Knowledge

Earthquake shaking table

Source 📝

28: 282: 95:
in model testing contests, where participants evaluate designs developed within specific guidelines against simulated seismic activity. Simple shake tables are also used in architecture and structural engineering primarily for educational purposes, helping students learn how structures respond to earthquakes through hands-on model testing.
94:
They are also used in other fields of engineering to test and qualify vehicles and components of vehicles that must respect heavy vibration requirements and standards. Some applications include testing according to aerospace, electrical, and military standards. Earthquake shaking tables are essential
74:
or other types of actuators, the earliest shake table, invented at the University of Tokyo in 1893 to categorize types of building construction, ran on a simple wheel mechanism. Test specimens are fixed to the platform and shaken, often to the point of
91:. Earthquake shaking tables are used extensively in seismic research, as they provide the means to excite structures in such a way that they are subjected to conditions representative of true earthquake ground motions. 267: 161:
Bruyne, Stijn & Marques dos Santos, Fabio & Peeters, Bart & Anthonis, J & Appolloni, M & Cozzani, A. (2012).
286: 135: 182:
MIL-STD-810G, Department of Defense Test Method Standard for Environmental Engineering Considerations and Laboratory Tests
150: 175: 17: 67: 308: 226:"Teaching earthquake-resistant structural systems in architecture department: a hands-on learning experience" 55:). This is a device for shaking scaled slopes, structural models or building components with a wide range of 179: 313: 225: 292: 104: 56: 35:
There are several different experimental techniques that can be used to test the response of
8: 84: 40: 66:
While modern tables typically consist of a rectangular platform that is driven in up to
71: 163:
Model based control of a multi-axis hydraulic shaker using experimental modal analysis
245: 162: 131: 88: 237: 241: 125: 36: 266:
IEEE 693-2018: "IEEE Recommended Practice for Seismic Design of Substations",
31:
Earthquake shaking table at the National Technical University, Athens, Greece.
302: 249: 76: 80: 60: 200: 130:. Reston, VA: American Society of Civil Engineers. pp. 126–127. 174: 27: 201:"Dask Depreme Dayanıklı Bina Tasarımı Yarışması - ABOUT CONTEST" 281: 165:. European Space Agency, (Special Publication) ESA SP. 691. 224:
Karadag, Omer; Canakcioglu, Nevset Gul (2024-07-03).
127:
Earthquakes and Engineers: An International History
223: 268:Institute of Electrical and Electronics Engineers 300: 123: 117: 39:and soil or rock slopes to verify their 26: 14: 301: 59:, including reproductions of recorded 79:. Using video records and data from 176:United States Department of Defense 24: 260: 83:, it is possible to interpret the 25: 325: 274: 280: 43:, one of which is the use of an 217: 193: 168: 155: 144: 13: 1: 242:10.1080/00038628.2023.2288967 110: 230:Architectural Science Review 68:six degrees of freedom (DOF) 7: 151:NASA’s Space Power Facility 124:Reitherman, Robert (2012). 98: 10: 330: 205:binatasarimi.dask.gov.tr 57:simulated ground motions 45:earthquake shaking table 295:– European Space Agency 309:Earthquake engineering 105:Earthquake engineering 32: 287:Earthquake simulation 178:, ed. (31 Oct 2008). 30: 289:at Wikimedia Commons 41:seismic performance 33: 285:Media related to 137:978-0-7844-7635-2 85:dynamic behaviour 18:Shake-table video 16:(Redirected from 321: 314:Mechanical tests 284: 254: 253: 221: 215: 214: 212: 211: 197: 191: 190: 188: 172: 166: 159: 153: 148: 142: 141: 121: 63:time-histories. 21: 329: 328: 324: 323: 322: 320: 319: 318: 299: 298: 277: 263: 261:Further reading 258: 257: 222: 218: 209: 207: 199: 198: 194: 186: 173: 169: 160: 156: 149: 145: 138: 122: 118: 113: 101: 72:servo-hydraulic 23: 22: 15: 12: 11: 5: 327: 317: 316: 311: 297: 296: 290: 276: 275:External links 273: 272: 271: 262: 259: 256: 255: 236:(4): 332–344. 216: 192: 167: 154: 143: 136: 115: 114: 112: 109: 108: 107: 100: 97: 9: 6: 4: 3: 2: 326: 315: 312: 310: 307: 306: 304: 294: 291: 288: 283: 279: 278: 269: 265: 264: 251: 247: 243: 239: 235: 231: 227: 220: 206: 202: 196: 185: 183: 177: 171: 164: 158: 152: 147: 139: 133: 129: 128: 120: 116: 106: 103: 102: 96: 92: 90: 86: 82: 78: 73: 69: 64: 62: 58: 54: 50: 49:shaking table 46: 42: 38: 29: 19: 293:Hydra shaker 233: 229: 219: 208:. Retrieved 204: 195: 181: 170: 157: 146: 126: 119: 93: 65: 52: 51:, or simply 48: 44: 34: 81:transducers 61:earthquakes 53:shake table 303:Categories 210:2024-08-12 111:References 37:structures 250:0003-8628 99:See also 89:specimen 270:, 2018. 87:of the 77:failure 248:  134:  187:(PDF) 246:ISSN 132:ISBN 238:doi 70:by 47:(a 305:: 244:. 234:67 232:. 228:. 203:. 252:. 240:: 213:. 189:. 184:" 180:" 140:. 20:)

Index

Shake-table video

structures
seismic performance
simulated ground motions
earthquakes
six degrees of freedom (DOF)
servo-hydraulic
failure
transducers
dynamic behaviour
specimen
Earthquake engineering
Earthquakes and Engineers: An International History
ISBN
978-0-7844-7635-2
NASA’s Space Power Facility
Model based control of a multi-axis hydraulic shaker using experimental modal analysis
United States Department of Defense
"MIL-STD-810G, Department of Defense Test Method Standard for Environmental Engineering Considerations and Laboratory Tests"
"Dask Depreme Dayanıklı Bina Tasarımı Yarışması - ABOUT CONTEST"
"Teaching earthquake-resistant structural systems in architecture department: a hands-on learning experience"
doi
10.1080/00038628.2023.2288967
ISSN
0003-8628
Institute of Electrical and Electronics Engineers

Earthquake simulation
Hydra shaker

Text is available under the Creative Commons Attribution-ShareAlike License. Additional terms may apply.