Design optimization of Helium cooling systems for Indian LLCB TBM

Slides:



Advertisements
Similar presentations
Frame design Status TB-SWG May 2005 Presented by K. Ioki Prepared by M. Morimoto VV and Blanket Division, ITER Garching ITER.
Advertisements

Properties of cast resin transformers
Thermo Fluid Design Analysis of TBM cooling schemes M. Narula with A. Ying, R. Hunt, S. Park ITER-TBM Meeting UCLA Feb 14-15, 2007.
PROJECT 100. PROJECT 100 DESIGNED TO BE: Cost Effective Compact Strong Simple Light Reliable.
TAC - Intelligent Infrastructure and Energy Efficiency.
FNSF Blanket Testing Mission and Strategy Summary of previous workshops 1 Conclusions Derived Primarily from Previous FNST Workshop, August 12-14, 2008.
First Wall Thermal Hydraulics Analysis El-Sayed Mogahed Fusion Technology Institute The University of Wisconsin With input from S. Malang, M. Sawan, I.
EUROTRANS - Helium cooled EFIT Probabilistic assessment of different DHR designs Karlsruhe, November Sophie EHSTER, Laurent VINCON.
US ITER TBM DCLL TBM Design, Analysis and Development C. Wong, M. Dagher, S. Smolentsev and S. Malang FNS/TBM Meeting UCLA, September 19-20, 2007.
Inspection Cell Aim:- –To provide a conceptual layout design that allows the successful transfer of packages from the vault to the cell and throughout.
Spectrometer Solenoid Fabrication & Testing Update Steve Virostek Lawrence Berkeley National Lab MICE CM24 at RAL June 1, 2009.
US ITER TBM Meeting Idaho Fall, Idaho, Aug M Dagher P Fogarty 1.TBM/ITER General Arrangement 2.Equatorial Test port Configuration 3.Test Port.
Status of the ARIES-CS Power Core Configuration and Maintenance Presented by X.R. Wang Contributors: S. Malang, A.R. Raffray ARIES Meeting PPPL, NJ Sept.
The effect of the orientations of pebble bed in Indian HCSB Module Paritosh Chaudhuri Institute for Plasma Research Gandhinagar, INDIA CBBI-16, Sept.
Power Extraction Research Using a Full Fusion Nuclear Environment G. L. Yoder, Jr. Y. K. M. Peng Oak Ridge National Laboratory Oak Ridge, TN Presentation.
Overview of LLCB TBM for ITER Paritosh Chaudhuri Institute for Plasma Research Gandhinagar, INDIA CBBI-16, Sept. 2011, Portland, USA.
1 Recent Progress in Helium-Cooled Ceramic Breeder (HCCB) Blanket Module R&D and Design Analysis Ying, Alice With contributions from M. Narula, H. Zhang,
23 Jan 2007 LASA Cryogenics Global Group 1 ILC Cryomodule piping L. Tavian for the cryogenics global group.
21/01/02 - ECAL Cooling - Arnaud Hormiere ST/CV 1 Development of ECAL COOLING PLANT Application to a Super Module.
Lead Technology Task 6.2 Materials for mechanical pump for HLM reactors M. Tarantino, I. Di Piazza, P. Gaggini Work Package Meeting Karlsruhe, November.
HCCB TBM Mechanical Design R. Hunt, A. Ying, M. Abdou Fusion Science & Technology Center University of California Los Angeles May 11, 2006 Presented by.
| © 2006 Lenovo ThinkPad Battery Safety
ITER test plan for the solid breeder TBM Presented by P. Calderoni March 3, 2004 UCLA.
1 Parametric Thermal-Hydraulic Analysis of TBM Primary Helium Loop Greg Sviatoslavsky Fusion Technology Institute, University of Wisconsin, Madison, WI.
Zoning Hydronic Systems. Zone Control Divides the Space to be Heated 1.Each with its own heating needs and control systems 2.There are several reasons.
PSB dump: proposal of a new design EN – STI technical meeting on Booster dumps Friday 11 May 2012 BE Auditorium Prevessin Alba SARRIÓ MARTÍNEZ.
NCSX VACUUM VESSEL HEATING/COOLING PL Goranson Preliminary Results February 17, 2006 MDL Testing of Coolant Tracing NCSX.
Base Breeding Blanket and Testing Strategy In FNF Conclusions Derived from Previous FNST Workshop, August 12-14, 2008.
Background information of Party(EU)’s R&D on TBM and breeding blankets Compiled and Presented by Alice Ying TBM Costing Kickoff Meeting INL August 10-12,
Hydraulics is defined as the study of fluid behavior, at rest and in motion Properly designed piping with sound hydraulics can: - Greatly reduce maintenance.
56 MHz SRF Cavity Thermal Analysis and Vacuum Chamber Strength C. Pai
Development of tritium breeder monitoring for Lead-Lithium cooled ceramic breeder (LLCB) module of ITER presented V.K. Kapyshev CBBI-16 Portland, Oregon,
