Submersible Pump in Discharge Tube. Amacan P. 50 Hz. Type Series Booklet

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1 Amacan P 50 Hz Type Series Booklet

2 Legal information/copyright Type Series Booklet Amacan P All rights reserved. The contents provided herein must neither be distributed, copied, reproduced, edited or processed for any other purpose, nor otherwise transmitted, published or made available to a third party without the manufacturer's express written consent. Subject to technical modification without prior notice. KSB Aktiengesellschaft, Frankenthal

3 Contents Contents Water: Water Transport Amacan P... Main applications... Fluids handled... Operating data... Designation... Design details... Materials...5 Coating and preservation...5 Product benefits... 5 Acceptance tests / Warranties... 5 Selection information... 5 Programme overview / selection tables... Table of fluids handled... Overview of product features... 8 Related documents... 9 Data to be indicated in the purchase order... Material variants Selection chart...1 Amacan P, n = 15 / 85 / 5 / 75 / 90 / 150 rpm... 1 Characteristic curves...13 n = 150 rpm n = 90 rpm... 1 n = 75 rpm... n = 5 rpm... 8 n = 85 rpm n = 15 rpm... 3 Dimensions UAG/XAG motors (500- to ) UTG-/XTG motors (0- to 100-0)... 0 Installation types...3 Scope of supply... Accessories... 5 Flow-straightening vane and intake chamber...5 Support rope and turnbuckle in the discharge tube... 7 Discharge tube cover with cable gland...8 General assembly drawings

4 Water: Water Transport Amacan P Main applications Irrigation and drainage pumping stations Stormwater pumping stations Raw and clean water pumps in waterworks and waste water treatment plants Cooling water pumps in power stations and in industry Industrial water supply Water pollution and flood control Aquaculture Fluids handled Waste water Sludge Surface water Stormwater Grey water Seawater Brackish water Operating data Operating properties Characteristic Value Flow rate Q Up to 00 l/s Head H Up to 1 m Motor rating P Up to kw Fluid t Up to +0 C temperature Enclosure IP 8 to IEC 003-5; explosion protection to ATEX II G T3 available Designation Example: Amacan PA 0-50 / 1 UTG1 Key to the designation Code Description Amacan Type series P Impeller type, e.g. P = propeller A Pressure class A B Number of vanes 0 Nominal diameter of the discharge tube [mm] 50 Nominal impeller diameter [mm] 1 Motor size Number of motor poles -pole -pole 8 8-pole -pole 1 1-pole 1 1-pole UT Motor version ( Page 8) UA Without explosion protection, standard (sizes ) XA Explosion protection to ATEX (sizes ) UT Without explosion protection, standard (sizes ) XT Explosion protection to ATEX (sizes ) G1 Material variant ( Page 11) G1 Grey cast iron, standard material variant G3 Grey cast iron with Zn anodes, shaft made of stainless steel Design details Design Drive Fully floodable submersible pump in discharge tube (submersible motor pump) Not self-priming Close-coupled design Single-stage Vertical installation Three-phase asynchronous squirrel-cage motor Motors integrated in explosion-proof pump sets are supplied in Ex d IIB type of protection. Shaft seal Two bi-directional mechanical seals in tandem arrangement, with liquid reservoir Leakage chamber Impeller type Axial propeller in ECB design Bearings Grease-packed rolling element bearings Amacan P

