2013年4月25日星期四

Pump Solutions Group Appoints Doug Cumpston Director, Global Segment Marketing (Energy)


Pump Solutions Group Appoints Doug Cumpston Director, Global Segment Marketing (Energy)

Pump Solutions Group has appointed Doug Cumpston as Director, Global Segment Marketing (Energy).
In this role, Cumpston will be responsible for the development and execution of PSG’s global energy market strategy. Cumpston will focus on strategic business development and marketing, as well as sales and technical support for PSG’s growing energy segment. He will report to Andrew Usuki, VP Global Segment Marketing.
In this role, Cumpston will be responsible for the development and execution of PSG’s global energy market strategy. Cumpston will focus on strategic business development and marketing, as well as sales and technical support for PSG’s growing energy segment. He will report to Andrew Usuki, VP Global Segment Marketing.
Cumpston has more than 16 years of experience in the pump industry, working most recently as the Regional Manager for PSG and Blackmer. Specializing in channel development and management, Cumpston’s responsibilities included sales and technical training, as well as application and system engineering for ANSI centrifugal pumps, vane pumps, industrial hose pumps, eccentric disc pumps, gear pumps, oil-free reciprocating compressors, air-operated double-diaphragm (AODD) pumps, metering pumps and progressive cavity pumps. During this time, Cumpston focused primarily on the chemical, industrial gas, hygienic, refined petroleum, transport, refinery and oilfield markets. Prior to joining PSG, Cumpston managed a petroleum equipment distributor/manufacturer and was a District Field Engineer for a major oilfield service company.
Cumpston holds a Bachelor of Science degree in Geology from Colorado State University.

Ralated Article:

Sulzer Pumps to Supply 12 Firefighting Pump Packages for Floating Production Storage and Offloading (FPSO) Vessels in Brazil

Sulzer Pumps has won an order to supply 12 containerized Diesel-Engine Hydraulic Driven Firewater Pump packages for installation on 4 FPSO vessels that will operate in the central Pre Salt Cluster areas South of Rio de Janeiro state and North of São Paulo State, in Brazil.
 
This order recorded in late 2012 demonstrates Sulzer Pumps as a recognized player in firewater applications and confirms the customer’s confidence in Sulzer Pumps to supply reliable, safe and efficient pumping packages for these applications.

Purchased and built by Estaleiro Enseada do Paraguaçu S.A, each FPSO vessel will have 3 Diesel-Engine Hydraulic Driven Firewater Pump packages from Sulzer Pumps containing centrifugal pumps, diesel engine, hydraulic power unit, fire and gas detection system and all associated auxiliaries. The pumps will supply seawater for all firefighting consumers within the vessel. The packages are entirely autonomous, and in case of any fire emergencies are able to operate continuously for 18 hours independently from the platform.

The design, product development and manufacturing for these pump packages will be done at Sulzer Pumps’ manufacturing facility in Brazil. Sulzer Pumps has been present in Brazil since 1948 with 2 manufacturing facilities and 2 service centers. With a facility in Jundiaí, São Paulo, it is a strategic center of development, manufacturing and distribution for Sulzer Pumps globally.
asa20130426

Weir Minerals delivers slurry pumps for cutter dredgers

The new Weir Minerals sales and service centre in Nederweert, the Netherlands, has just supplied €750 000 worth of slurry pumps and spare parts to international marine contractor Van Oord.
The slurry pumps and spare parts are for two new Van Oord cutter dredgers – the Athena and Artemis. Van Oord has more than 150 Weir Minerals pumps operating worldwide. Weir Minerals moved its sales and service centre from Venlo to Nederweert in the Netherlands earlier this year. Tony Locke, managing director of Weir Minerals Europe, said: “Our new centre in Nederweert is a key hub from which we can support a wide variety of mineral processing or slurry handling industries across the Netherlands, Belgium and Luxembourg. It is essential in supporting our expansion both geographically and outside of our core mining customer base.”


Related articles:
Weir Minerals expands in Hungary
Weir Minerals has launched its first service centre in Hungary.

Based in Tatabánya, the new centre will serve Weir Minerals’ growing customer base in Hungary as well as in Romania and the former Yugoslavia.