Bryant Mueller M.S. Student Mechanical Engineering Room: 1335 ERB Hometown: Two Rivers, WI.
DCLL ½ port Test Blanket Module thermal-hydraulic analysis Presented by P. Calderoni March 3, 2004 UCLA.
1 Discussion with Drs. Kwon and Cho UCLA-NFRC Collaboration Mohamed Abdou March 27, 2006.
ITER TBM MEETING March UCLA DCLL Module Design Prepared by M. Dagher UCLA P. Fogarty ORNL.
Date 2007/Sept./12-14 EDR kick-off-meeting Global Design Effort 1 Cryomodule Interface definition N. Ohuchi.
Magnet R&D for Large Volume Magnetization A.V. Zlobin Fermilab Fifth IDS-NF Plenary Meeting 8-10 April 2010 at Fermilab.
Unit 2 Lesson 3 Technology Systems. Big IDEA Big Idea: There are nine “Core Technologies” that are fundamental to all technology systems that must be.
Update on the ESS monolith design Rikard Linander Monolith and Handling Group ESS Target Division TAC 10, Lund, Nov 5,
SuperB Integration SuperB Experimental hall. Related topics of Slac D&D activities.
Contract: EIE/07/069/SI Duration: October 2007 – March 2010Version: July 7, 2009 Calculation of the integrated energy performance of buildings.
Cryogenics for SuperB IR Magnets J. G. Weisend II SLAC National Accelerator Lab.
Development of Cryo-Module Test Stand (CMTS) for Fermi Lab (R.L.Suthar, Head,CDM, BARC) Cryo-Module Test stand (CMTS) is a very sophisticated equipment.
SuperB Experimental hall General considerations on the Babar experimental area Preliminary space requirements hall proposal. A floor plan. Specification.
Thermal-hydraulic analysis of unit cell for solid breeder TBM
US Participation in the
Overview of ITER TBM Program
Date of download: 10/2/2017 Copyright © ASME. All rights reserved.
ARAC/H/F Air-cooled water chillers, free-cooling chillers and heat pumps Range: kW.
Some General Guidelines for the US TBM Costing
DCLL TBM Reference Design
DESIGN AND IMPLEMENTATION OF THERMO-ELECTRIC COOLER IN WATER DISPENSER
Thermal 3.
Date of download: 12/22/2017 Copyright © ASME. All rights reserved.
TBM thermal modelling status
update on UT cooling system
Installation plan for LAB modules
Mathew C. Wright October 2016
TBM Mockup testing at SNL
Steam / condensate system Heat recovery – cleaning circuit
DCLL TBM Design Status, Current and future activities
Cryogenic System Commissioning Summary Report
VLT Meeting, Washington DC, August 25, 2005
Forms of Energy Unit 3 Part 2 Vocabulary.
Preliminary Pipe Stress Analysis of High Pressure, High Temperature Experimental Helium Cooling System (EHCL) Corresponding Author: Aditya Kumar verma.
DCLL TBM Design Status FNST Meeting, August 12-14, 2008, UCLA
TBM Design Meeting UCLA
ENERGY TRANSFORMATIONS Thermal Energy & Heat (P )
University of California, San Diego
Presentation transcript:

Design optimization of Helium cooling systems for Indian LLCB TBM In this work, the design optimization of helium cooling system that is meant for LLCB TBM is carried out. In the conceptual design, two independent helium circuits (FWHCS and LLHCS) were considered for extracting heat from the TBM FW and the Pb-Li system respectively. Whereas in the optimized design, a single helium cooling system is proposed for cooling the TBM FW and the lead-lithium system. With the optimized configuration : The number of components and associated piping and valves located in TCWS Vault annex are reduced significantly ─ almost half of what was needed for the two helium systems (FWHCS and LLHCS) and thus it is convenient to install and operate in the limited space of TCWS VA. The thermal hydraulic analysis is performed using RELAP/MOD4.0 and the analysis results shows the satisfactory performance of the system in ITER normal operating conditions. Further with the optimized flow rate the TBM FW thermo hydraulic performance is also checked and it is found that the reduced flow rate is sufficient for cooling the FW channels and the temperature and stresses in the structure are within acceptable limit. In this study a promising configuration is proposed that meets the cooling requirements of LLCB TBM and it also occupies very less footprint. This combined system is easy to operate, reliable and safe. Moreover it is very cost effective and makes the development & installation of helium cooling system of LLCB TBS convenient in the limited space of TCWS vault annex.