|
|
All performance curves are found using our free Pump Selection System (PSS) software. Click the following link, where you will register and gain immediate access to all of our up-to-the-minute performance curve information.
Specifications:
Capacities to 65000 GPM
(14763 m3/h)
Heads to 3500 feet (1067 m)
Temperatures to 500° F (260° C)
Bowl sizes from 6" to 55"
Design Features:
Fabricated discharge head and flanged column
Flanged bowl construction
416 SS shafting
Alloy construction with external flush of critical wear areas available for corrosive/abrasive services
Built-in alignment and simple piping for less costly installation and ease of maintenance/reduced downtime
|
|
The vertical turbine ,deep well pumps are intended for pumping clear or slightly muddy water at temperatures not exceeding 60 C. The pump(hydraulic part) consists of one or several impellers with axial suction usually manufactured using bronze or cast iron. Each of the impellers is statically and dynamically balanced and they are mounted on steel shaft and screwed on the bottom side using bolt so they create a whole.
Technical data:
Capacity Up to 680 l/sec
Head Up to 210 m
Temperature Up to 60 °C
The typical application is in metallurgical industry, water supply, industrial plants, irrigation and dewatering,sanitary wash down services, thermo energetic plants, mining and civil engineering.
|
|
Leakage free, turbine pump
As is common with corrosion resistant pumps, this series uses the magnetic drive method, eliminating all problems caused by liquid leakage. Its pump characteristics include a small flow rate and high head.
Built-in self-priming valve
The inlet side of the pump contains a self-priming valve. Self-priming is actuated quickly after initial priming.
Superior corrosion resistance
The main parts are manufactured from SCS313 or SCS14 stainless cast, allowing the pump to be used for transferring organic solvents and various other chemicals
|
|
SPP's Lowest Life-cycle Cost Series of single and multi-stage Vertical Turbine pumps have been designed for longevity and incorporate many standard features, which facilitate ease of maintenance. A spacer coupling between the thrust bearing assembly and seal chamber allows a cartridge mechanical seal to be removed without dismantling the headpiece and removing the driver. Easily removable keyed muff type couplings connect all shafts, facilitating disassembly of the whole pump unit with minimal risk of damaging expensive component parts.
High-grade standard materials of construction and a rugged stiff shaft mechanical design coupled to state of the art hydraulics, offer unrivalled longevity and the lowest cost of ownership.
TYPICAL APPLICATIONS:
Water Treatment & Supply
River Water Extraction
Borehole Deep Well Extraction
Drainage & Irrigation
Cooling Tower Circulation
Process & Industrial utility duties
Petrochemical utility duties
Condensate Extraction
Sea Water lift
Power Plant utility duties
|
|
Multi-stage Vertical Turbine Pumps with bronze impellers and cast iron bowls. The lineshaft turbine pumps have above-ground discharge with water-lubricated lineshaft bearings. The column pipe coupling has bronze centering spiders with fluted-rubber lineshaft bearings. The bowls are vitra-glass coated in the waterways for improvedefficiencies. Capacities up to 10,000 GPM with heads to 150 feet per stage.
APPLICATIONS:
COOLING TOWERS, PRESSURE BOOSTING AND GENERAL WATER SERVICE.
|
|
Major Applications
- Power Plant
- Desalination Plant
- Other Water Works
- LNG Receiving Terminal
|
|
The VDL pump range is the dry motor version
of the Jupiter hydraulic design and comprises a suction bell, one or more pump stages with closed mixed flow impellers, column pipes with pump shafts and line shafts, and a discharge elbow which can be placed above or below the foundation level.
Applications:
- cooling water pumps in industry
and power stations
- drinking water supply
- desalination
- fire fighting
- ballast and bilge pumps
- irrigation and drainage
Capacity: 50 - 15.000 m3/h
Heads: 25 - 255 mlc
- Liquids pumped: fresh water, seawater
or equivalents
|
|
Vertical propeller pump type AVZ
Vertical axial flow pump with propeller type impeller.
Fields of application:
Irrigation and water-drainage, Melioration, Water supply, Energy plants.
Operating data:
Q = 250 - 45.000 m3/h
H = 1 - 16 m
t = up to +40 °C
p = up to 2,5 bar
|
|
Materials
Wetted parts AISI 316 Bearings SiC / Special Carbon Bracket WCB Special alloy: Hastelloy, Incoloy, Titanium
Technical Data : Flow Rates up to a 10m3/h Total delivery heads up to 110m Temperature Ratings up to 200°C Pressure rating up to PN 25
Construction
Horizontal Peripheral Pump for general applications Permanent Magnet Drive system Separation of liquid chamber/atmosphere by means of an isolation shell Synchronous drive transmitted by inner magnet and outer magnet system Self-balancing impeller Sintered Silicon Carbide Bearings / Special Carbon Two executions: Close coupled standard,Close coupled for high temperature ( up to 350°C)
Applications
Pumping acids, hydrocarbon, diathermic oils, liquid gases, dangerous fluids, explosive, toxic.
