Friday, September 22, 2017

3 Differences Between a Feasibility Study and a Business Plan


There seems to be a mix up between a feasibility report and a business blueprint or plan. While some say they are the same, others argue they are not. So I want to use this medium to draw a line between a feasibility study and a business plan.

Though the process involved in developing feasibility report and a business plan are similar, I will reveal to you some basic differences:

1) Feasibility is carried out with the aim of finding out the workability and profitability of a business venture. Before anything is invested in a new business venture, a feasibility study is carried out to know if the business venture is worth the time, effort and resources.

On the other hand, a biz plan is developed only after it has been established that a business opportunity exist. This simply means that a biz plan is prepared after a feasibility study has been conducted.

2) A feasibility report is filled with calculations, analysis and estimated projections while a business blueprint or plan is made up of mostly tactics and strategies to be implemented in other to grow the business.

3) Feasibility is all about business idea viability while a business plan deals with business growth and sustainability.

I hope this few words I have written has been able to point out the key differences between a feasibility study and a business blueprint or plan. I feel it's also worthwhile to know that a feasibility report or study can readily be converted to a business plan.

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Tuesday, September 19, 2017

Solve Wood Dust Problems With An Industrial Dust Collector



Wood dust or sawdust is a potential problem in virtually all woodworking applications. In any type of woodworking environment, wood dust and wood shavings can lea to serious health and fire hazards. Wood dust is actually classified as a particulate airborne contaminant. A valuable tool used to control wood dust is a duct collection system. Industrial dust collectors are specifically designed to remove particulate airborne contaminants at the source.
Wood dust has been identified by the Occupational Safety and Health Administration (OSHA) as both a potential safety and health hazard. Constant exposure to wood dust can cause long-term health problems and can be an irritant to the sinuses, skin and lungs in the short-term. Woodshop owners would be wise to refer to the OSHA standards for wood dust exposure for employees.
There are many good reasons other than health for using a dust collector in woodshops. Wood burns and the dust that is created from cutting it is a serious potential fire hazard. If fine, powdery wood dust is heavily concentrated in the air and exposed to a spark, it can cause an explosion, similar to what can happen in a grain silo. If you are trying to apply smooth finishes with wood dust hanging in the air, the dust will create imperfections on the finished product. Wood dust can also have a negative effect on power tools and machinery, shortening their lifespan.
There are three primary factors to consider when designing a dust collection system for your woodshop. First, you must determine how many CFM (cubic feet per minute) of air movement is needed in your collection system to handle your shops wood dust output. Secondly, it is vital to lay-out a system that insures your shop tools, collector, and ductwork provide maximum efficiency for you requirements. The third factor is to determine whether to use a single or double stage collection system.
A single stage dust collector pulls the wood debris through an impeller and deposits it in a collection bag or bin. A double or dual stage collection system deposits the larger wood pieces and shavings in a bin before they reach the impeller. The fine wood dust passes the impeller and is collected in a storage container. This stops metal objects like nails and screws from hitting the impeller and causing a spark. Dust collection creates a static electrical charge, so all collector systems must be grounded with copper wire to prevent combustion.

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Saturday, September 16, 2017

Engineering Firms: How to Hire Qualified Engineering Services


Have you ever had to hire an engineering firm? If you have you know it is often a tedious process with many variables. Engineering firms come in many sizes from one consultant to firms that have consultants from all different disciplines within engineering. How do you find the right consultant for your job big or small?

There are several different types of engineers. There are primarily four main fields of engineering including civil engineering, mechanical engineering, electrical engineering and chemical engineering. Most every other type of engineering can be included in a subcategory linked to one of the main fields of engineering. Believe it or not each subcategory can easily be broken down further. This is why hiring an engineering firm is so complicated.

There are five main objectives that need to be looked at when hiring an engineering firm for your next project. Follow these tips when hiring an engineering firm to help when your manpower and expertise is not enough.

Qualifications: Ask yourself when you start looking for engineering firms what are the requirements for the project. This will make it far easier to narrow down which firm's offer services that will help you lead to the project's completion. Look into several firms qualifications and immediately eliminate any firm who you don't think will be able to fulfill the requirements set forth in the project.

Statement of Qualifications: What do you have to do when you are interviewing for a new position? You have to send a resume in attached with a cover letter proving yourself, right? Have the firms you are interested in do the same for you. Write with them giving them a short description of the project you wish to hire them for to inquire about the firm's interest and qualifications. Give them a specific date to send their interest, qualifications and references into you by.

