P Temperature Buffer Test. Measurements of water content and density of the excavated buffer material. Lars-Erik Johannesson Clay Technology AB
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- Bennett Hampton
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1 P Tmpu Bu Ts Msums w sy h xv bu m Ls-E Jhss Cy Thgy AB Dmb 2010 vs Käbäshg AB wsh Nu Fu Ws Mgm C Bx 250, E hm Ph
2 IN Tä g: KB P P, T. ID Tmpu Bu Ts Msums w sy h xv bu m Ls-E Jhss Cy Thgy AB Dmb 2010 Kyws: F s, Bu, B, Tmpu, W, Dsy. Ths p s suy whh ws u KB. Th uss vwps ps h p hs h uh. KB my w m uss, bs u sus / xp ps. D KB s bs b hg ss. M hgs KB s bs w ssy su vs p. D vss my s b ps s suppms, vb A p vs hs um b w m
3 ummy TBT (Tmpu Bu Ts) s j pj bw KB/ANDA supp by ENEA (mg) DBE (sum), whh ms usg mg h hm-hymh bhv bus m swg y subm hgh mpus (v 100 C) ug h w su pss. Th s ws u h 420 m v Äspö HL 8 ms p 1.76 m m ps h, wh w hs (3 m g, 0.6 m m), suu by MX-80 b bu g pug p h wh 9 s. I ws s ug spg Th b u upp h ws mv ug h p Ob Dmb 2009 h bu u h w h ws mv ug Juy Ms Dug smg h bu, smps w whh yss w m. Ths p sbs h w wh h m h w h sy h smps. Ms h smps w m h bu by g m h upp su h s b b. Th s h m bu mxmum gh qu h g hgh h b bs (bu 500 mm). Th w h bu ws m by yg smp mpu 105 C 24 h h bu sy ws m by wghg smp bh h mmg p wh w sy. Th w, y sy, g su v h bu w h p. Th ps shw h ps h bu h up w h g su h bu v bw %. Lg v h y sy h bu ws s bsv. Fgu -1. Th u p h y sy h bu TBT. KB P
4 Cs 1 Iu 7 2 Exu Iu Th ps h smps Pp h smps Dm sy w h smps 11 3 Esm h sy ps h bu s 13 4 sus msu ss w h bu Msums bw h w h (b C1) Msums h v h w h (B 1 6) Msums bv h w h (b C2) Msums h v h upp h (B 7 12) Msums bv h upp h (b C3 C4) Cu ps msu sus 17 Appx 1 mps m s s 19 Appx 2 mps m s 21 Appx 3 mps m s 23 Appx 4 sus m msums m b C1 25 Appx 5 sus m msums m b 1 29 Appx 6 sus m msums m b 2 33 Appx 7 sus m msums m b 3 37 Appx 8 sus m msums m b 4 41 Appx 9 sus m msums m b 5 45 Appx 10 sus m msums m b 6 49 Appx 11 sus m msums m b C2 53 Appx 12 sus m msums m b 7 57 Appx 13 sus m msums m b 8 61 Appx 14 sus m msums m b 9 65 Appx 15 sus m msums m b Appx 16 sus m msums m b Appx 17 sus m msums m b Appx 18 sus m msums m b C3 81 Appx 19 sus m msums m b C4 85 Appx 20 Cu ps h msu w, sy g su 89 Appx 21 sus m msums s s sss 91 KB P