5 Materials Overview of materials Description Material Pump bowl EN-GJL-0 (JL 30) Motor housing EN-GJL-50 (JL 0) Shaft 1.01 / Impeller (duplex stainless steel) Casing wear ring Stainless steel Screws, bolts and nuts Stainless steel Coating and preservation Paint Surface treatment: SA 1/ (SIS ) AN 185 Primer: primer coat on unfinished casting Top coat: environmentally-friendly KSB standard coating (RAL 500) Special coating Available on request (extra charge and a longer delivery period apply). Product benefits The pump s own weight ensures self-centring seating in the discharge tube, and an O-ring seals it; quick to install or remove. The slim motor minimises discharge tube flow losses. High reliability thanks to bearing temperature monitoring, vibration sensor, thermal motor protection, leakage sensors in the motor and connection space, and leakage monitoring of the mechanical seal system. Low-vibration hydraulic system; inlet ribs and optimised bellmouth for vortex-free inflow. Absolutely water-tight resin-sealed cable entries prevent any water from entering the motor even in the event of a damaged cable. Acceptance tests / Warranties Functional test Every pump undergoes functional testing to KSB standard ZN 555. Operating data is guaranteed to DIN EN ISO 990 / / B. Acceptance tests Acceptance tests to ISO/DIN or comparable standards are available against a surcharge. Warranties Quality is assured by means of an audited and certified quality assurance system to DIN EN ISO Selection information Information for pump selection The guaranteed point of submersible pumps in discharge tubes is measured at a head 0.5 m above the motor (DIN 11). The documented characteristic curves refer to this data. This must be taken into account when calculating system losses. The indicated heads and performance data apply to pumped fluids with a density ρ = 1 kg/dm 3 and a kinematic viscosity ν of up to mm /s. The pump input power must be matched to the density of the fluid handled: P req = ρ fluid [kg/dm 3 ] x P docu The operating point with the largest pump input power is decisive for the operating range of the motor. To compensate the unavoidable tolerances of the characteristic curves of system, pump and motor we recommend selecting a motor size which provides sufficient power reserves. Recommended minimum reserves 1) Required pump input power Motor power reserve [kw] Mains operation With frequency inverter < 30 % 15 % > 30 5 % % Intake chamber Determine the minimum water level t 1min (diagram in general arrangement drawing): The minimum water level t 1min is the water level required in the pump's suction chamber to ensure: that there is a sufficient liquid cover above the hydraulic system (propeller) (shown in diagram depending on pump size) that the pump does not draw in air-entraining vortices (shown in diagram depending on flow rate) that there is no cavitation in the hydraulic system (check against the NPSH required value indicated in the technical literature). The following conditions must be met: Head (H) NPSH available > NPSH required + safety allowance NPSH available =.0 + (t 1 - t 3 - h 7 /) Safety allowance: up to Q opt 0.5 m larger than Q opt 1.0 m The total pump head is composed as follows: H = H geo + Δ H V H geo (static head) Without discharge elbow Difference between suctionside water level and overflow edge With discharge elbow Difference between suction-side and discharge-side water level Δ H V (losses in the system) Starting 0.5 m downstream of the pump: e.g. pipe friction, elbow, swing check valve, etc. Losses by inlet, riser and elbow Losses are caused by the inlet, riser and elbow (or free discharge). 1) If larger reserves are stipulated by local regulations or are required to compensate for uncertain factors in system calculations, these larger reserves must be provided. Amacan P 5

6 Losses in the riser up to the indicated reference level (0.5 m above the motor) are taken into account in the documented characteristic curves. Inlet and elbow losses are system losses and must be taken into account for selection. For information on structural requirements, pump installation and pump sump design please refer to the KSB know-how brochure "Planning information: Amacan submersible pumps in discharge tubes" Programme overview / selection tables Table of fluids handled The table below for your guidance is based on KSB's longstanding experience. The data are standard values and are not to be considered as generally binding recommendations. More detailed advice is available from our specialist department in Halle. Make use of our laboratory's wealth of experience when selecting materials. Selection aid for material variants and fluid temperature per fluid Fluid handled ) Max. permissible fluid temperature [ C] Material variants Casing wear ring with a groove for flushing 3) Screen ) Comments, further recommendations Waste water Industrial, corrosive, non-abrasive, slightly acidic; ph value 0 G1 -component high solid epoxy finish coat (RAL 500) 50 µm required Industrial, corrosive, non-abrasive, with lacquer/paint/ varnish suspensions 0 G1 - Lacquer/paint/varnish suspension = free of solvents Industrial, corrosive, non-abrasive fluids containing 0 G1 - faeces Industrial, corrosive, non-abrasive fluids not 0 G1 - containing faeces Municipal, treated 0 G1 - Suspended solids, water/sand mixture 0 G1 - Up to 0 mg/l Sludge 0 G1 - Up to % dry solids content Water, seawater and brackish water 5 5) G3 - Use of anodes ) and -component high solid epoxy finish coat (RAL 500) 50 µm required Water, cooling water 0 G1 - - Water, surface water River water 0 G1 - No details specified 0 G1 - Lake water, fresh water 0 G1 - Lake water, dam water 0 G1 - - Water, stormwater With strainer 0 G1 - - Without strainer 0 G1 - Water, raw water 0 G1 - - Water, contaminated water ) Fluids to be pumped which are not listed in this table usually require higher-grade materials. Contact KSB. 3) Using a casing wear ring with a groove for flushing will reduce the efficiency by % to 3 %. ) See table "Openings of screen bars". 5) For t > 5 C contact KSB (stainless steel variant). ) Efficiency reduced by % to 3 %; anode to be checked every to 1 months Amacan P