Further material available if request
Various materials from the standard special Constructions
|
|
Materials
Part in contact with liquid PP / PVDF Shaft / Bearings Al2O3 / PTFE Bracket WCB
Pumping acids, hydrocarbon, liquid gases, dangerous fluids, explosive, toxic.
Technical Data : Flow Rates up to a 15m3/h Total delivery heads up to 70m Temperature Ratings up to 90°C Pressure rating up to PN 10
Construction
Horizontal plastic peripheral Pump for general application Permanent Magnet Drive system Separation of liquid chamber/atmosphere by means of an isolation shell Synchronous drive transmitted by inner magnet and outer magnet system Alumina ultra pure 99,7% shaft, PTFEC Brgs Close Coupled execution
Applications
Further material available if request
Various materials from the standard special Constructions
|
|
| ... products without technical information |
| |
All performance curves are found using our free Pump Selection System (PSS) software. Click the following link, where you will register and gain immediate access to all of our up-to-the-minute performance curve information.
Specifications:
Capacities to 65000 GPM
(14763 m3/h)
Heads to 3500 feet (1067 m)
Temperatures to 500° F (260° C)
Bowl sizes from 6" to 55"
Design Features:
Fabricated discharge head and flanged column
Flanged bowl construction
416 SS shafting
Alloy construction with external flush of critical wear areas available for corrosive/abrasive services
Built-in alignment and simple piping for less costly installation and ease of maintenance/reduced downtime
|
|
The vertical turbine ,deep well pumps are intended for pumping clear or slightly muddy water at temperatures not exceeding 60 C. The pump(hydraulic part) consists of one or several impellers with axial suction usually manufactured using bronze or cast iron. Each of the impellers is statically and dynamically balanced and they are mounted on steel shaft and screwed on the bottom side using bolt so they create a whole.
Technical data:
Capacity Up to 680 l/sec
Head Up to 210 m
Temperature Up to 60 °C
The typical application is in metallurgical industry, water supply, industrial plants, irrigation and dewatering,sanitary wash down services, thermo energetic plants, mining and civil engineering.
|
|
SPP's Lowest Life-cycle Cost Series of single and multi-stage Vertical Turbine pumps have been designed for longevity and incorporate many standard features, which facilitate ease of maintenance. A spacer coupling between the thrust bearing assembly and seal chamber allows a cartridge mechanical seal to be removed without dismantling the headpiece and removing the driver. Easily removable keyed muff type couplings connect all shafts, facilitating disassembly of the whole pump unit with minimal risk of damaging expensive component parts.
High-grade standard materials of construction and a rugged stiff shaft mechanical design coupled to state of the art hydraulics, offer unrivalled longevity and the lowest cost of ownership.
TYPICAL APPLICATIONS:
Water Treatment & Supply
River Water Extraction
Borehole Deep Well Extraction
Drainage & Irrigation
Cooling Tower Circulation
Process & Industrial utility duties
Petrochemical utility duties
Condensate Extraction
Sea Water lift
Power Plant utility duties
|
|
Multi-stage Vertical Turbine Pumps with bronze impellers and cast iron bowls. The lineshaft turbine pumps have above-ground discharge with water-lubricated lineshaft bearings. The column pipe coupling has bronze centering spiders with fluted-rubber lineshaft bearings. The bowls are vitra-glass coated in the waterways for improvedefficiencies. Capacities up to 10,000 GPM with heads to 150 feet per stage.
APPLICATIONS:
COOLING TOWERS, PRESSURE BOOSTING AND GENERAL WATER SERVICE.
|
|
Major Applications
- Power Plant
- Desalination Plant
- Other Water Works
- LNG Receiving Terminal
|
|
The VDL pump range is the dry motor version
of the Jupiter hydraulic design and comprises a suction bell, one or more pump stages with closed mixed flow impellers, column pipes with pump shafts and line shafts, and a discharge elbow which can be placed above or below the foundation level.
