1 / 9

Rn-reduced air - electrostatic

Rn-reduced air - electrostatic. Rn-reduced air systems on KamLAND. Masayuki Koga RCNS Tohoku Univ. KamLAND site KamLAND have many experimental rooms and huge air volume. dome area : ~300m 3 purification area : ~1000m 3

trinh
Download Presentation

Rn-reduced air - electrostatic

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Rn-reduced air - electrostatic Rn-reduced air systems on KamLAND Masayuki Koga RCNS Tohoku Univ.

  2. KamLAND site KamLAND have many experimental rooms and huge air volume. dome area : ~300m3 purification area : ~1000m3 control room, Ge detector room, valves station , etc… Dorm area Control room KamLAND Valves station Ge detector hat Purification area for oils These areas should be keep low Rn concentration ! LRT2004 Masayuki Koga

  3. What kind of the Rn-reduced air system is better for large and sensitive detector? • Rn concentration in the mine air is too high • Spaces are limited in the mine • We need large volume Rn-reduced air supply system . • Access points to the detector should be very low Rn concentration (ex. chimney area on KamLAND) • Purge gas for inside of detector should be used noble gas (we use N2 gas) • Each rooms should be coated by the mine gard (a kind of polyurethane resin) • low cost ! => We cannot choice special method LRT2004 Masayuki Koga

  4. Environment Rn concentration in the kamioka mine Seasonal variation of Rn concentration in the mine Summer Summer : 2500 – 3500Bq/m3 Winter : 200 – 300Bq/m3 Winter @KamLAND site LRT2004 Masayuki Koga

  5. Rn-reduced air supply system ① Flesh air supply from outside of the mine 20-30Bq/m3 1000m3/h to KamLAND (30cmφ, 30m) expected Rn concentration <50Bq/m3 20cmφ polyethylene pipe LRT2004 Masayuki Koga

  6. Rn-reduced air supply system ②Rn-reduced air using a cooled activated charcoal Rn trap Radon trap dorm area cooler -45℃ 100m3/h Rn: 10-20mBq/m3 heat insulator N2 gas generator (used under oil filling) clean and dry air supply methyl alcohol 300 ℓ 3m3 cooled activated charcoal LRT2004 Masayuki Koga

  7. Flesh air from outside Rn-less N2 gas KamLAND Rn-reduced air and N2 gas systems Glove box clean room dorm area chimney clean room 100-200m3/h each Rn-reduced air from the cooled charcoal trap 30m3/h each preparation clean room for calibration 4l/min to chimney (2l/min to glove box) purification area Ge detector hat, etc… LRT2004 Masayuki Koga

  8. Achieved Rn concentration LRT2004 Masayuki Koga

  9. summary • We prepared 2 type Rn-reduced air systems • Achieved Rn concentration dorm area, purification area : 20-30 Bq/m3 clean room for chimney, glove box: 1-2 Bq/m3 • We need more progress against 7Be neutrino detection *Thanks for Super-Kamiokande group We borrowed sensitive Rn detectors LRT2004 Masayuki Koga

More Related