The Fort Worth Press - Groundbreaking: 'Controlled' quakes triggered under Swiss Alps

USD -
AED 3.672497
AFN 64.999605
ALL 79.198216
AMD 363.40991
ANG 1.790365
AOA 916.999749
ARS 1512.740896
AUD 1.410119
AWG 1.8
AZN 1.701556
BAM 1.695609
BBD 2.01466
BDT 123.160418
BGN 1.683441
BHD 0.377026
BIF 2995
BMD 1
BND 1.273738
BOB 10.998357
BRL 5.152295
BSD 1.000308
BTN 95.98391
BWP 13.567066
BYN 3.037656
BYR 19600
BZD 2.011747
CAD 1.398635
CDF 2309.99961
CHF 0.825065
CLF 0.024175
CLP 954.580414
CNY 6.706399
CNH 6.708715
COP 3133.76
CRC 447.438348
CUC 1
CUP 26.5
CVE 96.000146
CZK 21.201985
DJF 177.719662
DKK 6.51625
DOP 58.850245
DZD 133.881026
EGP 52.197697
ERN 15
ETB 160.949866
EUR 0.87169
FJD 2.240751
FKP 0.741937
GBP 0.747065
GEL 2.604995
GGP 0.741937
GHS 11.504973
GIP 0.741937
GMD 74.000116
GNF 8777.499227
GTQ 7.636255
GYD 209.277425
HKD 7.844351
HNL 26.907894
HRK 6.568963
HTG 130.738787
HUF 318.462501
IDR 17728.45
ILS 3.027502
IMP 0.741937
INR 96.13265
IQD 1310.5
IRR 1374574.999814
ISK 121.85999
JEP 0.741937
JMD 157.856864
JOD 0.70902
JPY 155.914497
KES 129.560025
KGS 87.449899
KHR 4052.999535
KMF 427.999882
KPW 900.000318
KRW 1374.710338
KWD 0.30886
KYD 0.833583
KZT 444.773881
LAK 22385.000132
LBP 89550.000264
LKR 331.544497
LRD 174.649958
LSL 16.295884
LTL 2.952741
LVL 0.60489
LYD 6.345011
MAD 9.467004
MDL 17.439779
MGA 4379.999714
MKD 53.670579
MMK 2099.62457
MNT 3595.075141
MOP 8.082447
MRU 40.059743
MUR 47.29002
MVR 15.410069
MWK 1736.485115
MXN 17.23628
MYR 4.097899
MZN 63.893708
NAD 16.304398
NGN 1330.630212
NIO 36.680381
NOK 9.42276
NPR 153.579928
NZD 1.74793
OMR 0.384434
PAB 1.000282
PEN 3.357999
PGK 4.44625
PHP 62.85995
PKR 277.304156
PLN 3.804265
PYG 5918.765443
QAR 3.643976
RON 4.587998
RSD 102.311776
RUB 84.249239
RWF 1470
SAR 3.743177
SBD 8.000512
SCR 13.846248
SDG 601.501138
SEK 9.85385
SGD 1.27738
SHP 0.746965
SLE 24.63963
SLL 20969.491881
SOS 571.673797
SRD 37.752498
STD 20697.981008
STN 21.65
SVC 8.752834
SYP 13002.000254
SZL 16.390079
THB 33.390156
TJS 9.226022
TMT 3.5
TND 2.925022
TOP 2.40776
TRY 48.673799
TTD 6.782056
TWD 31.876095
TZS 2645.003047
UAH 44.609389
UGX 3916.077853
UYU 40.244484
UZS 11794.999934
VES 845.45495
VND 26000
VUV 118.157011
WST 2.736734
XAF 571.791402
XAG 0.015808
XAU 0.000234
XCD 2.70255
XCG 1.802758
XDR 0.707052
XOF 571.791402
XPF 103.849978
YER 236.649945
ZAR 16.37321
ZMK 9001.191092
ZMW 19.630588
ZWL 321.999592
SSP 5655.283496
MXV 1.954359
  • RBGPF

    0.0000

    69.99

    0%

  • RYCEF

    0.2600

    19.3

    +1.35%

  • CMSC

    0.1400

    20.48

    +0.68%

  • GSK

    0.2800

    50.29

    +0.56%

  • RELX

    0.0500

    34.27

    +0.15%

  • BTI

    -0.4300

    56.09

    -0.77%

  • RIO

    -1.4700

    95.79

    -1.53%

  • BCE

    -0.4000

    22.5

    -1.78%

  • AZN

    1.0400

    162.89

    +0.64%

  • NGG

    1.1000

    76.03

    +1.45%

  • BCC

    -0.6200

    75.31

    -0.82%

  • VOD

    -0.2200

    17.46

    -1.26%

  • JRI

    -0.1200

    11.5

    -1.04%

  • CMSD

    0.1785

    20.29

    +0.88%

  • BP

    -1.5800

    45.38

    -3.48%

Groundbreaking: 'Controlled' quakes triggered under Swiss Alps
Groundbreaking: 'Controlled' quakes triggered under Swiss Alps / Photo: © AFP

Groundbreaking: 'Controlled' quakes triggered under Swiss Alps

Researchers have made the ground shake in southern Switzerland, triggering thousands of tiny earthquakes in a monitored setting, as they seek to discover seismicity insights that could reduce risks.