5 1 Iu TBT (Tmpu Bu Ts) s j pj bw KB/ANDA supp by ENEA (mg) DBE (sum), whh ms usg mg h hm-hymh bhv bus m swg y subm hgh mpus (v 100 C) ug h w su pss. Th msums m ug h wh s gv g sgh h psss bu h hm vu usg w m m h yss ps-mm h g mu smps v ug h smg. Th s ws u h 420 m v Äspö HL 8 ms p 1.76 m m ps h, wh w hs (3 m g, 0.6 m m), suu by MX-80 b bu g pug p h wh 9 s. I ws s ug spg Tw bu gms w vsg: h w h ws suu by b h usu wy, whs h upp h ws suu by g s. Th s hm p h b, s mp mp h vby. Th bu sss gh 16 b bs (s Fgu 1-1). Th ss w h wh 1,500 W pw m y 15 y 1,171, wh h pw ws s 1,600 W. Au y 1,700, h pw ws by sps s h w h 2,000 W u h upp h 1,000 W. Th hg ws m u y 2,300 Augus Th b u upp h ws mv ug h p Ob Dmb 2009 h bu u h w h ws mv ug Juy Mh Dug smg h bu, smps w yss pupss. Th w phss h yss h smps m h bu. 1. Th w h sy w m h Äspö H Lby jus h smps w m h bu, whh mmz h s yg sbu h w h smps. Abu 2,000 ms w sy w m h bu m. 2. M v vsgs h bu w b m Cy Thgy AB Lu, suh s m hyu uvy swg pssu, mg hgs. Ths ss qu mm pssg h smps w b p spy. Th s ys phs s sb hs p. KB P
6 C4 C3 B ps Msug s 7 (T, P, W) B Msug s 6 (T, W) Msug s 5 (P, U, mpg V+F) Tmpu hs, 3 vs x 3 + bm Ds: 10, 80, j v C2 g shp PEEK p Msug s 4 (T, P, W) Msug s 3 (T, W) Msug s 2 (P, U, mpg V) C1 j v 1 Msug s 1 (T, P, W) Cm p Fgu 1-1. hm wg h Tmpu Bu Ts. 8 KB P-12-05
7 2 Exu 2.1 Iu Ms h smps w by g m h upp su h s b b (Fgu 2-1). Th s h m bu mxmum gh qu h g hgh h b bs (bu 500 mm). Cs w u ss h b. Th s bw h ws bu. I v vppg, vy s w g w p s.th g ws m m h p h b wh g sg g (Fgu 2-1). mps s h hs h w w by sh g bg ps m h bs by h ( smps). A smps w s h s sss. Fgu 2-1. Th g g p p b C4. KB P
8 2.2 Th ps h smps A sysm h ps h ws sbsh wh h bu ws s s sss. Ths sysm ws s us smps v h h s. Th ps h smp s by h s Th hz s m h h ps h. 2. z-. Th s m h bm h ps h h ps h smp. 3. α-. Th hz wh h 0 s Fgu 2-2. Th g α ws m v h upp p h ps h. Th ms w us mg h α- h smps. Th uy h m s ppxmy 2. Th z- ws m wh s vg sum. Th uy hs msum s ppxmy 1 mm. Th - ws m by msug h s h s / h w h ps h. Th uy hs msum s ppxmy 5 mm. 2.3 Pp h smps Ms h smps w 4 m s s smps bu s g ss h bu w s h su. Th smps m h bu w sp up sm ps b mg h w sy. Th sp ws m wh b sw g h wg p: I w s smps w wh s 5 m ph msu m h p h b (, ), s Appx 1. Th sm ps w m h pus sux,.g. C2::785:I. I smps w wh s 2.5 m ph msu m h p h b ( ), s Appx 2. Th sm ps w m h pus sux,.g. C2::785:IA. I smps w wh s 5 m v phs msu m h p h b ( ), s Appx 2. Th sm ps w m h pus sux,.g. C2: :785:IV. Th ss h bs s h w h ps h w b u ps wh hss 1 m. Th sm ps w b m h ss m pus sux.g. 2:::I smps s h w h ps h 2::h:III smps s h h. Th sux umb s h ps h p h s. Th ps ss h su h spvy hv h ws umb (I). z α 90 0 Fgu 2-2. Th sysm us sbg h ps smps. 0 s h ws h h 180 s h ms h h. 10 KB P-12-05
