financially supported by the National Natural Science Foundation of China(Grant Nos.52079068,52090081);the State Key Laboratory of Hydroscience and Engineering(Grant No.2021-KY-04).
The flow field characteristics of the conduit-matrix system(CMS)have consistently been a primary area of interest to researchers.However,under the long-term influence of water flow,the hydraulic conductivity of the ma...
supported in part by the National Key R&D Program of China(No.2022YFA1602101);the National Natural Science Foundation of China(No.12035018);We would also like to acknowledge the enduring support for the CMS Phase-2 upgrade and the supporting computing infrastructure provided by the following funding agencies:FWO(Belgium);CNPq(Brazil),CAPES(Brazil);FAPERJ(Brazil);MES(Bulgaria);BNSF(Bulgaria);CERN;CAS(China);MoST(China);MINCIENCIAS(Colombia);CEA(France);CNRS/IN2P3(France);SRNSFG(Georgia)[YS-21-1798];DAE(India);DST(India);IPM(Iran);INFN(Italy);MSIP(Republic of Korea);NRF(Republic of Korea);BUAP(Mexico);CINVESTAV(Mexico);CONACYT(Mexico);LNS(Mexico);SEP(Mexico);UASLP-FAI(Mexico);PAEC(Pakistan);DOE(USA);NSF(USA).
Purpose Improved resistive plate chambers(iRPCs)will be installed in the challenging forward region of the compact muon solenoid(CMS)during its Phase-2 upgrade.The design target of iRPC time resolution is 1.5 ns.It wi...