Applications And Advantages Of An Auto Transformer

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Power cuts and voltage variations are one of the common problems of every industry. To fight back with the problem, transformers are the only solution that is used widely in the global industries. The device is ideal for supplying the constant supply of power and also regulating the rise and fall of the voltage supply. Transformers are the stroke of the luck for the industries which are facing the energy distribution and transmission troubles. An auto transformer is an electrical device which has only one winding. It gives you a higher supply of the voltage required for proper application of the device. It uses the principle of self-induction.

Advantages Of An Auto Transformer:-

  • Less Costly: There is a huge range of the transformers available in the market and you need to choose the device for your application. But the auto transformer is known for its eco-friendly nature and affordable prices. They are actually cheaper in cost and high in performance.
  • Compact Size: Every industry is concerned about the space availability for the device to be installed and they generally avoid bulkier, big devices for installation. The device is available in the market in a compact size which can give you better results with the smaller size. It is usually employed to increase the voltage requirement for the application.
  • Voltage Regulation: The main aim of using the device is to regulate the voltage supply to provide the evenly distributed energy for the applications. The two winding device cost you more and there is more copper loss. However, auto transformers are the best at regulating voltage and less copper loss.

Application Usage Of An Auto Transformer:-

  • Power Transmission And Distribution: The device is frequently used in power applications to interconnect the systems with each other and operating with different KVA sizing. Other than this, it is used to adapt the machinery built-in the industry. It is also employed to provide the constant supply of the voltage while providing the average voltage close to the source.
  • Audio System: In the audio applications, the device is used to adapt the speakers to provide the steady voltage to the audio distribution system. It is also employed for matching the impedance.

Railways: The device is arranged to supply the steady power and are also used as the voltage regulator. It gives a small boost to the distribution cable and also corrects the drop. It is used to increase the voltage supply, but due to the single winding operation, it cannot step down the voltage supply.

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Source by Mukesh Tolani

Celebrate in Style With Vintage Wedding Cars

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If you are planning a wedding at an exclusive club or a million dollar estate, you might think about using vintage wedding cars for your wedding transportation needs. Classic and vintage cars are the perfect addition to a day filled with class and style, sophistication and luxury. Photographers will love taking the couples’ picture in front of a classic beauty with the wedding venue as a backdrop. Brides and grooms with a special affinity for classic cars will love the appeal that vintage wedding cars will bring to the day, and the memories they will create for themselves and their guests.

Transportation – Though many classic and vintage wedding cars may have contracts against driving them (or having them driven by a company driver) for long distances, most can still be used as local wedding transportation. These rentals keep their value as classics because of their uniqueness and their low mileage, which could quickly add up if each couple renting took the vehicles for long drives. Vintage wedding cars are probably best if only needed for very short distances, such as from the chapel to the reception hall down the street.

Props Only – If you find a classic car you want to rent but find that it is cost prohibitive, you might get a reduced rate for using it as a prop only. This means the car is not driven, except to the location where it will be parked. Often, the owner of the vehicle will have it hauled to the location as to preserve the car’s low mileage. When used as props, vintage wedding cars still add considerable value to your wedding celebrations. They can be used to enhance the overall look and feel of an exclusive or luxurious party, or they may simply be used in professional wedding photographs that include the couple.

Full Event Rental – Other than the other two options above, vintage wedding cars can be used during the entire wedding celebration. Though it may be hard to find a company willing to rent out a vehicle over a several day period, it can be done. Don’t expect to get a weekend celebration classic car on a small budget, however. If you are lucky enough to find a company or car owner willing to rent their vintage wedding cars for several days or more, be prepared to pay top dollar. For that money, you will enjoy transportation and the vehicle’s use as a prop at the venue or in wedding photos.

Vintage wedding cars can be rented from wedding transportation companies and from local individual vehicle owners. Be sure that no matter which vendor you use, that you have a signed contract and proof of insurance before taking possession of the vintage or classic car. Usually valued at high dollar, you will want to make sure your liability is spelled out clearly so that you do not get stuck in a situation where you need to pay a huge penalty or lose your deposit. Nothing can ruin the memory of your wedding more than dealing with financial surprises in the aftermath of it all.

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Source by Michael B Podgoetsky

Choosing Right Transformer For Mining Industry

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Introduction

The US has one of the largest mining industries in the world – an industry closely linked with the economy. In the past, the discovery of resources such as gold and oil resulted in a major population shift and rapid growth for formerly remote regions of the country, such as California, Texas, and Alaska. Extraction of these resources, and finding new deposits, continues to provide the foundation for local economies in some regions.

Some of the minerals mined in the US are coal, uranium, copper, gold, silver, iron, lead, zinc and others. Most of the mines in the US are highly automated and thus energy intensive. To provide an example, even in the last decade of the 20th century, iron ore mining alone consumed 62.3 trillion Btu of energy across a calendar year. Because mining is such a large industry and makes a sizable contribution to the national income, mines must have a dependable source of power – a crucial resource for mining processes.