9 2.4 Dm sy w h smps Ms h s mg h w h sy h bu ss w m mmy h smps w mmz h s yg h b. Th smps w sp su by Äspö wh sm ps w h m h w sy. Th subsmps w smpg g. Th s h smps w s h umum m pssb us h yss ss. Th wg qupm ws us h by: 1. A bsw swg u ps m h smps. 2. A ps b wh 0 2,000 g g msum su g. 3. Tw vs yg smps 105 C. Dm w. Th m h w ws m h wg wy: 1. Th b ws h wh wghs b h sg h msums. 2. A sm bg umum ws p h b h wgh (m b ) ws p. 3. Th smp ws p h bg h wgh smp s p (m b + m bu ). 4. Th wh h smp ws p v wh mpu 105 C 24 h. 5. A h yg h wgh h bg h h smp (m b + m s ) ws msu p. Th w h u subsmps ws m by yg smp mpu 105 C 24 h. Th mss w m h smp ws m g Equ 2-1: m w = m m (2-1) bu s h w (w) ws u g Equ 2-2. m w w = (2-2) ms Dm sy Th bu sy h smps ws m by wghg h smps bh mmg p wh w sy. Th m ws m s ws: 1. A p h ws wgh. 2. Th smp ws wgh hgg h h uh h b (m bu ). 3. Th smp ws h w h p wh h sy ρ p h wgh (m p ) ws. Th vum h smp (V bu ) h sy (ρ bu ) w u g Equs V bu = ( m m ) / ρ (2-3) m bu p p bu ρ bu = (2-4) Vbu Cu h pms Th y sy (ρ y ) h g su ( ) b u g Equs ρ y (2-5) bu = ρ ( 1+ w) KB P
10 w ρbu ρs / ρw = ρ (1 + w) ρ s bu F ug h g su h vus h sy h s ps ρ s = 2,780 g/m 3 h sy w ρ w = 1,000 g/m 3 us. Th v () b u g Equ 2-7. (2-6) ρs ρbu = ρ ρ bu w (2-7) 12 KB P-12-05
11 3 Esm h sy ps h bu s Th yps g b bs, g shp bs u h upp h, g shp bs u h w h s bs, w us h s h ps h. Th u m h b bs ws y sghy p v bw 1,630 1,6. Th g shp bs suug h upp h h y m 1,070 mm. Th g shp bs suug h w h w mp s s bs h wh m 630 mm ws u m h bs. Th u ms h s bs s u bv h hs (C1 C4) w mh vg m bu 1,580 mm. Th vg wgh, w (.. h w-s mss-), sy v h bs s Tb 3-1. Tb 3-1. Dm pms bs us TBT. B N. Wgh (g) W (%) Bu sy (g/m 3 ) Dg su V C1 2, , , , , , , , , , , , , , C2 2, , , , , , , , , , , , , , C3 2, , C4 2, , KB P
12 4 sus msu ss w h bu Msums sy w h 16 vsg bs w m 4 s (s 2.2). Th w sy h bu w m m h 2,000 pss h s p. m s mss wh m ug h hg h smps s h by, usg usb vus h m pms. I Tb 4.1 hs smps whh s w sv s gh wh h s m b h p uh vsg. I h wg ss h sus m h msums h sy sb g v ss; 1. Bw h w h (b C1). 2. Au h w h (b 1 6). 3. Abv h w h (b C2). 4. Au h upp h (b 7 12). 5. Abv h upp h (b C3 C4). Tb 4-1. mps whh s w sv ug h hg. mp N. N A 1: 575 1B Us m w Th p 2: 625 III Us m w Th p 2: u h Us m w sy Th p I:III 3: 475 V Us m w sy Th p 4: 375 Tw smps wh h sm us (375 mm) Th us smp s hg 475 mm 5::475 V Us m w Th p 5::775 III Us m w sy Th p 5::775 I Us m w sy Th p 5: u h Us m w sy Th p I:III 7::725 Us m w sy Th p 7::675 Us m w sy Th p 7:Äpv: I:IV Us m w Th p 9::70 Wg us Th us hg 7 9::60 Wg us Th us hg 600 mm 11:775 Tw smps wh h sm us (775 mm) Th us smp s hg 725 mm 12::575 Tw smps wh h sm us (575 mm) Th us smp s hg 775 mm C3::175 I A-B Tw smps wh h sm us Th p C3::475 IB Wg Th hg C3::375 IB Wg Th hg C3::525 IB Us m w sy Th s p C4:::V:III Us m w sy Th s p C4::175 Wg us Th us hg 675 mm C4::675 Wg us Th us hg 175 mm C4::625 Wg us Th us hg 725 mm C4::725 Wg us Th us hg 625 mm KB P
