASED TECHNIQUES 163
9.1.2 MODEL BASED TECHNIQUES 163
9.2 NON-DESTRUCTIVE EVALUATION (NDE) 164
10 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, BY APPLICATION 165
10.1 OVERVIEW 166
10.2 DAMAGE DETECTION 169
10.3 CRACK DETECTION 169
10.4 STRAIN MONITORING 170
10.5 WIRE BREAK MONITORING 171
10.5.1 IN POST TENSION CONCRETE STRUCTURE 172
10.5.2 SUSPENSION AND CABLE STAY BRIDGES 172
10.6 LEAKAGE DETECTION 172
10.7 MULTIMODAL SENSING 173
10.8 CORROSION MONITORING 174
10.9 HOTSPOT MONITORING 175
10.10 IMPACT MONITORING 176
10.11 DEFLECTION MONITORING 176
11 NORTH AMERICA STRUCTURAL HEALTH MONITORING MARKET, BY END USER 178
11.1 OVERVIEW 179
11.2 CIVIL 182
11.2.1 BUILDING 183
11.2.1.1 DAMAGE DETECTION 184
11.2.1.2 CRACK DETECTION 184
11.2.1.3 STRAIN MONITORING 184
11.2.1.4 WIRE BREAK MONITORING 184
11.2.1.5 LEAKAGE DETECTION 184
11.2.1.6 MULTIMODAL SENSING 184
11.2.1.7 CORROSION MONITORING 184
11.2.1.8 HOTSPOT MONITORING 184
11.2.1.9 IMPACT MONITORING 184
11.2.1.10 DEFLECTION MONITORING 185
11.2.2 BRIDGES 185
11.2.2.1 DAMAGE DETECTION 185
11.2.2.2 CRACK DETECTION 185
11.2.2.3 STRAIN MONITORING 186
11.2.2.4 WIRE BREAK MONITORING 186
11.2.2.5 LEAKAGE DETECTION 186
11.2.2.6 MULTIMODAL SENSING 186
11.2.2.7 CORROSION MONITORING 186
11.2.2.8 HOTSPOT MONITORING 186
11.2.2.9 IMPACT MONITORING 186
11.2.2.10 DEFLECTION MONITORING 186
11.2.3 TUNNELS 187
11.2.3.1 DAMAGE DETECTION 187
11.2.3.2 CRACK DETECTION 187
11.2.3.3 STRAIN MONITORING 187
11.2.3.4 HOTSPOT MONITORING 187
11.2.3.5 LEAKAGE DETECTION 188
11.2.3.6 WIRE BREAK MONITORING 188
11.2.3.7 CORROSION MONITORING 188
11.2.3.8 MULTIMODAL SENSING 188
11.2.3.9 IMPACT MONITORING 188
11.2.3.10 DEFLECTION MONITORING 188
11.2.4 DAMS 189
11.2.4.1 DAMAGE DETECTION 189
11.2.4.2 CRACK DETECTION 189
11.2.4.3 STRAIN MONITORING 189
11.2.4.4 IMPACT MONITORING 190
11.2.4.5 LEAKAGE DETECTION 190
11.2.4.6 MULTIMODAL SENSING 190
11.2.4.7 CORROSION MONITORING 190
11.2.4.8 HOTSPOT MONITORING 190
11.2.4.9 IMPACT MONITORING 190
11.2.4.10 DEFLECTION MONITORING 190
11.2.5 ROADS 191
11.2.5.1 DAMAGE DETECTION 191
11.2.5.2 CRACK DETECTION 191
11.2.5.3 STRAIN MONITORING 191
11.2.5.4 IMPACT MONITORING 191
11.2.5.5 HOTSPOT MONITORING 192
11.2.5.6 LEAKAGE DETECTION 192
11.2.5.7 MULTIMODAL SENSING 192
11.2.5.8 DEFLECTION MONITORING 192
11.2.5.9 WIRE BREAK MONITORING 192
11.2.5.10 CORROSION MONITORING 192
11.2.6 STADIUM 193
11.2.6.1 DAMAGE DETECTION 193
11.2.6.2 CRACK DETECTION 193
11.2.6.3 STRAIN MONITORING 193
11.2.6.4 CORROSION MONITORING 194
11.2.6.5 LEAKAGE DETECTION 194
11.2.6.6 WIRE BREAK MONITORING 194
11.2.6.7 MULTIMODAL SENSING 194
11.2.6.8 HOTSPOT MONITORING 194