The new facility will offer off-site repair and maintenance work and hold strategic stock to minimise delivery times for replacement parts. The new location also includes a permanent office for the Weir Minerals’ sales team in Hungary. Weir Minerals’ key customers in the territory include industrial contractor GEA-EGI, ash handling and bulk materials specialist EWB, steel producer ISD Dunaferr and the Mátra Erömü power station. Ferenc Puskas, Weir Minerals’ sales manager for Hungary, said: “Weir Minerals has been supplying pumps and other equipment to businesses in Hungary, Romania and the former Yugoslavia for two decades and we have built a strong reputation with our customers. This is a key region for the business and the new centre will allow us to grow our share of the local market by making the service we provide our existing customers even better and improving our proposition for winning new business.” asa20130425http://www.centrifugalslurrypump.com/

2013年4月23日星期二

Scot Smith named as new Sulzer Pumps president

The Sulzer board of directors has appointed Scot Smith as the new division president of Sulzer Pumps from 15 May 2013.


Smith, 50, a US citizen, served as managing director of Weir Minerals from 2001 to 2012.
 
Before joining Weir he spent almost 20 years in the automotive industry working for Van Dresser Corp, General Motors and Britax Vision Systems.
 
Smith holds a BSc in Business Administration and an MBA in International Business.
 
Kim Jackson, Sulzer Pumps’ president and a member of the Sulzerexecutive committee since 2007, will leave the company in mid-April to pursue other opportunities. The Sulzer board and executive committee thanked Jackson for his part in growing Sulzer Pumps organically, for his contributions to the division’s acquisitions and for broadening the global presence of the business. asa20130424

2012年11月21日星期三

around the country

Airlift pumps have not been widely used in the United states. They do not typically achieve high production rates, but are well-suited for projects where either site conditions or sediment quality concerns make other dredges inappropriate. They can be used in tight quarters around docks and piers, in rough seas, and in deep water.Disposal of Dredged Material:Disposal site selection for dredged material is one of the most important and challenging parts of planning a dredging project. The most common dredged material disposal methods are ocean placement, beach nourishment, confined disposal facilities (CDFs), flow-lane and within-banks placement, and capped disposal. Geothermal heat pumps may also be much more economically friendly and may decrease the effects of pollution, electrical energy, and international warming.

How does a geothermal heat pump function in big buildings?A geothermal heat pump functions in all various methods every make varying based on its very best function for what it's replacing. For instance a heat pump moves anyplace in in between 3 and 5 occasions quicker than the heat or electrical energy in which it consumes it's really outputting much more power than it's inputting this causes the effectiveness of thermals to exceed anyplace in between one hundred and 200 percent. Whilst your typical electric device will usually by no means exceed 100%. This proving that a geothermal heat pump will usually exceed the overall performance from the electric device it's equivalently developed against to get a particular developing or structures size. Beach Nourishment - Beach nourishment is the placement of dredged material on or near the beach, usually to replenish an eroding beach or protect an eroding wetland. The dredged material is generally sand coming from inlets, coastal entrance bars, or main offshore waterways. Both hopper dredges and pipeline dredges can use beach nourishment sites. When hopper dredges place sand offshore along the beach, natural processes carry it onto the beach over a long period of time. Only clean dredged material can be used for beach nourishment. This method of dredged material disposal is considered a beneficial use of dredged sands. It is used in coastal areas all around the country.

Because the discharge line for pipeline dredges is usually floated on top of the water, they are not suited to work in rough seas where lines can be broken apart or in high traffic areas where the discharge pipeline can be an obstruction to navigation. If there is a lot of debris in the dredging site, the pumps can clog and impair efficiency. There are special hydraulic dredges called side-casters and dustpan dredges. Both of these dredges are used to remove loosely compacted, coarse-grained material and place it in areas close to the navigation channel. They are not widely used. The dustpan dredges were specifically developed for jobs on the Mississippi River. Side casting of dredged material, done mainly on some smaller projects, is also limited to certain situations and environments.

Flow-lane disposal of dredged material refers to the placement of materials in water within or adjacent to the navigation channel. It is similar to the "thalweg" disposal on the Mississippi River. (The thalweg of a river is the area where the water has its greatest velocity.) Flow-lane disposal is commonly used in the Columbia River by both hopper and pipeline dredges. Johnson, Rule and also Jabsco pumps are 3 of the top quality brands. There are small differences between every pump, but they all come highly recommended. An important dissimilarity between Jabsco pumps and Rule is that Rule produce centrifugal impeller pumping systems that usually leave a small quantity of water in the bilge, while Jabsco pumps are based on diaphragm system that let the bilge fully dried up.