13 Th sus h vsg bs pv Appx Fuhm h w sy w m smps s sm h s sss. Ths s ps Appx Msums bw h w h (b C1) Th msu w, y sy, g su v b C1 shw Appx 4. Th sus p s u h s m h h ps h. Th s h bu p h sm gus. Th wg bsvs b m: Vy sm s h msu/u sus b s bw h u s. Th w h b hs s msug ps mp h vus. Th y sy h bu hs s mp h s. Ths s ms pu h bu s h s. Th g su s h s s 100%, wh h g su h p h b s bu 95%. 4.2 Msums h v h w h (B 1 6) Th msu w, y sy, g su v h bs 1 6 shw Appx Th sus p s u h s m h h ps h. Th s h bu p h sm gus. Th wg bsvs b m: Vy sm s h msu/u sus b s bw h u s wh xp h s b 6 wh s shwg w sy hgh w mp h h h s. Ths u b h squ pssg h pw bs h h hugh us m s h b g h vs wh pw b mp p, s h. Th w h bs hs s msug ps mp h vus. Th y sy h bu hs s mp h s xp h p h bu s h h wh sm s sy b bsv. A xp hs mgh b h h hs b shg h bu s h h u h hg. Th g su s h s s 100%, wh h g su h p h b s bu 95%. Th ws g su b bsv bu 70 mm m h su h h. 4.3 Msums bv h w h (b C2) Th msu w, y sy, g su v b C2 shw Appx 11. Th sus p s u h s m h h ps h. Th s h bu p h sm gus. Th wg bsvs b m: Vy sm s h msu/u sus b s bw h u s. Th w h b hs s msug ps mp h vus. Th y sy h bu hs s mp h s. Ths s ms pu h bu s h s. Th g su s h s s 100%, wh h g su h p h b s bu 94%. 16 KB P-12-05
14 4.4 Msums h v h upp h (B 7 12) Th msu w, y sy, g su v h bs 7 12 shw Appx Th sus p s u h s m h h ps h. Th s h bu p h sm gus. Th wg bsvs b m: Vy sm s h msu/u sus b s bw h u s. Th w h bs hs s msug ps mp h vus. Th y sy h bu hs s mp h s. Th g su s s 100% ps h bu. 4.5 Msums bv h upp h (b C3 C4) Th msu w, y sy, g su v h bs C3 C4 shw Appx Th sus p s u h s m h h ps h. Th s h bu p h sm gus. Th wg bsvs b m: Vy sm s h msu/u sus b s bw h u s. Th w h b hs s msug ps mp h vus. Th y sy h bu hs s mp h s. Ths s ms pu h bu s u s wh ps. Th g su s h su s bu 100% bh bs wh h ps h bs hv g su bu 97% 92%, b C3 C4, spvy. 4.6 Cu ps msu sus Cu ps h msu u vbs w, y sy, g su v w m usg p pgm. h w up sms b x symm, ws pssb us h m m h smps p hm y s u h us h ph gg h g. Ths yps ps shw Appx 20. KB P
15 Appx 1 mps m s s vn vs D gu Ch : Dsy w /5 m. O v. 50 Ι 40 Tws w B Dsy W Tws h Im Dsg by Quy T/Nm, sg, m, ms Ch by Cy Thgy AB I , Lu T: , Fx: Appv by- F m A N. / T T mpg TBT D E h KB P