7 Fluid handled ) Max. permissible fluid temperature [ C] Material variants Casing wear ring with a groove for flushing 3) Slightly contaminated water 0 G1 - - Mixed water, with strainer 0 G1 - - Mixed water, without strainer 0 G1 - Mixed water containing faeces 0 G1 - Mixed water not containing faeces 0 G1 - Water, clean water 0 G1 - - Screen ) Comments, further recommendations Key to the symbols Symbol Description Required Optional - Not required Openings of screen bars Size Required space between screen bars [mm] ) Fluids to be pumped which are not listed in this table usually require higher-grade materials. Contact KSB. 3) Using a casing wear ring with a groove for flushing will reduce the efficiency by % to 3 %. ) See table "Openings of screen bars". Amacan P 7

8 Overview of product features Material variants G1, G3 Feature Motor version UAG/XAG UTG/XTG Motor size -pole -pole pole pole pole pole Explosion protection Version U... Not explosion-proof Version X... ATEX II G T3 Motor Starting method DOL DOL or star-delta (90 V only DOL) DOL Voltage 00 V 7) 00 V 8) Cooling Cooled by surrounding fluid Immersion depth 1 m max. Power cable Type See table "Overview of power cables" Length m 9) Cable entry Absolutely watertight Sealing elements Elastomer seals Nitrile butadiene rubber NBR ) Shaft seal Bellows-type mechanical seal 11) Mechanical seal with covered spring Monitoring equipment Winding temperature PTC thermistor Bearing temperature Pump end PT0 Drive end Pt0 Pump end PT0 1) Pump end PT0 Drive end PT0 Leakage in the motor space Electrode monitoring the winding for leakage Electrode monitoring the winding and connection space for leakage Mechanical seal leakage Float switch in leakage area Vibration sensor ) Casing wear ring Standard design 1) Coating Environmentally-friendly KSB standard coating, colour RAL ) Installation types ( Page 3) Maximum temperature of fluid handled Material variant G1 0 C Material variant G3 5 C Tests/inspections Hydraulic system KSB standard (ZN 555) 1) General KSB standard (ZN 555) 1) 7) Optional: 500 V, 90 V 8) Optional: 90 V 9) Optional: up to 50 m ) Optional: Viton = fluorocarbon rubber FPM 11) On P mechanical seal with covered spring 1) Optional: drive end PT0 13) Optional: internal vibration sensor 1) Optional: casing wear ring with groove for flushing (PA and PA are not fitted with a casing wear ring; as an option they can only be fitted with a casing wear ring with groove for flushing) 15) Optional: 50 µm 1) Optionally to ISO 990/1//A 8 Amacan P

9 Overview of power cables Feature S1BN8-F rubber-sheathed cable S07RCN8-F rubber-sheathed cable Type Standard Optional Rated voltage 00 V 0 V EMC screening - Insulation material EPR 17) EPR 17) Max. continuous temperature of insulation 90 C 90 C For permanent immersion in waste water to DIN VDE 08-1/HD.1 Related documents General Arrangement Drawings Motor Data Booklet Planning Information ) EPR = ethylene propylene rubber Amacan P 9