The mining and mineral extraction sector both in the US and worldwide relies heavily on energy to harness natural resources such as aggregates, precious metals, iron ore, oil, gas, and coal. This energy is used to power shovels and drills for excavating these products, loading them into enormous mining trucks or onto conveyer belts, sorting, sifting and crushing ores, heating, and a hundred other functions. Both surface and underground mining operations rely on powered equipment to extract materials and load trucks. Overall, the mining sector could not flourish without the use of vast amounts of energy.

The Role of Transformers

Mine ‘Power Centers’ or ‘Load Centers’ are an essential system for underground and surface mining. Their primary function is to convert distribution voltage into utilization voltage for equipment operation, thus placing power transformers at the heart of the load center. Proper selection of transformers is imperative, and must fulfill safety, reliability, and efficiency requirements. Determining capacity rating is among the first steps for selection of a power transformer for a mining load center. A rule of thumb here is to allow 1 kVA for every horsepower of connected load. Most mining processes, however, do not produce constant loads – all machinery is not connected all the time – and therefore the 1 kVA per horsepower thumb rule will typically result in transformer oversizing. According to the SME Mining Engineering Handbook by Howard L. Hartmann, “Past experience and demand factors established by manufacturers and operators, along with the horsepower of the connected load, are essential for determining transformer capacity. For typical underground mining sections, the kVA rating may lie within the range of 50 to 80% of the connected horsepower.”

Transformer Losses

Standard transformers while under full load operate at 90 to 95% efficiency, with this figure dropping as the load lightens. This is due to inefficiencies in the transformer’s core, a main component of the transformer. The losses in the core remain the same throughout the transformer’s operating range. At 100% load, the amount of comparative loss is negligible. However, at reduced loads, the same amount of energy loss represents a higher percentage of energy being wasted. Unfortunately, average transformer loads run between 34 and 50% of the transformer’s total capacity. With the majority of the electricity used

in the US being run through transformers at these lower loads, massive amounts of energy are being wasted. This issue is of special relevance to the mining industry, simply because of its high energy usage. Mining operations also involve hostile environments full of dust, dirt, chemicals, moisture and airborne contaminants. Load center transformers need to function reliably and efficiently in these environments over a long term.

Without electric power at mining facilities, the natural materials extracted from the earth in the mining process would be much more costly than they are today. Thus, power transformers provide a lot of muscle, capacity, and stability to an essential industry. From drilling trenches to busting up rock, carting out huge loads of materials and pulling up heavy amounts of minerals, power transformers provide the strength and capability needed.

Liquid Filled and Dry Transformers: Performance Characteristics

1.Liquid-Filled Transformers

While there is still debate on the relative advantages of the available types of transformers, there are some performance characteristics that have been accepted: • Liquid-filled transformers are more efficient, have greater overload capability and longer life expectancy. • Liquid-filled units are better at reducing hot-spot coil temperatures, but have higher risk of flammability than dry types. • Liquid-filled transformers sometimes require containment troughs to guard against fluid leaks. • Liquid filled transformers are smaller in size than dry-type units for the same power rating capacity and have lower losses because of their better thermal dissipation characteristics.

2.Dry Type Transformers

Dry type Transformers are usually used for lower ratings (the changeover point being 500kVA to 2.5MVA). They are usually placed indoors, serving an office building/apartment. Dry type units typically come in enclosures with louvers, or sealed.

Dry type transformers use almost no flammable materials and therefore do not constitute a fire hazard when used underground in both coal and other mines.

Dry type transformers in the mining industry are housed in a steel tank and the core and windings are cooled by air circulating within the tank, transferring heat to the steel tank which is in turn cooled by the external air. In some compact designs for mounting on mining machines water cooling is added to further improve the performance of the transformers.

Correct choice of insulating materials and an understanding of the cooling system is imperative if the transformer is to be correctly designed. For example, a temperature rise test conducted on a transformer manufactured and sold as continuously rated, can reveal that the transformer only had a continuous rating of 65% of the nameplate rating.

The Need for Energy-Efficient Mining

With the current focus on climate change and reduction of environmental impact, government agencies around the world are making increasingly stringent demands on industries to reduce energy consumption and manage waste more effectively, among others. It is surprising how many mining operations still use twenty-year-old technology.

Regulatory pressures are already beginning to affect the mining industry – according to an article on ‘US Environmental Regulations and the Mining Industry’ on the International Development Research Center (IDRC) website, “Environmental regulations have had an effect on the US mining industry’s profitability. Companies have been forced to retrofit or renovate installations or leave the market. Increasing operational costs have affected their international competitiveness, and to some extent, this may be changing the world allocation of mining investment. Employment levels have fallen substantially, and local economies have borne part of this cost.”

Mining companies in the US are thus feeling the pressing need to be energy-efficient, simply to stay competitive. Reducing energy consumption by adopting customized, cost-effective solutions like NEMA-approved transformers and harnessing solar or wind energy to meet their future energy needs can be good ideas in the long run, especially since the alternate energy option will help mining companies keep away from fluctuating international fuel prices. Alternate sources of energy are still a very small blip on the graph, in terms of actual power provided for industries like mining, and thus the sector as a whole needs to come up with more immediate ways to conserve energy.