16 Appx 2 mps m s vn vs D gu Ch : Dsy w /2.5 m. O v. 50 I 40 Tws w B Dsy Dsy IA W IB W Tws h Im Dsg by T Quy T/Nm, sg, m, ms Ch by T Cy Thgy AB I , Lu T: , Fx: Appv by- F m TBT A N. / D mpg E h KB P
17 Appx 3 mps m s vn vs D gu Ch : Dsy w /5 m. Fv vs Ι Tws w ΙΙ B ΙΙΙ Dsy W IV V Tws h Im Dsg by T Quy T/Nm, sg, m, ms Ch by T Cy Thgy AB I , Lu T: , Fx: Appv by- F m TBT A N. / D mpg E h KB P
18 Appx 4 sus m msums m b C1 W (-) I s B C B C1 Dy Dsy (g/m 3 ) I s KB P
19 1.00 Dg u (-) I s B C V (-) I s B C KB P-12-05
20 0.45 W (-) I s B B C1 C1 D Dy Dsy (g/m 3 ) I s B C1 D KB P
21 1.00 Dg u I s B C1 D V (-) I s B C1 D KB P-12-05
22 Appx 5 sus m msums m b I s B 1 W (-) Dy Dsy (g/m 3 ) B 1 I s 1200 KB P
23 1.00 Dg u (-) I s B V (-) I s B KB P-12-05
24 0.45 W (-) I s B 1 D Dy Dsy (g/m 3 ) B 1 D I s 1200 KB P
25 1.00 Dg u (-) I s B 1 D V (-) I s B 1 D 0.50 KB P-12-05
26 Appx 6 sus m msums m b W (-) I s B Dy Dsy (g/m 3 ) B 2 I s 1200 KB P
27 1.00 Dg u (-) I s B V (-) I s B KB P-12-05
28 0.45 W (-) I s B 2 D Dy Dsy (g/m 3 ) B 2 D I s 1200 KB P
29 1.00 Dg u (-) I s B 2 D V (-) I s B 2 D KB P-12-05
30 Appx 7 sus m msums m b W (-) I s B Dy Dsy (g/m 3 ) B 3 I s 1200 KB P
31 1.00 Dg u (-) B 3 I s V (-) B 3 I s KB P-12-05
32 0.45 W (-) I s B 3 D Dy Dsy (g/m 3 ) B 3 D I s 1200 KB P
33 1.00 Dg u (-) B 3 D I s V (-) B 3 D I s KB P-12-05
34 Appx 8 sus m msums m b I s B 4 W (-) Dy Dsy (g/m 3 ) B 4 I s 1200 KB P
35 1.00 Dg u (-) B 4 I s V (-) I s B KB P-12-05
36 0.45 W (-) I s B 4 D Dy Dsy (g/m 3 ) I s B 4 D 1200 KB P
37 1.00 Dg u (-) I s B 4 D V (-) I s B 4 D KB P-12-05
38 Appx 9 sus m msums m b I s B 5 W (-) Dy Dsy (g/m 3 ) B 5 I s 1200 KB P
39 1.00 Dg u (-) B 5 I s V (-) I s B KB P-12-05
40 0.45 W (-) I s B 5 D Dy Dsy (g/m 3 ) I s B 5 D 1200 KB P
41 1.00 Dg u (-) I s B 5 D V (-) I s B 5 D KB P-12-05
42 Appx 10 sus m msums m b W (-) I s B Dy Dsy (g/m 3 ) B 6 I s 1200 KB P
43 1.00 Dg u I s B V (-) I s B KB P-12-05
44 0.45 W (-) I s B 6 D Dy Dsy (g/m 3 ) I s B 6 D 1200 KB P
45 1.00 Dg u (-) I s B 6 D V (-) I s B 6 D KB P-12-05
46 Appx 11 sus m msums m b C I s B C2 W (-) Dy Dsy (g/m 3 ) I s B C KB P
47 1.00 Dg u (-) I s B C V (-) I s B C KB P-12-05
48 0.45 W (-) I s B C2 D Dy Dsy (g/m 3 ) I s B C2 D KB P
49 1.00 Dg u (-) I s B C2 D V (-) I s B C2 D KB P-12-05
50 Appx 12 sus m msums m b W (-) sh I s B Dy Dsy (g/m 3 ) sh I s B KB P
51 1.00 Dg u (-) sh B 7 I s 1.30 V (-) sh B 7 I s KB P-12-05
52 0.45 W (-) sh I s B 7 D Dy Dsy (g/m 3 ) sh B 7 D I s 1200 KB P
53 1.00 Dg u (-) sh I s B 7 D 0.75 V (-) sh I s B 7 D KB P-12-05