Applications:
- cooling water pumps in industry
and power stations
- drinking water supply
- desalination
- fire fighting
- ballast and bilge pumps
- irrigation and drainage
Capacity: 50 - 15.000 m3/h
Heads: 25 - 255 mlc
- Liquids pumped: fresh water, seawater
or equivalents
|
|
Vertical propeller pump type AVZ
Vertical axial flow pump with propeller type impeller.
Fields of application:
Irrigation and water-drainage, Melioration, Water supply, Energy plants.
Operating data:
Q = 250 - 45.000 m3/h
H = 1 - 16 m
t = up to +40 °C
p = up to 2,5 bar
|
|
| ... products without technical information |
| |
Leakage free, turbine pump
As is common with corrosion resistant pumps, this series uses the magnetic drive method, eliminating all problems caused by liquid leakage. Its pump characteristics include a small flow rate and high head.
Built-in self-priming valve
The inlet side of the pump contains a self-priming valve. Self-priming is actuated quickly after initial priming.
Superior corrosion resistance
The main parts are manufactured from SCS313 or SCS14 stainless cast, allowing the pump to be used for transferring organic solvents and various other chemicals
|
|
Materials
Wetted parts AISI 316 Bearings SiC / Special Carbon Bracket WCB Special alloy: Hastelloy, Incoloy, Titanium
Technical Data : Flow Rates up to a 10m3/h Total delivery heads up to 110m Temperature Ratings up to 200°C Pressure rating up to PN 25
Construction
Horizontal Peripheral Pump for general applications Permanent Magnet Drive system Separation of liquid chamber/atmosphere by means of an isolation shell Synchronous drive transmitted by inner magnet and outer magnet system Self-balancing impeller Sintered Silicon Carbide Bearings / Special Carbon Two executions: Close coupled standard,Close coupled for high temperature ( up to 350°C)
Applications
Pumping acids, hydrocarbon, diathermic oils, liquid gases, dangerous fluids, explosive, toxic.
Further material available if request
Various materials from the standard special Constructions
|
|
Materials
Part in contact with liquid PP / PVDF Shaft / Bearings Al2O3 / PTFE Bracket WCB
Pumping acids, hydrocarbon, liquid gases, dangerous fluids, explosive, toxic.
Technical Data : Flow Rates up to a 15m3/h Total delivery heads up to 70m Temperature Ratings up to 90°C Pressure rating up to PN 10
Construction
Horizontal plastic peripheral Pump for general application Permanent Magnet Drive system Separation of liquid chamber/atmosphere by means of an isolation shell Synchronous drive transmitted by inner magnet and outer magnet system Alumina ultra pure 99,7% shaft, PTFEC Brgs Close Coupled execution
Applications
Further material available if request
Various materials from the standard special Constructions
|
|
| ... products without technical information |
| |
A family of automotive in-tank transfer fuel pumps designed to provide uninterrupted flow of fuel for gasoline and gasoline-ethanol blend fuel engines with 1.5 liter and greater displacements requiring fuel flow ranges up to 200 L/hr at 12 V and 450 kPa. They provide reliability, high efficiency and excellent hot fuel delivery performance.
The Delphi T-23 Automotive Turbine Fuel Pumps' excellent low-fuel delivery and hot fuel delivery performance help provide reliable, uninterrupted fuel flow. They feature a highly integrated design for lower overall cost, compact diameter for packaging flexibility, robust durability and exceptional low voltage startability.
Building on more than 50 years' experience in fuel handling systems, Delphi is dedicated to the development of high quality, cost effective fuel handling technologies for integration with current and new engine designs.
|
|
Today's marine propulsion systems must provide faster vessel speed, enable greater payloads or deliver more power per square foot of machinery space. When vessel speed is critical and space is a premium, gas turbines can be an ideal solution.
For fast patrol boats, fast attack craft, corvettes and hovercraft as well as commercial applications such as fast ferries and mega-yachts, marine propulsion is made simple with Vericor's aero-derivative gas turbine-based power plants. Our marine propulsion offerings, ranging from 4,000 to 10,000 shp are based on the TF Series gas turbines.
Compact & Lightweight:
Our TF Series gas turbines are compact, lightweight and provide many times the horsepower over diesel engines for the same installed weight at a lower installed volume. With a cold-end drive, the gas turbine can be integrated into the package by cantilever mounting directly to the reduction gear, or mounting to a horizontal support frame and coupled to the reduction gear with a shaft and coupling.
The TF Series turbines can provide efficient power to a variety of propulsors including fixed and variable pitch propellers, waterjets and, in the case of hovercraft, air props. The small size and light weight features of the TF Series also allow for the installation of single or multiple gas turbines in combined system configurations.
|
|
|
|