10 Data to be indicated in the purchase order Designation of the pump Flow rate Q, head H total Head H total Type and temperature of the fluid pumped Voltage, frequency, starting method, cable length Quantity and language of operating manuals Required accessories For discharge tubes indicate all required elevations and the type of installation. For flow-straightening vanes indicate the type of installation and whether the design is with or without suction umbrella. For a support rope indicate dimension "L", the number of additional lifting rings (depending on the lifting height of the hoisting tackle) as well as the elevations and type of installation. 1 Suspension arrangement attached to cover (or cross beam for BU/BG) Lifting ring (standard, included in the scope of supply) 3 Optional (intermediate) lifting ring(s) Lower edge of discharge tube = lower edge of pump The support rope is an accessory and can be supplied with additional lifting rings and a support spacer ( Page 7) as an option. The standard design is supplied without intermediate lifting ring(s). Always define dimension "L" when ordering a support rope to allow the correct length to be determined. The lifting height of the crane must be taken into account when ordering a support rope. This determines the number of lifting rings required for installing the pump in or removing it from the discharge tube. 1 3 Amacan P

11 Material variants Overview of materials Part No. Description G1 G3 18) (seawater variant) 11 Pump bowl EN-GJL-0 (JL 30) 138 Bellmouth EN-GJL-0 (JL 30) 30 Impeller / Bearing housing / bearing bracket EN-GJL-50 (JL 0) Bearing cover EN-GJL-50 (JL 0) 1 O-ring NBR 19) (Viton-FPM) ) 33 Mechanical seal SiC /SiC (bellows NBR 19),Viton - FPM ) ) (pump end) Mechanical seal SiC /SiC (bellows NBR 19), Viton - FPM ) ) (drive end) 50 Casing wear ring Stainless steel 571 Bail EN-GJS (JS 30)/S35JRG 1) 811 Motor housing EN-GJL-50 (JL 0) 81 Motor housing cover EN-GJL-50 (JL 0) ) 818 Shaft (rotor) Cable gland - Gland housing EN-GJL-50 (JL 0) Various Screws/bolts Stainless steel 99-1 Anode - Zn Other materials on request. Notes on material Duplex stainless steel (1.517 or technically equivalent material) This type of cast steel is resistant to cavitation, has excellent strength values and is used for high circumferential speeds. An excellent resistance to pitting corrosion makes ferriticaustenitic stainless steel a popular choice for pumping acidic waste water with a high chloride content as well as seawater and brackish water. Thanks to its good chemical resistance, e.g. also against waste water containing phosphorous and sulphuric acid, this material is used in a wide range of applications in the chemical industry and and process engineering. Pumps made of duplex stainless steel have a very long service life, even when handling brines, chemical waste water (ph 1 1), grey water and landfill leachate. Comparison of materials EN ASTM EN-GJL-0 (JL 30) A 8 Class 30 B EN-GJL-50 (JL 0) A 8 Class 0 B A 890 CD MCu 1.01 A 7 Type A 7 Type 31 NBR NBR FPM FKM EN-GJS (JS 30) A 53: S35JR A B 18) Pump set with cathodic protection (anodes to be checked every to 1 months) and top coat of 50 µm 19) Nitrile rubber (Perbunan) ) FPM fluorocarbon rubber variant available as an option against a surcharge 1) EN-GJS (JS 30) for motors: 5, , 0 1 ; all other motors: S35JR ) For P100-0 in S35JR Amacan P 11

12 Selection chart Amacan P, n = 15 / 85 / 5 / 75 / 90 / 150 rpm 00 Q [US.gpm] Q [IM.gpm] A 500- pol 1 B 0/ pol B 00-0 B 1500/100-0 B pol 1 pol pol B pol1 1 B 0- A 00-0 pol 1 A 0/ pol A 10-8 A 1500/100-0 pol 1 pol pol A 0-1 A pol pol A pol 1 1 A 0-8 pol 1 A pol 1 A pol pol 1 A 1500/100-0 A pol G H [m] A 500- pol 1 G H [ft] Q [m /h] Q [l/s] Standard range Special range on request 1 Amacan P

13 Characteristic curves n = 150 rpm Amacan PA 500-, n = 150 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] H [m] Q [IM.gpm] Qmin η [%] H [ft] Q [m³/h] Q [l/s] [m] [ft] P [kw] P [hp] Q [m³/h] K0358s/ Free passage Rated power P and mass moment of inertia J 3) Size Rated power P [kw] Mass moment of inertia J UAG XAG [kgm ] PA 500- / 0,1 PA 500- / ,1 PA 500- / 5 5 0,19 3) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 13

