31 0 13MB
M-30
POB DWG No.:EM-50
Rev.11.1a
PUREBALLAST EQUIPMENT SPECIFICATION CUSTOMER HULL No/Name FLAG CLASS SOCIETY Type S/N Set (per ship) Flow rate
Maximum Power Consumption Power Source Standard Connections Connection Size
The Hakodate Dock Co.,Ltd. 891, 892 Marshall NK PureBallast 3.1 600 m3/h PB-01456, PB-01457 2 Max 600 m3/h Min@Ballast 125 m3/h Min@Deballast 60 m3/h Max (w/ Stripping eductor) 200 m3/h䚷[per UVR] Min (w/ Stripping eductor) 60 m3/h䚷[per UVR] 63 kw / set *Include 1kw for control (required), additionally 23kw (max) is required for other options.
440 V / 3 Phase / 60 Hz Flange connection JIS 250A (UVR600) UVR inlet/outlet valves (V201-19,20) Main valves (V201-3,9,32) 300A 200A Control valve (V201-8) Cooling water valve (V403-35) 50A Backflush valve (V309-1 ; flange size) DIN80 Flow transmitter (FIT201-1) 300A Bypass valve (V212-31 ; option) Yes 300A Sampling device (option) Yes 2 pcs Filter / flange direction Filtrex (same side) 50 m (10m each ; if not specified) Length of W211* Filter unit, CIP module Munsell 7.5 BG7/2 Painting color Working Pressure (UVR) 0.6 Mpa (Max) Pressure Drop UVR 䍺0.02 Mpa See section 6.4 and 6.5 in the drawing Filter (per unit) 0.015 - 0.05 Mpa Temperature Sea water 0 - 40 ºC LDC cooling water 0 - 38 ºC Ambient 0 - 55 ºC Air Pressure 0.55 - 0.8 Mpa Remote Operation None Options Air filter (1) 1 pcs (2) pcs (3) pcs (4) pcs (5) pcs Asbestos isn't contained in this product(s) incl. spare parts & supplies. Note : Common alarm from BWTS will be informed with buzzer on console in ECR, and operation panel also can inform alarm with buzzer and indication on the panel.
2.2
System overview
2.2
2
Introduction
System overview
Below, the key components of PureBallast are shown. The example shows a system with one 1000 m3/h UV reactor, but the components are the same in all systems.
2 System overview Filtrex
Example of layout with 1 UV reactor. 1. 2. 3. 4. 5. 6. 7. 8. 9. 10.
Control cabinet Lamp drive cabinet (LDC) CIP (cleaning-in-place) module UV reactor Ballast water outlet Control valve Flow meter Sampling point Filter Ballast water inlet
Not in illustration: Check valve before UV reactor, System bypass valve and Pressure monitoring device
10
Book No.Rev 2017–11–06
9 Control system integration 7KLV VHFWLRQ FRQWDLQV LQIRUPDWLRQ UHOHYDQW IRU SODQQLQJ LQWHJUDWLRQ IRU FRQWUROOLQJ 3XUH%DOODVW DQG VLJQDOV IRU FRPPXQLFDWLRQ EHWZHHQ 3XUH%DOODVW DQG H[WHUQDO FRPSRQHQWV ZKLFK DUH QRW SDUW RI $OID /DYDO¶V VFRSH RI VXSSO\ 7KH IROORZLQJ RSWLRQDO LQWHJUDWLRQ LV SRVVLEOH
5HPRWH FRQWURO SDQHO
5HPRWH LQWHUIDFH
3RZHU PDQDJHPHQW
([WHUQDO FRPSRQHQW VLJQDOV
*36
Mandatory and optional integration ([WHUQDO E\SDVV YDOYHV LI XVHG PXVW EH LQWHJUDWHG WR EH ORJJHG E\ 3XUH%DOODVW HYHQW ORJ $OO RWKHU LQWHUIDFHV DUH RSWLRQDO 1RWH WKDW LPSOHPHQWHG RSWLRQV DUH WHVWHG GXULQJ FRPPLVVLRQLQJ ZKHUHIRUH WKH\ VKDOO EH UHDG\ E\ WKDW WLPH
9.1
Remote control panels
,I LQFOXGHG LQ RUGHU RU UHPRWH FRQWURO SDQHOV 5&3 FDQ EH PRXQWHG DW DQ RSWLRQDO ORFDWLRQ IRU H[DPSOH WKH EULGJH FDUJR FRQWURO URRP RU EDFN RIILFH 7KH UHPRWH FRQWURO SDQHO LV GHOLYHUHG ZLWK D PRXQWLQJ SODWH IRU LQVWDOODWLRQV LQ ZDOO ZRUNWRS HWF ,W FDQ DOVR EH RUGHUHG ZLWK DQ ,3 SURWHFWLYH EDFN FRYHU IRU LQVWDOODWLRQ RQ D VWDQG RU VXFK ,QVWDOODWLRQ SUHUHTXLVLWHV
5HPRWH FRQWURO SDQHO LV PRXQWHG DFFRUGLQJ WR DFFRUGLQJ WR GUDZLQJ Remote control panel / Dimension drawing RQ SDJH 1RWH WKH FOHDUDQFH DUHD
0RXQWHG DW DQ RSWLRQDO ORFDWLRQ
%RRN 1R5HY ±±
'UDZLQJV
'LPHQVLRQ GUDZLQJV LQFOXGLQJ WHFKQLFDO GDWD
13.3.11 Backflush valve V309-1 1RWH ,I EDFNIOXVK SXPS 3± RSWLRQDO LV LQVWDOOHG WKLV YDOYH LV QRW XVHG
%RRN 1R5HY ±±
'UDZLQJV
(OHFWULFDO GUDZLQJV
$
%
&
'
(
)
3UHY SDJH
6RXUFHIURP
0RGLILFDWLRQ
7DUJHWWR
[
8
&&
;
1DPH
&&
'DWH
6(780%1%
6(78)(1
6+
6+,36