54 Appx 13 sus m msums m b 8 W (-) sh I s B Dy Dsy (g/m 3 ) sh I s B KB P
55 1.00 Dg u (-) sh I s B V (-) sh B 8 I s KB P-12-05
56 0.45 W (-) sh I s B 8 D 0.15 Dy Dsy (g/m 3 ) sh I s B 8 D KB P
57 1.00 Dg su (-) sh I s B 8 D 0.75 V (-) sh I s B 8 D KB P-12-05
58 Appx 14 sus m msums m b W (-) sh I s B Dy Dsy (g/m 3 ) sh I s B KB P
59 1.00 Dg u (-) sh I s B V (-) sh B 9 I s KB P-12-05
60 0.45 W (-) sh I s B 9 D 0.15 Dy Dsy (g/m 3 ) sh I s B 9 D KB P
61 1.00 Dg u (-) sh I s B 9 D V (-) sh I s B 9 D KB P-12-05
62 Appx 15 sus m msums m b W (-) sh I s B Dy sy (g/m 3 ) sh I s B KB P
63 1.00 Dg u (-) I s sh B V (-) sh B 10 I s KB P-12-05
64 0.45 W (-) sh I s B 10 D 0.15 Dy Dsy (g/m 3 ) sh I s B 10 D KB P
65 1.00 Dg u (-) sh I s B 10 D V (-) sh I s B 10 D KB P-12-05
66 Appx 16 sus m msums m b W (-) sh I s B Dy Dsy (g/m 3 ) sh B 11 I s 1200 KB P
67 1.00 Dg u (-) sh I s B V (-) sh I s B KB P-12-05
68 0.45 W (-) sh I s B 11 D 0.15 Dy Dsy (g/m 3 ) sh I s B 11 D KB P
69 1.00 Dg u (-) sh I s B 11 D V (-) sh I s B 11 D KB P-12-05
70 Appx 17 sus m msums m b B 12 W (-) sh I s P s B 12 Dy Dsy (g/m 3 ) sh I s P s 1200 KB P
71 1.00 Dg u (-) sh I s P s B B 12 V (-) sh I s P s KB P-12-05
72 W (-) sh I s B 12 D P s B 12 D Dy Dsy (g/m 3 ) sh I s P s 1200 KB P
73 1.00 Dg u (-) sh B 12 D I s P s 1.30 V (-) sh I s B 12 D P s KB P-12-05
74 Appx 18 sus m msums m b C B C3 W (-) I s P s Dy Dsy (g/m 3 ) P s 1300 I s B C KB P
75 Dg u (-) 0.85 I s B C3 P s V (-) I s B C3 P s KB P-12-05
76 W (-) I s B C3 D P s Dy Dsy (g/m 3 ) I s B C3 D P s KB P
77 Dg su (-) I s B C3 D P s V (-) I s B C3 D P s KB P-12-05
78 Appx 19 sus m msums m b C B C W (-) I s P s Dy Dsy (g/m 3 ) I s B C4 P s KB P
79 Dg u 0.85 I s B C4 P s V (-) I s B C4 P s KB P-12-05
80 0.45 W (-) I s B C4 D P s Dy Dsy (g/m 3 ) I s B C4 D P s KB P
81 Dg u (-) I s B C4 D P s V (-) I s B C4 D P s KB P-12-05
82 Appx 20 Cu ps h msu w, sy g su KB P
83 90 KB P-12-05
84 Appx 21 sus m msums s s sss mp N. D W Bu sy (g/m 3 ) Dg s. V Dy sy (g/m 3 ) C3:WB: , ,568 C3:WB: , ,571 C3:WB: , ,570 C3:WB: , ,549 C3:WB: , ,506 10:WB , ,540 10:WB , ,465 10:WB , ,494 10:WB , ,557 10:WB , ,578 10:WB , ,583 9:PB , ,599 9:PB , ,649 9:PB , ,402 9:PB , ,557 9:PB , ,613 9:PB , ,609 C9:PB , ,592 9:PB , ,395 9:PB , ,614 9:VB , ,605 9:VB , ,543 9:Ppp , ,465 C2:PB: , ,579 C2:PB: , ,589 C2:PB: , ,626 4:WB , ,587 4:WB , ,636 3:PB , ,660 3:PB , ,680 3:PB , ,608 3:PB , ,629 3:PB , ,634 C1:WB , ,427 C1:PB , ,611 C1:PB , ,608 KB P
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