Text size:

"It was a success!" said Domenico Giardini, one of the lead researchers on the project, as he inspected a crack in the rock wall lining a narrow tunnel far below the Swiss Alps.

Wearing a fluorescent orange jumpsuit and helmet, the geology professor at the Federal Institute of Technology in Zurich (ETH Zurich) switched on his headlight to get a better look.

"We had seismicity," he said excitedly, explaining that the goal was "to understand what happens at depth when the Earth moves".

Giardini was standing in the BedrettoLab carved out in the middle of a narrow 5.2-kilometre (3.2-mile) ventilation tunnel leading to the Furka railway tunnel.

Reached by specially adapted electric vehicles that slide through the dank darkness along concrete slabs laid over a muddy dirt floor, the deep underground laboratory is the ideal location to create and study earthquakes, Giardini said.

"It is perfect, because we have a kilometre and a half of mountain on top of us... and we can look very close at the faults, how they move, when they move, and we can make them move ourselves," he told AFP.

- 'Earthquake machine' -

Typically, researchers seeking to study earthquakes place sensors near known faults and wait.

In the BedrettoLab, by contrast, researchers filled a pre-selected fault with sensors and other instruments, and then sought to trigger movement.

For the experiment, dubbed Fault Activation and Earthquake Rupture (FEAR-2), dozens of scientists from across Europe spent four days in late April injecting 750 cubic metres of water into boreholes drilled into the tunnel's rock walls, aiming to provoke a magnitude-1 earthquake.

"We don't create a new fault... We only facilitate that it moves," Giardini said.

During the experiment, no people were in the tunnel for safety reasons, with everything managed remotely from the ETH Zurich lab in northern Switzerland.

When AFP visited the Zurich lab a day into the experiment, scientists were excitedly discussing the first signs of seismicity on the monitors.

"This is kind of pushing the frontier of science," said Ryan Schultz, a seismologist specialised in man-made earthquakes.

The excitement was interrupted by a sudden power cut in the tunnel that sent the scientists in Zurich scrambling for answers.

"We have our earthquake machine... Now we have to play with the parameters," said Frederic Massin, a French seismologist and technical expert, as he studied his screen for clues to what had caused the outage.

The glitch was short-lived and pumping soon resumed.

- 8,000 earthquakes -

In the end, some 8,000 small seismic events were induced along the targeted fault, but also, surprisingly, along other faults running perpendicular to the main one, sparking local magnitudes ranging from -5 to -0.14.

"We did not reach the target magnitude that we had set, but we reached just below," Giardini said.

That alone was a huge success, he insisted, pointing out that although there had been previous efforts to create tiny earthquakes in lab settings, it was "never at this scale and never this deep".

"It's simply never been tried."

The findings, he said, would help determine the best injection angles for reaching magnitude 1 at the BedrettoLab when researchers next give it a try in June.

Magnitudes on the Richter scale are measured logarithmically, with each whole number increase representing ten times more in measured amplitude.

Magnitudes below zero are still palpable. Anyone standing near the fault during the largest triggered quakes, at -0.14, would have felt an acceleration of "1.5 G", or 1.5 times the standard acceleration due to gravity, Giardini said.

They would have flown "in the air with a big jump", he explained.

- 'Safe' -

Nothing was felt at the surface, and Giardini stressed that by lubricating an existing fault, the team was adding only "about one percent of what is the natural risk".

The experiment, he insisted, was completely "safe".

Giardini explained the importance of the research, stressing: "If we master how to produce quakes of a certain size, then we know how not to produce them."

This was particularly important in connection with underground activities like excavation and extraction, he said, pointing for instance to quakes triggered by disposal of wastewater from the fracking industry in Texas.

He also highlighted South Korea's 5.4-magnitude Pohang quake in November 2017, triggered by water injections at the country's first experimental geothermal power plant.

"Without realising it, they started injecting and initiating induced seismicity on a large fault, (creating) a very serious quake," Giardini pointed out.

"We're not saying we should not go underground," he insisted.

"We need to learn how to do it more safely."

N.Patterson--TFWP