This paper is divided into two parts. The first part presents recent measurements of ground motion in the LHC tunnel at CERN. From these measurements, an update of the ground motion model currently used in accelerator simulations is presented. It contains new features like a model of the lateral motion and the technical noise. In the second part, it is shown how this model can be used to evaluate the seismic response of a linear accelerator in the frequency domain. Then, the approach is validated numerically on a regular lattice, taking the dynamic behavior of the machine alignment stage and the mechanical stabilization of the quadrupoles into account
International audienceThe SPIRAL2 Accelerator at GANIL is a superconducting ion continuous wave LINA...
Recent earthquakes have demonstrated that the tunnels, which were once considered to be highly resis...
This paper presents a simplified model using coupled Bernoulli and shear beams supported by Winkler-...
This paper is divided into two parts. The first part presents recent measurements of ground motion i...
Seismic analysis of large tunnel systems using the continuum (Finite Element; FE) approach can be co...
Ground motion can cause significant beam emittance growth and orbit oscillations in large hadron col...
Earth surface movements, like earthquakes or industrial noise, can induce a degradation of particle ...
The High Luminosity LHC (HL-LHC) will require unprecedented orbit stability at the low beta collisio...
Ground motion and vibration can be a limiting factor in the performance of future linear colliders. ...
We present a ground motion model for the SLAC site. This model is based on recent ground motion stud...
To keep the two beams of linear colliders in collision, the beam offset with respect to each other s...
Optimization of the parameters of a future linear collider requires comprehensive models of ground m...
Ground motion can cause significant deterioration in the luminosity of a linear collider. Vibration ...
This report describes the simulation of the dynamic response of ground surface using PLAXIS 2016 sof...
Ground motion is a severe problem for many particle accelerators, since it excites beam oscillations...
International audienceThe SPIRAL2 Accelerator at GANIL is a superconducting ion continuous wave LINA...
Recent earthquakes have demonstrated that the tunnels, which were once considered to be highly resis...
This paper presents a simplified model using coupled Bernoulli and shear beams supported by Winkler-...
This paper is divided into two parts. The first part presents recent measurements of ground motion i...
Seismic analysis of large tunnel systems using the continuum (Finite Element; FE) approach can be co...
Ground motion can cause significant beam emittance growth and orbit oscillations in large hadron col...
Earth surface movements, like earthquakes or industrial noise, can induce a degradation of particle ...
The High Luminosity LHC (HL-LHC) will require unprecedented orbit stability at the low beta collisio...
Ground motion and vibration can be a limiting factor in the performance of future linear colliders. ...
We present a ground motion model for the SLAC site. This model is based on recent ground motion stud...
To keep the two beams of linear colliders in collision, the beam offset with respect to each other s...
Optimization of the parameters of a future linear collider requires comprehensive models of ground m...
Ground motion can cause significant deterioration in the luminosity of a linear collider. Vibration ...
This report describes the simulation of the dynamic response of ground surface using PLAXIS 2016 sof...
Ground motion is a severe problem for many particle accelerators, since it excites beam oscillations...
International audienceThe SPIRAL2 Accelerator at GANIL is a superconducting ion continuous wave LINA...
Recent earthquakes have demonstrated that the tunnels, which were once considered to be highly resis...
This paper presents a simplified model using coupled Bernoulli and shear beams supported by Winkler-...