11.2.6.9 IMPACT MONITORING 194
11.2.6.10 DEFLECTION MONITORING 194
11.2.7 OTHERS 194
11.3 AEROSPACE 195
11.3.1 DAMAGE DETECTION 196
11.3.2 IMPACT MONITORING 196
11.3.3 CORROSION MONITORING 196
11.3.4 CRACK DETECTION 196
11.3.5 STRAIN MONITORING 196
11.3.6 WIRE BREAK MONITORING 197
11.3.7 LEAKAGE DETECTION 197
11.3.8 MULTIMODAL SENSING 197
11.3.9 HOTSPOT MONITORING 197
11.3.10 DEFLECTION MONITORING 197
11.4 ENERGY 197
11.4.1 DAMAGE DETECTION 198
11.4.2 IMPACT MONITORING 198
11.4.3 CORROSION MONITORING 199
11.4.4 CRACK DETECTION 199
11.4.5 STRAIN MONITORING 199
11.4.6 WIRE BREAK MONITORING 199
11.4.7 LEAKAGE DETECTION 199
11.4.8 MULTIMODAL SENSING 199
11.4.9 HOTSPOT MONITORING 199
11.4.10 DEFLECTION MONITORING 200
11.4.10.1 WIND TURBINE 200
11.4.10.1.1 DAMAGE DETECTION 201
11.4.10.1.2 CRACK DETECTION 201
11.4.10.1.3 STRAIN MONITORING 201
11.4.10.1.4 WIRE BREAK MONITORING 201
11.4.10.1.5 CORROSION MONITORING 201
11.4.10.1.6 MULTIMODAL SENSING 201
11.4.10.1.7 LEAKAGE DETECTION 201
11.4.10.1.8 HOTSPOT MONITORING 201
11.4.10.1.9 IMPACT MONITORING 201
11.4.10.1.10 DEFLECTION MONITORING 202
11.4.10.2 OTHERS 202
11.5 MINING 202
11.5.1 LEAKAGE DETECTION 203
11.5.2 DAMAGE DETECTION 203
11.5.3 CRACK DETECTION 203
11.5.4 WIRE BREAK MONITORING 203
11.5.5 IMPACT MONITORING 204
11.5.6 CORROSION MONITORING 204
11.5.7 STRAIN MONITORING 204
11.5.8 MULTIMODAL SENSING 204
11.5.9 HOTSPOT MONITORING 204
11.5.10 DEFLECTION MONITORING 204
11.6 MARINE 205
11.6.1 DAMAGE DETECTION 206
11.6.2 CRACK DETECTION 206
11.6.3 LEAKAGE DETECTION 206
11.6.4 STRAIN MONITORING 206
11.6.5 CORROSION MONITORING 206
11.6.6 IMPACT MONITORING 207
11.6.7 HOTSPOT MONITORING 207
11.6.8 MULTIMODAL SENSING 207
11.6.9 DEFLECTION MONITORING 207
11.6.10 WIRE BREAK MONITORING 207
11.7 INDUSTRIAL 208
11.7.1 DAMAGE DETECTION 209
11.7.2 CRACK DETECTION 209
11.7.3 STRAIN MONITORING 209
11.7.4 CORROSION MONITORING 209
11.7.5 LEAKAGE DETECTION 210
11.7.6 WIRE BREAK MONITORING 210
11.7.7 MULTIMODAL SENSING 210
11.7.8 HOTSPOT MONITORING 210
11.7.9 IMPACT MONITORING 210
11.7.10 DEFLECTION MONITORING 210
11.8 OFFSHORE PLATFORM 211
11.8.1 CORROSION MONITORING 212
11.8.2 LEAKAGE DETECTION 212
11.8.3 DAMAGE DETECTION 212
11.8.4 CRACK DETECTION 212
11.8.5 STRAIN MONITORING 212
11.8.6 WIRE BREAK MONITORING 213
11.8.7 LEAKAGE DETECTION 213
11.8.8 MULTIMODAL SENSING 213
11.8.9 HOTSPOT MONITORING 213
11.8.10 DEFLECTION MONITORING 213
11.9 DEFENSE 214
11.9.1 DAMAGE DETECTION 215
11.9.2 CORROSION MONITORING 215
11.9.3 CRACK DETECTION 215
11.9.4 STRAIN MONITORING 215
11.9.5 WIRE BREAK MONITORING 216
11.9.6 IMPACT MONITORING 216
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