14 Amacan PA , n = 150 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] 8 H [m] Q [IM.gpm] Qmin η [%] H [ft] Q [m³/h] Q [l/s] [m] 50 [ft] 0 P [kw] 0 0 P [hp] Q [m³/h] K0308s/ Free passage Rated power P and mass moment of inertia J ) Size Rated power P [kw] Mass moment of inertia J UAG XAG [kgm ] PA / 5 5 0,0 PA / , PA / , PA / ,50 PA / ,51 ) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 1 Amacan P

15 Amacan PB , n = 150 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] Qmin η [%] 8.0 H [ft] 30 H [m] Q [m³/h] Q [l/s] [ft] [m] P [hp] P [kw] Q [m³/h] K03s/ Free passage Rated power P and mass moment of inertia J 5) Size Rated power P [kw] Mass moment of inertia J UAG XAG [kgm ] PB / , PB / , PB / ,50 PB / ,51 5) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 15

16 n = 90 rpm Amacan PA 500-, n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] H [m] Q [IM.gpm] Qmin Q [m³/h] Q [l/s] η [%] H [ft] NPSH [ft] R NPSH [m] R 8 P [kw] P [hp] Q [m³/h] K0359s/ Free passage Rated power P and mass moment of inertia J ) Size Rated power P [kw] Mass moment of inertia J UAG XAG [kgm ] PA 500- / 7,5 7,5 0,17 ) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 1 Amacan P

17 Amacan PA , n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] 3 H [m] 1 0 NPSH [m] R Q [IM.gpm] Q [m³/h] Q [l/s] Qmin η [%] H [ft] NPSH [ft] R 5 15 P [kw] P [hp] Q [m³/h] K0309s/1 Free passage Rated power P and mass moment of inertia J 7) Size Rated power P [kw] Mass moment of inertia J UAG XAG [kgm ] PA / 1 1 0,38 PA / ,1 PA / ,7 7) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 17

18 Amacan PA 0-, n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] 8 H [m] Q [IM.gpm] Qmin η [%] H [ft] Q [m³/h] Q [l/s] [ft] [m] P [kw] P [hp] Q [m³/h] K03s/1 Free passage Rated power P and mass moment of inertia J 8) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 0- / ,73 PA 0- / ,8 PA 0- / 1,95 PA 0- / 0 0 0,08 8) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 18 Amacan P

19 Amacan PA 0-50, n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] 8 H [m] Q [IM.gpm] Qmin η [%] 35 H [ft] Q [m³/h] Q [l/s] [ft] [m] P [kw] P [hp] Q [m³/h] K031s/1 Free passage Rated power P and mass moment of inertia J 9) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 0-50 / 3,5 PA 0-50 / ,38 PA 0-50 / ,5 9) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 19

20 Amacan PA , n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] 8 H [m] Q [IM.gpm] Qmin η [%] H [ft] Q [m³/h] Q [l/s] [ft] [m] P [kw] P [hp] Q [m³/h] K33s/0 Free passage Rated power P and mass moment of inertia J 30) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA / ,53 PA / 1 1 1, 30) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P

21 Amacan PB 0-, n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] 8 H [m] Q [IM.gpm] Qmin Q [m³/h] η [%] H [ft] Q [l/s] [ft] [m] P [kw] 0 18 P [hp] Q [m³/h] K03s/1 Free passage Rated power P and mass moment of inertia J 31) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PB 0- / ,8 PB 0- / 1,95 PB 0- / 0 0 0,08 PB 0- / , 31) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 1

22 Amacan PB 0-50, n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] Qmin η [%] 0 H [ft] H [m] Q [m³/h] [m] 00 0 Q [l/s] [ft] 1 10 P [kw] 0 10 P [hp] Q [m³/h] K03s/1 Free passage Rated power P and mass moment of inertia J 3) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PB 0-50 / ,5 3) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P

23 Amacan PB , n = 90 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] 1 8 H [m] Qmin Q [m³/h] η [%] H [ft] [m] 00 0 Q [l/s] [ft] 0 P [kw] P [hp] Q [m³/h] K33s/0 Free passage Rated power P and mass moment of inertia J 33) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PB / ,53 PB / 1 1 1, PB / , 33) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 3

