Status of Phase II Energy Loss Studies 1. FLUKA with “simple” CERN-provided input file modeling ~40m around primary collimators used for all SLAC studies.

Slides:



Advertisements
Similar presentations
Preliminary studies for T2 primary target for the NA61 fragmentation beam run 11 th October 2010 – NA61 Collaboration Meeting M. Calviani on behalf of.
Advertisements

Wire scanners MDW chicane energy collimator 3 MPS collimators in this region end of linac Damage Simulation in MPS Collimators L. Keller Apr. 9, 2006.
SixTrack: Minor bug fixes and pencil beam R. Bruce.
M. Ruspa - FP420 meeting, DESY 18/05/06 1 G4 simulation: where are we? Marta Ruspa on behalf of Alexander Zokhin FP420 Collaboration Meeting DESY 18 th.
PROBLEM: Radiation Dose Rate in IR2 When IR1 is Operating (and Vice Versa) Muon Dose Rate > 1 mRem/hr for 0.1% Collimated Halo.
GRD - Collimation Simulation with SIXTRACK - MIB WG - October 2005 LHC COLLIMATION SYSTEM STUDIES USING SIXTRACK Ralph Assmann, Stefano Redaelli, Guillaume.
SLAC Phase II Secondary Collimators 6 October 2005 LARP Collaboration Meeting-St. Charles, IL Tom Markiewicz SLAC BNL - FNAL- LBNL - SLAC US LHC Accelerator.
Beam LARP Rotatable Collimator Mechanical Engineering Discussion 03 October 2008 Phase II CERN ME Video Mtg. Tom Markiewicz/SLAC BNL - FNAL- LBNL - SLAC.
Design of the Photon Collimators for the ILC Positron Helical Undulator Adriana Bungau The University of Manchester Positron Source Meeting, July 2008.
PS Booster Studies with High Intensity Beams Magdalena Kowalska supervised by Elena Benedetto Space Charge Collaboration Meeting May 2014.
New Progress of the Nonlinear Collimation System for A. Faus-Golfe J. Resta López D. Schulte F. Zimmermann.
LHC Phase II Collimator Compact jaw simulations New FLUKA => ANSYS mapping scheme New 136mm x 950mm jaw –60cm primary collimator –Helical cooling channel.
The SLAC Phase II Collimator Program 15 June 2005 CERN Team Visit Tom Markiewicz SLAC BNL - FNAL- LBNL - SLAC US LHC Accelerator Research Program.
Concept of a Collimation System with Enhanced Operational Stability and Performance.
Tertiary Collimators in IP1/IP5 LARP Collaboration Meeting Pheasant Run, St. Charles, IL October 5-6, 2005 Fermilab LARP Collaboration Nikolai Mokhov,
Status of FLUKA Simulations for Collimation BLM Thresholds 6 th BLM Threshold Working Group 10/02/2015 E.Skordis On behalf of the FLUKA team Sixtrack input.
DS Heat Load Scenarios in Collision Points and Cleaning Insertions. Prepared by F. Cerutti, A.Lechner and G. Steele on behalf of the FLUKA team (EN-STI)
RA CPM 21/2/03 1 Present Approach and Status R. Assmann for the LHC Collimation Team Problem: Al/Cu system would not resist irregular dumps (pre-trigger.
Open Midplane Dipole (OMD) Design for Dipole First Layout R. Gupta (BNL), N. Mokhov (FANL) bnl - fnal- lbnl - slac US LHC Accelerator Research Program.
Collimator and beamline heating External Review of the LHC Collimation Project CERN Wed 30/6/2004.
Design Review of the 1 st Rotatable Collimator (RC1) Prototype Project Overview 15 December 2005 Tom Markiewicz/SLAC BNL - FNAL- LBNL - SLAC US LHC Accelerator.
1 LARP Collimator Engineering E. Doyle 2/3/05. 2 Review: SS Thermal Simulation 150mm OD 25mm wall Simply supported Heat: 1hr beam life, FLUKA results,
Simulation comparisons to BLM data E.Skordis On behalf of the FLUKA team Tracking for Collimation Workshop 30/10/2015 E. Skordis1.
Heat Deposition Pre-Evaluation In the context of the new cryo-collimator and 11-T dipole projects we present a review of the power deposition studies on.
IHEP/Protvino for FP420 R&D Collaboration 1 IHEP/Protvino Group: Igor Azhgirey Igor Bayshev Igor Kurochkin + one post-graduate student Tools:
Case study: Energy deposition in superconducting magnets in IR7 AMT Workshop A.Ferrari, M.Magistris, M.Santana, V.Vlachoudis CERN Fri 4/3/2005.
Collimation in the CERN PS Booster Penny Jackson: John Adams Institute/University of Oxford/CERN This is a feasibility study.
LARP Coll. Video-conf. May 12, '05Phase II Collimator Engineering - E. Doyle1/20 Adapting the NLC Consumable Collimator to LHC Phase II Secondary Collimation.
Schematics for simplified energy deposition study in IR7 R. Assmann.
Phase II Collimators for LHC Upgrade at SLAC - Material Issues E. Doyle 03 Sept /25 Workshop on Materials for Collimators CERN 2007/09/03 Phase.
NM4SixTrack Implementation of new composite materials for HL-LHC collimator upgrades in SixTrack “Tracking for SixTrack” workshop – CERN, R.
The HiLumi LHC Design Study (a sub-system of HL-LHC) is co-funded by the European Commission within the Framework Programme 7 Capacities Specific Programme,
The LARP Collimation Program 1 June 2005 LARP DOE Review-Fermilab Tom Markiewicz SLAC BNL - FNAL- LBNL - SLAC US LHC Accelerator Research Program.
Backgrounds at FP420 Henri Kowalski DESY 18 th of May 2006.
Recent Energy Deposition Simulations TCSM-A6L7 L. Keller LARP Video Mtg. 02 Oct
Overview of FLUKA Energy Deposition and Design Studies for the LHC Overview of FLUKA Energy Deposition and Design Studies for the LHC M. Brugger, F. Cerutti,
accident deformation – doyle 1/12 Phase II Collimator - Accident Deformation Simulation December 11, 2006.
Halo Collimation of Protons and Heavy Ions in SIS-100.
ENERGY DEPOSITION AND TAS DIAMETER
R.W. Assmann, V. Boccone, F. Cerutti, M. Huhtinen, A. Mereghetti
LARP Collimation – Engineering & Analysis
Lattice for Collimation
Tracking simulations of protons quench test
Collimation Concept for Beam Halo Losses in SIS 100
Energy deposition studies on magnets. Aim. First applications
Problem: A kicker failure can deposit 9 x 1011 protons on any metallic
Simulations of collimation losses at RHIC
Progress in Collimation study
Valloni A. Mereghetti, E. Quaranta, H. Rafique, J. Molson, R. Bruce, S. Redaelli Comparison between different composite material implementations in Merlin.
Energy deposition studies in IR7 for HL-LHC
Beam collimation for SPPC
Recommendations of 12/16/05 review committee & SLAC response
LARP Collimation – Engineering & Analysis
23 April 2012 Tom Markiewicz/SLAC
¼ meshed models for Omega3P calculations
Russian Research Center “ Kurchatov Institute”
accident deformation – doyle (rev1) 1/8
LHC Collimation Requirements
Optic design and performance evaluation for SPPC collimation systems
Status of energy deposition studies IR7
Discussion of High Energy Proton Losses in Arc 7
Efficiency of Two-Stage Collimation System
US LHC Accelerator Research Program
Micro Status Report of SLAC Phase II Plan Tom Markiewicz SLAC
RC1 Prototype Conceptual Design Review 15 December, 2005
Possible Methods for Reducing the Trapped Mode Effect in the SLAC Rotatable Collimator for the LHC Phase II Upgrade Liling Xiao 1.
FLUKA Energy deposition simulations for quench tests
Collimator Efficiency Study
US LHC Accelerator Research Program
accident deformation – doyle 1/8
Presentation transcript:

Status of Phase II Energy Loss Studies 1. FLUKA with “simple” CERN-provided input file modeling ~40m around primary collimators used for all SLAC studies. Let “pencil beam” halo interact in primary vertical carbon collimator and study energy deposition in rectangular 25x80mm jaws at 10 sigma. –Assume 80% inelastic int. in primary, 2.5% in each jaw of secondary –Vary jaw material & provide energy deposition grid on jaw to ANSYS 2.5mm x 8mm x 5cm rectangular grid, mapped onto cylinder –Understand secondary particle content, energy & spatial distributions 2.Use CERN provided (V6_5_lowb lattice) ray files of halo interactions in H, V, and Skew primaries with secondary jaws at 7 sigma and re- calculate the energy deposition grids. 3. Study accident case: –Transverse extent of damaged region 4. Longer term goal of upgrading to current CERN input structure with much richer description of all devices in tunnel. L. Keller LHC Collab. Mtg., June, 2005

Beam 1 Beam 2 Primary collimators First group of secondary collimators 40 m dipoles IR-7 Z (cm) X (cm)

Axial Distribution of Halo Interactions in the Second Primary Collimator (TCPH) Carbon

Axial Position of Halo Interaction Point vs. Distance from Primary Collimator Edge Why a sharp peak ≈ 1µ from the edge? Beam Jaw edge

Energy Spectra of Particles Hitting TCSH1 Keller: All Particles-7 

Spatial Distribution of Particles from TCPV at face of TCSH1 when Jaws at 7 sigma Upper right jaw Lower left jaw

Concentrating E_dep in the Front Part of the Jaws (Use CERN-provided ray files) Carbon pre-radiator Tungsten with carbon pre-radiator

Primary Collimator (source) TCSM.B6.L7 Jaws at 7 sigma TCSM.B6.L7 Jaws at 10 sigma Copper Al_2219 Copper Al_2219 TCP.D6.L7 (TCPV) TCP.C6.L7 (TCPH) TCP.B6.L7 (TCPS) Power Deposition on First Secondary Collimator in 12 Min. Lifetime (kW per jaw) Notes: 1. Collimator data, ray files, and loss maps from LHC Collimator web page, Feb Must add contribution from direct hits on secondary jaws.

2.5 cm Missteered beam (9E11 protons) on secondary Jaw What is the damage area in a missteering accident? Copper Jaw Cross section at shower max. Copper Fracture temp. of copper is about 200 deg C 3D ANSYS model, E. Doyle

Accident Case – jaw adjacent to the one being directly hit, ≈ 4 mm gap. This jaw may be damaged too. 840 deg C Fracture at 200deg C Copper 3D ANSYS model, E. Doyle

Another accident Case – Beam hits the horizontal primary collimator The first jaw in the downbeam secondary collimator (40m away) may be damaged. Copper 250 ˚C 3D ANSYS model, E. Doyle

Discussion Items for June 2005 Collaboration Meeting A. IR7 FLUKA Model: 1. Steps to run at SLAC? (Major progress 16 June) 2. Modify for cylindrical secondary collimators? 3. Energy loss distribution with all copper secondaries except TCSM.A6L7 is carbon. B.Distribution of Accidental Hits in IR7? – Ralph C.How much simulation has been done w/ the 60 cm primary collimators? 1. Inefficiency? 2. Hit distribution on all secondaries? 3. Energy distribution in IR7 and arc?