Changes between Initial Version and Version 1 of Research/DesignStudy/WPMGroup/Meetings/2022/06-28


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Timestamp:
Jun 28, 2022, 5:14:57 PM (2 years ago)
Author:
cwhyte1
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  • Research/DesignStudy/WPMGroup/Meetings/2022/06-28

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     1= LhARA Project WPM Meeting 28^th^ June 2022 WP2; 14:00 GMT =
     2
     3**ZOOM:** https://imperial-ac-uk.zoom.us/j/95000734107?pwd=eUo1bXpvako5KzhzSlFkTXFKdjFGZz09&from=addon
     4
     5Meeting ID: 950 0073 4107
     6Passcode: p+Uu8$
     7
     8LhARA offer to ITRF
     9
     10WP6
     11 * University Retained Objectives: 1,3,4,7,10,11,17 & 18
     12 * Daresbury Retained Objectives: 8,12,13,14,15,16,17 & 18
     13 * Deprecated Objectives - standard - 2,9
     14 * Deprecated Objecives - resource limited 5,6.
     15
     16WP3
     17 * All objectives retained - cost pressures due to inflation/costing module changes dominate risks.
     18
     19WP2
     20 * 50% reduction in consumables budget - consequent reduction in experimental flexibility
     21 * Student in Belfast lost in first 2 years - delay to targetry work package - risk of non-delivery within 5yr timetable.
     22 * ~10% Reduction in laser access funds - increased risk of non-delivery to timetable all experimental objectives.
     23
     24WP5
     25 * M1: Design LhARA automated cell dish handling and environmental system via user-community consultation. De-risk key end station components though experimental measurements at Birmingham.
     26 * M2: Assess current beam monitoring technology and identify the required R&D for LhARA beams
     27 * M3: Develop facility at Birmingham capable of delivering kGy/s
     28
     29WP4
     30 * Objective 1. Development of Geant4 simulation of the forward model:
     31  1. Development of the forward simulation consisting of a simulation in Geant4 of the beam impinging on an instrumented water phantom (the SmartPhantom) and the deposition of energy resolved in four dimensions (three space and one time);
     32  2. Exploitation of the forward simulation to optimise the performance of the SmartPhantom and to provide the power-density spectrum required as input to the acoustic model.
     33 * Objective 2: Development of k-wave forward acoustic model:
     34  1. Development of a k-wave-based simulation of the acoustic wave generated by by the energy deposited by the beam. The simulation will be used to quantify the magnitude of the pressure wave and to estimate the expected acoustic-sensor response;
     35  2. Exploitation of the forward acoustic model to optimise the specifications for the acoustic-sensor array.
     36
     37WP1
     38 * LhARA project management
     39 * Reporting to ITRF
     40 * Outreach
     41  1. User community w. WP5
     42  2. Patient engagement - Maggies - CRUK
     43  3. Website
     44  4. Recruit 'LhARA Impact' person
     45
     46