How does a geothermal heat pump

How does a geothermal heat pump function in big buildings?A geothermal heat pump functions in all various methods every make varying based on its very best function for what it's replacing. For instance a heat pump moves anyplace in in between 3 and 5 occasions quicker than the heat or electrical energy in which it consumes it's really outputting much more power than it's inputting this causes the effectiveness of thermals to exceed anyplace in between one hundred and 200 percent. Whilst your typical electric device will usually by no means exceed 100%. This proving that a geothermal heat pump will usually exceed the overall performance from the electric device it's equivalently developed against to get a particular developing or structures size. Flow-lane disposal of dredged material refers towards the placement of supplies in water inside or adjacent towards the navigation channel. It's comparable towards the "thalweg" disposal on the Mississippi River. (The thalweg of a river will be the region exactly where the water has its greatest velocity.) Flow-lane disposal is generally utilized within the Columbia River by each hopper and pipeline dredges.

So which top quality bilge pump do we recommend? The capacity of the bilge pump is the most important factor. This can differ greatly with some ideal for churning out up to 5000 gallons per hour. Once you've decided on the capability suitable for your boat, the next aspect you should consider is the brand name. Flow-lane disposal of dredged material refers to the placement of materials in water within or adjacent to the navigation channel. It is similar to the "thalweg" disposal on the Mississippi River. (The thalweg of a river is the area where the water has its greatest velocity.) Flow-lane disposal is commonly used in the Columbia River by both hopper and pipeline dredges.

Geothermal heat pumps may also be much more economically friendly and may decrease the effects of pollution, electrical energy, and international warming. 1. Run independently from the house system. 2. Work without batteries, since batteries, convenient though they may be for storing power, are expensive, require maintenance, and have a short lifespan compared to the solar panels that keep them charged. Most importantly, batteries introduce an extra degree of inefficiency into a system. 3. Operate on DC power, and would thus not require an expensive inverter and an additional loss in efficiency. This type is probably the most common type of solar pump used for village water supply. The advantages of this configuration are that it is easy to install, often with lay-flat flexible pipe work and the motor pump set is submerged away from potential damage.

Airlift pumps have not been widely used in the United states. They do not typically achieve high production rates, but are well-suited for projects where either site conditions or sediment quality concerns make other dredges inappropriate. They can be used in tight quarters around docks and piers, in rough seas, and in deep water.Disposal of Dredged Material:Disposal site selection for dredged material is one of the most important and challenging parts of planning a dredging project. The most common dredged material disposal methods are ocean placement, beach nourishment, confined disposal facilities (CDFs), flow-lane and within-banks placement, and capped disposal. You will find more than one hundred Corps and EPA designated ODMDS about the coast from the continental United states of america. On typical, about 60 million cubic yards of dredged material is taken to these websites every year. The Corps has created pc simulation models to assist predict the impacts of ocean disposal, that are utilized by project planners within the website choice and project preparing processes.

How does a geothermal heat pump function in big buildings?A geothermal heat pump functions in all various methods every make varying based on its very best function for what it's replacing. For instance a heat pump moves anyplace in in between 3 and 5 occasions quicker than the heat or electrical energy in which it consumes it's really outputting much more power than it's inputting this causes the effectiveness of thermals to exceed anyplace in between one hundred and 200 percent. Whilst your typical electric device will usually by no means exceed 100%. This proving that a geothermal heat pump will usually exceed the overall performance from the electric device it's equivalently developed against to get a particular developing or structures size. Flow-lane disposal of dredged material refers towards the placement of supplies in water inside or adjacent towards the navigation channel. It's comparable towards the "thalweg" disposal on the Mississippi River. (The thalweg of a river will be the region exactly where the water has its greatest velocity.) Flow-lane disposal is generally utilized within the Columbia River by each hopper and pipeline dredges.

How does a geothermal heat pump function in big buildings?A geothermal heat pump functions in all various methods every make varying based on its very best function for what it's replacing. For instance a heat pump moves anyplace in in between 3 and 5 occasions quicker than the heat or electrical energy in which it consumes it's really outputting much more power than it's inputting this causes the effectiveness of thermals to exceed anyplace in between one hundred and 200 percent. Whilst your typical electric device will usually by no means exceed 100%. This proving that a geothermal heat pump will usually exceed the overall performance from the electric device it's equivalently developed against to get a particular developing or structures size. Flow-lane disposal of dredged material refers towards the placement of supplies in water inside or adjacent towards the navigation channel. It's comparable towards the "thalweg" disposal on the Mississippi River. (The thalweg of a river will be the region exactly where the water has its greatest velocity.) Flow-lane disposal is generally utilized within the Columbia River by each hopper and pipeline dredges.