Various types of transformers for the mining industry:

Transformers can be used in various open pit and hard rock (subterranean) applications that range from auxiliary lighting loads to power for cranes, drag lines, conveyor belts and other miscellaneous dedicated variable speed drive applications.

Benefits of energy-efficient mining

• Reduced cost of production

• Opening up of new reserves for Conclusion

On one hand the mining industry is all set to grow to keep up with increasing demand; on the other it has to stay competitive as fuel prices zoom upwards. For an energy intensive industry, keeping a check on fuel consumption and cost is critical. Thus the mining industry as a whole is looking for energy efficient technology, including power transformers.

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Source by Mike Dickinson

How to Improve the Shipping and Receiving Methods of Your Manufacturing Firm

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Why shipping and receiving affects the entire process

A recent idea that reduced product weight by 60%, cut fuel bills and cut tyre costs down by 6%. With a fleet of over 100 vehicles, this is just one small project idea out of five to emerge from a program of high impact change management. Internal procedures and methods are easy to devise but hard to turn into reality. Whether starting from scratch or overhauling existing systems, this general prompt list is a useful guide. Equipping and design becomes considerably easier when you have a map with a clear way marked out for you. Set out as a 10 point list of general rules and consequences, the idea is to help you think through the subject headings and support the thought process in an orderly set of steps. This method will help produce a workable system with a minimum of shocks and surprises which inevitably dog all change management. All quality systems benefit from totally thinking through the job. Micro-managing the process now will save you a lot of money and time later and equipment selection will be a lot less hazardous.

Design – Start with a design for the entire system otherwise you will discover to your cost that changes rarely just affect one small area of your business. Rule 1, therefore, is don’t fiddle about with small areas of malfunction because you are likely to make things worse.

Traceability – If you don’t have time to do it correctly at the outset where are you going to find the time to put it right? Rule 2 – spend some time thinking about how to get what you sent to your customer back to your supplier again without bankrupting yourself in the process.

Handling – If you think handling and storage systems are expensive wait until you pick up the bill for labour, injuries, duplicated and damaged stock. Rule 3 – design your operation to be able to efficiently deal with through put. Everything in its place and a place for everything..including charging batteries! (18 months ago, a few weeks after taking delivery of their new fork truck, one of my customers allowed the battery to run right down. This truck cost nearly £38,000, the replacement batteries were just short of £5,000. They also lost a lot of time whilst things were sorted out).

The Smallest unit of measurable cost – How much control do you require? Pallet sized or pint sized, are you selling bricks or diamonds? This is your reporting size for your monthly performance review and it seriously effects how you interface with your supporting distribution and logistics work. Rule 4 – round up the pennies and the pounds will look after themselves

Storage – Considerations for this includes on or off site stores, work in progress and what you expect suppliers and customers to hold for you. Never hold on to junk or old stock, get rid of it and use the cash or space for something more productive. Rule 5 – be very sure of your operational space needs. These are your fixed overheads and if it is not working you will find these costs expensive and risky to deal with. Use other people’s overheads as a first low cost option before committing yourself to long term leases. Fixed costs have that title for a reason!

Picking Systems – Typing is quicker than walking so start with a well thought out, efficient list. Avoid warehousing or production work at the same time as picking work. Make sure your shelves have all your picking requirements ready to pick. Keep stock recognisable for both picking and counting, either by eye or scanning. Keep stock in easy reach of pickers or picking machinery. Rule 6 – apply the Grand Prix principal, the fastest stock movers get pole position!

Equipment – You will need it. Rule 7 – treat your business like your children. Get the very best and keep the discipline and training as a matter of priority. If you think training is expensive you certainly won’t be able to afford ignorance!

Packaging – This needs to get the product to its destination properly identified and no more. Make it like Christmas for the new owner but at the same price as Christmas paper. When it is opened it should still have that magical pleasure of Christmas and like Christmas if it going to be thrown down chimney pots it should be protected from Santa’s little helpers and reindeer shocks. If you are going to send out as many Christmas presents as Santa does, make sure you have good cross dock and marshaling systems that do the counting and sorting quickly. Rule 8 – think the journey though from the shelf to the opening ceremony. You don’t want it back in bits. Sending goods out twice wastes resources and alerts the customer to possible system issues.

Packing – This is an operation and needs to flow with everything on hand and with as few process interruptions as possible. Connect it quickly to issuing invoices or contents notes, or receipts if it has been prepaid. Rule 9 – make packing as continuous and uninterrupted as possible as it cuts down mistakes due to distractions.

Minimum Order Values – Add up the time your product takes to turnover on an activity basis. Batch them up into the minimum quantity which produces enough gross profit to pay for it or make that your minimum charge regardless of quantity, then factor in good will…or not! Rule 10 – study your order book carefully and make sure the value you add covers your costs.

Bonus Idea – All systems should consider the environment. All systems should allow for a tidy work place. Make sure your products are well protected but yet easy to access. Products which have their own boxes or cases should consider the on going role and environment by keeping to the point and be well supported with maintenance and application ideas. Never miss the chance to let the user know what else you do, especially if it improves their day

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Source by Paul Casebourne