24 n = 75 rpm Amacan PA 0-, n = 75 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] 15 3 H [m] Qmin η [%] H [ft] Q [m³/h] Q [l/s] [m] [ft] P [kw] P [hp] Q [m³/h] K0311s/1 Free passage Rated power P and mass moment of inertia J 3) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 0- / ,78 PA 0- / ,78 3) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P

25 Amacan PA 0-50, n = 75 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] Qmin η [%] H [ft] H [m] Q [m³/h] Q [l/s] [ft] [m] P [hp] P [kw] Q [m³/h] K0313s/1 Free passage Rated power P and mass moment of inertia J 35) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 0-50 / ,09 PA 0-50 / ,5 PA 0-50 / 8 3,5 PA 0-50 / ,5 35) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 5

26 Amacan PA 00-0, n = 75 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] 8 H [m] Qmin η [%] H [ft] Q [m³/h] [m] Q [l/s] [ft] P [hp] P [kw] Q [m³/h] K031s/ Free passage Rated power P and mass moment of inertia J 3) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 00-0 / ,0 PA 00-0 / , PA 00-0 / ,3 PA 00-0 / , PA 00-0 / ,9 3) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P

27 Amacan PB 00-0, n = 75 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] 1 8 H [m] Qmin Q [m³/h] η [%] H [ft] [m] Q [l/s] [ft] P [hp] P [kw] Q [m³/h] K038s/1 Free passage Rated power P and mass moment of inertia J 37) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PB 00-0 / , PB 00-0 / ,3 PB 00-0 / , PB 00-0 / ,9 37) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 7

28 n = 5 rpm Amacan PA 00-0, n = 5 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] Qmin H [m] η [%] H [ft] Q [m³/h] Q [l/s] [ft] [m] P [hp] P [kw] Q [m³/h] K0315s/ Free passage Rated power P and mass moment of inertia J 38) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 00-0 / 0 0 0,8 PA 00-0 / , PA 00-0 / ,5 38) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 8 Amacan P

29 Amacan PA 10-8, n = 5 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] 8 Qmin η [%] 30 H [ft] H [m] Q [m³/h] Q [l/s] [m] 0 [ft] P [kw] 0 P [hp] Q [m³/h] K031s/ Free passage Rated power P and mass moment of inertia J 39) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 10-8 / ,9 PA 10-8 / ,1 PA 10-8 / 3 3 5,0 PA 10-8 / ,8 PA 10-8 / 50,5 39) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 9

30 Amacan PB 10-8, n = 5 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] 8 H [m] Qmin η [%] H [ft] Q [m³/h] Q [l/s] [ft] [m] 5 00 P [kw] P [hp] Q [m³/h] K03s/ Free passage Rated power P and mass moment of inertia J 0) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PB 10-8 / ,1 PB 10-8 / 3 3 5,0 PB 10-8 / ,8 PB 10-8 / 50,5 PB 10-8 / 53,1 0) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 30 Amacan P

31 n = 85 rpm Amacan PA 10-8, n = 85 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] H [m] Qmin η [%].5 H [ft] Q [m³/h] Q [l/s] [m] [ft] P [kw] P [hp] Q [m³/h] K0317s/ Free passage Rated power P and mass moment of inertia J 1) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA 10-8 / , PA 10-8 / ,1 PA 10-8 / ,0 1) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 31

32 Amacan PA , n = 85 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] Qmin η [%] H [ft] H [m] Q [m³/h] Q [l/s] [ft] [m] P [kw] P [hp] Q [m³/h] K0318s/ Free passage Rated power P and mass moment of inertia J ) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA / ,0 PA / ,7 PA / ,3 PA / 1 1,0 ) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 3 Amacan P

33 Amacan PA 100-0, n = 85 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] Qmin 8.5 η [%] H [ft] H [m] Q [m³/h] Q [l/s] [ft] [m] P [kw] P [hp] Q [m³/h] K3s/0 Free passage Rated power P and mass moment of inertia J 3) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA / ,8 PA / , PA / ,1 PA / 1-13, 3) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 33

34 Amacan PB , n = 85 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] 1 8 H [m] Q [IM.gpm] Qmin η [%] H [ft] Q [m³/h] Q [l/s] [ft] [m] P [hp] P [kw] Q [m³/h] K037s/ Free passage Rated power P and mass moment of inertia J ) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PB / ,3 PB / 1 1,0 ) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 3 Amacan P