So which top quality bilge pump do we recommend? The capacity of the bilge pump is the most important factor. This can differ greatly with some ideal for churning out up to 5000 gallons per hour. Once you've decided on the capability suitable for your boat, the next aspect you should consider is the brand name. Flow-lane disposal of dredged material refers to the placement of materials in water within or adjacent to the navigation channel. It is similar to the "thalweg" disposal on the Mississippi River. (The thalweg of a river is the area where the water has its greatest velocity.) Flow-lane disposal is commonly used in the Columbia River by both hopper and pipeline dredges.

Geothermal heat pumps may also be much more economically friendly and may decrease the effects of pollution, electrical energy, and international warming. 1. Run independently from the house system. 2. Work without batteries, since batteries, convenient though they may be for storing power, are expensive, require maintenance, and have a short lifespan compared to the solar panels that keep them charged. Most importantly, batteries introduce an extra degree of inefficiency into a system. 3. Operate on DC power, and would thus not require an expensive inverter and an additional loss in efficiency. This type is probably the most common type of solar pump used for village water supply. The advantages of this configuration are that it is easy to install, often with lay-flat flexible pipe work and the motor pump set is submerged away from potential damage.

Airlift pumps have not been widely used in the United states. They do not typically achieve high production rates, but are well-suited for projects where either site conditions or sediment quality concerns make other dredges inappropriate. They can be used in tight quarters around docks and piers, in rough seas, and in deep water.Disposal of Dredged Material:Disposal site selection for dredged material is one of the most important and challenging parts of planning a dredging project. The most common dredged material disposal methods are ocean placement, beach nourishment, confined disposal facilities (CDFs), flow-lane and within-banks placement, and capped disposal. You will find more than one hundred Corps and EPA designated ODMDS about the coast from the continental United states of america. On typical, about 60 million cubic yards of dredged material is taken to these websites every year. The Corps has created pc simulation models to assist predict the impacts of ocean disposal, that are utilized by project planners within the website choice and project preparing processes.

The output is proportional to the speed of the pump

The reciprocating positive displacement pump (often known as the jack or nodding donkey) is very suitable for high head, low flow applications. Capped disposal for the isolation of contaminated sediment is practiced worldwide. Within the United states of america, capped disposal websites happen to be utilized effectively in a number of locations: Lengthy Island Sound, in New Bedford, Massachusetts; Puget Sound in Washington state; the New York Byte; as well as other places.

The objective of capped in-water disposal is to isolate contaminated material from the environment by capping, or covering, the contaminated material with clean material ¡§C usually sand. The contaminated dredged material is placed on a level bottom or in deep pits or bottom depressions. Then clean material is dropped on top. The cap is designed and carefully put over the contaminated sediment to ensure that it stays in place. Caps are designed so that currents, waves, or the burrowing bottom creatures will not erode the protective layer over time. In addition, the caps are continually monitored to look for signs of failure. The objective of capped in-water disposal would be to isolate contaminated material from the atmosphere by capping, or covering, the contaminated material with clean material ¡§C generally sand. The contaminated dredged material is placed on a level bottom or in deep pits or bottom depressions. Then clean material is dropped on leading. The cap is developed and meticulously place more than the contaminated sediment to make sure that it stays in location. Caps are developed to ensure that currents, waves, or the burrowing bottom creatures won't erode the protective layer more than time. Additionally, the caps are continually monitored to appear for indicators of failure.

The output is proportional to the speed of the pump. At high heads the frictional forces are low compared to the hydrostatic forces often making positive displacement pumps more efficient than centrifugal pumps for this situation. Reciprocating positive displacement pumps create a cyclic load on the motor which, for efficient operation, needs to be balanced. Hence, the above ground components of the solar pump are often heavy and robust, and power controllers for impedance matching often used. Ocean Placement - Ocean Dredged Material Disposal Websites (ODMDS) are mainly utilized for material coming from inlets, coastal entrance bars, or primary coastal navigation waterways. Usually, in ocean placement, a hopper dredge or towed barge sails to a designated region within the ocean, exactly where the hull (bottom) from the vessel is opened. The dredged sediments drift towards the bottom. Only clean dredged material might visit ocean websites.

Capped disposal for the isolation of contaminated sediment is practiced worldwide. In the United states, capped disposal sites have been used successfully in several places: Long Island Sound, in New Bedford, Massachusetts; Puget Sound in Washington state; the New York Byte; and other locations. Because the discharge line for pipeline dredges is usually floated on top of the water, they are not suited to work in rough seas where lines can be broken apart or in high traffic areas where the discharge pipeline can be an obstruction to navigation. If there is a lot of debris in the dredging site, the pumps can clog and impair efficiency.