35 Amacan PB 100-0, n = 85 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] 1 8 H [m] Qmin η [%] H [ft] Q [m³/h] [m] Q [l/s] [ft] P [kw] P [hp] Q [m³/h] K39s/0 Free passage Rated power P and mass moment of inertia J 5) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PB / ,8 PB / , PB / ,1 PB / 1-13, PB / 1-10,1 5) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 35

36 n = 15 rpm Amacan PA , n = 15 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] H [m] Q [IM.gpm] Qmin η [%] 8.1 H [ft] 0 1 NPSH [m] R Q [m³/h] Q [l/s] [ft] P [kw] 0 P [hp] Q [m³/h] K0319s/1 Free passage Rated power P and mass moment of inertia J ) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA / 1 95,7 PA / 1 98,3 PA / ,0 ) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. 3 Amacan P

37 Amacan PA 100-0, n = 15 rpm Characteristic curves in acc. with ISO 990 / / B. n = speed Q [US.gpm] Q [IM.gpm] H [m] 8 Qmin η [%] H [ft] 0 1 NPSH [m] R Q [m³/h] Q [l/s] [ft] P [kw] 0 P [hp] Q [m³/h] K37s/0 Free passage Rated power P and mass moment of inertia J 7) Size Rated power P [kw] Mass moment of inertia J UTG XTG [kgm ] PA / ,3 PA / 1-1,8 7) These values are valid for a density = 1 kg/dm³ and a kinematic viscosity of up to mm²/s. Amacan P 37

38 Dimensions UAG/XAG motors (500- to ) l d 1 h X l 1 d 5 X d h h1 5 h 3 d d 3 Dimensions of the pump set Dimensions of the pump set [mm] Pump size Motor size Numb er of poles d 1 d d 3 d d 5 h 1 h h 3 h l 1 l [kg] 8) A A A A A A A A A A A A B B B B ) Pump set with -metre power cable (00 V) and 5-metre rope 38 Amacan P

39 s 1 D 5 h 7 d 8 d 7 A d 9 Dimensions of the discharge tube A Suction umbrella; option for reducing the minimum water level Dimensions of the discharge tube [mm] Pump size Motor size Number of D d 7 d 8 d 9 h 7 s 1 poles A A A A A A A A A A A A B B B B Amacan P 39

40 UTG-/XTG motors (0- to 100-0) l d X h 3 l 1 h h h 1 d 5 d 1 X 5 d d 3 Dimensions of the pump set Dimensions of the pump set Size Motor size Number d 1 d d 3 d d 5 h 1 h h 3 h l 1 l [kg] 9) of poles A A A A A A B B B B A A A A A A A B A A B B B A A A A A A A A B ) Pump set with -metre power cable (00 V) and 5-metre rope 0 Amacan P

41 Size Motor size Number d 1 d d 3 d d 5 h 1 h h 3 h l 1 l [kg] 9) of poles B B B A A A A A A A A B B B B B A A A A A A A B B A A A A B B B B B A A s 1 D 5 h 7 d 8 d 7 A d 9 Dimensions of the discharge tube A Suction umbrella; option for reducing the minimum water level Dimensions of the discharge tube [mm] Size Motor size Number of D d 7 d 8 d 9 h 7 s 1 poles A A ) Pump set with -metre power cable (00 V) and 5-metre rope Amacan P 1

42 Size Motor size Number of D d 7 d 8 d 9 h 7 s 1 poles A A A A B B B B A A A A A A A B A A B B B A A A A A A A A B B B B A A A A A A A A B B B B B A A A A A A A B B A A A A B B B B B Amacan P

43 Size Motor size Number of D d 7 d 8 d 9 h 7 s 1 poles A A Installation types Overview of installation types BU discharge tube Overflow design with open intake chamber BG discharge tube Overflow design with covered intake chamber CU discharge tube Underfloor discharge with open intake chamber CG discharge tube Underfloor discharge with covered intake chamber DU discharge tube Underfloor discharge with open intake chamber DG discharge tube Underfloor discharge with covered intake chamber Amacan P 3

44 Scope of supply Depending on the model, the following items are included in the scope of supply: Pump set complete with m power cable O-ring Back-up name plate Accessories (optional): Support rope Accessories for cable support - Spacer - Turnbuckle - Support spacer - Shackle - Cable clamps Cable support sleeves Flow-straightening vane to prevent floor vortices Discharge tube in various designs (steel or GFRP) Amacan P

45 Accessories Flow-straightening vane and intake chamber Design of the intake chamber wall surfaces (to prevent vortex formation) The flow-straightening vane is indispensable for the inlet conditions of the pump set. It prevents the development of a submerged vortex (floor vortex) which could cause a drop in performance, for example. In addition, the floor and wall surfaces of the intake chamber should be designed as a rough concrete surface. Rough surfaces minimise the separation of boundary layers that may cause wall and floor vortices. Flow-straightening vane and intake chamber The anti-vortex vanes in the bellmouth must be aligned with the flow-straightening vane. The bail of the pump is oriented in the same direction as the anti-swirl baffles in the bellmouth. 1 3 Installation position of the pump set 1 Bail Anti-vortex vanes 3 Flow-straightening vane Amacan P 5

46 Variant 1 Flow-straightening vane cast from concrete Variant Steel section s s 1 s R h R h R A B C D l R (e 1 ) l R (e 1 ) A B C D Bolted to the floor of the intake chamber Flow-straightening vane centred beneath the discharge tube Discharge tube Intake chamber Amacan P

47 Support rope and turnbuckle in the discharge tube For large installation depths (with support spacer) * A A *= The number of (intermediate) lifting rings depends on the lifting height of the hoisting tackle and on the building structure. (Intermediate lifting rings are supplied as an option). List of components Part No. Description Material 59-8 Turnbuckle Stainless steel Shackle Stainless steel 59-7 (Intermediate) lifting ring(s) Stainless steel 59- Rope, low rotation design Stainless steel 7 Spacer EPDM Shackle Galvanised steel (stainless steel optional) 59-7 Support spacer GFRP Amacan P 7

48 Cross-section of cable support A-A OW List of components Part No. Description Part No. Description 1 Cable clamp (approximately every 00 mm) Support rope 59- Control cable 5 Spacer 3 Power cable Clamp cover Discharge tube cover with cable gland Design: with welding sleeve A-A 3 A A 5 1 OW Amacan P

49 List of components Part No. Description 1 Discharge tube cover 50) Cover 3 Welding sleeve Threaded bush with cable entry to DIN 19 with strain relief and protection against kinking and twisting 5 Eyeplate for fastening the cable support (support rope) Gasket, e.g. rubber with fabric reinforcement Design variant: with transit frame (up to 1 bar) Detailed view X 3 X A A-A A - A A OW List of components Part No. Description 1 Discharge tube cover 51) Transit frame (cable gland) 3 Packing and insert blocks Cover segment with cable gland 5 Closed-cell profile joint in groove between the two cover parts Sealing arrangement of groove between the two cover parts 7 Support brackets for cover segment with cable glands 8 Gasket (e.g. rubber with fabric reinforcement) 50) Discharge tube cover also available in split design. 51) Discharge tube cover also available in single-piece design. Amacan P 9

50 General assembly drawings Amacan P 500- Amacan P Motor version: UAG/XAG ( -1) W List of components Part No. Description Part No. Description 11 Pump bowl 50 Casing wear ring 138 Bellmouth 571 Bail 30 Impeller 811 Motor housing 350 Bearing housing 81 Motor housing cover 30 Bearing cover 818 Shaft (rotor) 1 O-ring Cable gland 33 Mechanical seal Amacan P

51 Amacan P 0- Amacan P 0-50 Amacan P Amacan P 00-0 Amacan P 10-8 Amacan P Amacan P Motor version: UTG/XTG 1 V ( -1) 30 1 V UG List of components Part No. Description Part No. Description 11 Pump bowl 50 Casing wear ring 138 Bellmouth 571 Bail 30 Impeller 811 Motor housing 330 Bearing bracket 81 Motor housing cover 350 Bearing housing 8-5 Adapter 30 Bearing cover 818 Shaft (rotor) 1 O-ring Cable gland 33 Mechanical seal - - Amacan P 51

52 KSB Aktiengesellschaft P.O. Box Halle (Saale) Turmstraße 9 01 Halle (Germany) Tel Fax /1-EN

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