References: Before you actually hire the firm is when you need to check around and see work that has been completed by them. Word of mouth is a valuable tool to use in hiring anyone for any project. The same holds true for engineering firms. If someone has recently had a good or bad experience with a firm they are likely to share that information with you on your quest to find an engineering firm to work with.

Spreadsheet: Once you have an established list of firms you are serious about hiring you will want to make a spreadsheet to compare the firms based on a few different areas. Some things you might consider comparing are the firm's reputation, their location in comparison to the job, experience with a project similar to yours, how they are compensated, availability of qualified personal, their schedule in comparison to your time line and other important aspects to you.

Selection: When the selections process is coming to a closed you will find that these steps have narrowed your choice down to the most appropriate firm to work on your upcoming project. You will come to a mutual agreement on the scope of the services they will provide to the project and write up a contract based on those items that have been agreed upon.

The selection of an engineering firm is never an easy task. Reward often comes with hard work and I believe this is true when hiring any individual or corporation to work with. Engineering firms should have to work hard to gain your business just as you would when looking to be hired.


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Wednesday, September 13, 2017

Sunday, September 10, 2017

The Most Effective Industrial Dust Collection Systems


Industrial dust collection equipment is used as a form of industrial air cleaning. Most industrial dust collection systems are used in manufacturing workplaces to process large amounts of air and remove fine particles. Without effective industrial dust collection systems, airborne particles could collect in the workplace air and affect employee health as well as doing damage to the correct functioning of equipment.

There are several types of industrial dust collection systems, each with unique methods of removing dust from the air. It's difficult to pinpoint which industrial dust collection system is most effective, but read on below for the basics of each type.

Electrostatic precipitators are industrial dust collection gear that use electrostatic charges to separate dust from the incoming stream of air. The dusty air is "vacuumed" into the system, passed through the pre-filter and through the negative and positive electrodes, which in turn cause the particles to attach to the positively charged grounded electrode, or collection plate. Once the particles have been removed, the clean air passes through a second air filter and back into the room.

Media filtration industrial collection methods are used to filter dust from the incoming air stream by using a screening material or fabric. When the fabric is placed in the path of the air stream, the dust particles are trapped in the fabric, creating a "dust cake." When the dust cake increases, it actually becomes a more effective collection tool by trapping more and more particles from the incoming air.

Cyclone industrial collection systems are large central funnels attached to workplace ducts. Any airborne dust and debris is sucked into the ductwork and transported to the cyclone dust system, and then passed into a high-speed cyclone funnel to separate particles from clean air. Once the separation is complete, the particulate matter is collected in a container, while the smaller dust particles are expelled through an outside vent.

Air washers, also called wet scrubbers, are mostly used as a way to control potential dust fires or explosion risk. The air washer industrial collection method uses water to absorb fine dust particles and then removes the particles in a fine mist which is collected for removal in a clarification tank where the dust settles to the bottom.

Industrial dust collection systems are available in a variety of designs to manage the different types of workplace dust issues. Since dust can remain permanently in lung tissue and has the potential to cause workplace fires and explosions, managing dust properly is the best way to prevent health and safety problems in industrial settings. As you can see, properly chosen industrial dust collection systems are a vital part of most any industry.


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Thursday, September 7, 2017

The Importance Of Engineering Services and Disciplines


Our complex world continues to prosper. It continues to grow and change. The world as we know it and enjoy it is the way it is in part from engineers and the services they provide for us to enjoy. When we cross bridges, flush a toilet, run a lawn mower or enjoy the convenience of driving our car thank an engineer. The branches of engineering run far and wide. The many concentrations and extensions of engineering services allow us to enjoy the benefits we do in society.

Civil engineering is of utmost importance to allow for society to blend growth, functionality and natural environments. The designs, construction and maintenance civil engineers provide allow us to use the land without exploiting it. Within civil engineering there are several sub-disciplines. Each brings a unique twist to the discipline and helps transform the environment.

Geotechnical engineering explores the use of raw materials coming from the Earth and how using the resources will affect the environment as well as the project on a whole. As the name implies they are mainly concerned with the geological resources within a civil engineering project site. They explore, extract and process the raw substances and give analysis and recommendations based on the information collected. For instance when doing land surveys they often perform a soil analysis. If the soil analysis were to find substances within the soil that could be hazardous if leaked into a water supply a project may be moved to another plot of land.

Structural engineering is a division of civil engineering that handles issues that arise with the structures support. They ensure that a structure is stable for the environment that is built. In California buildings are built structurally sound to prevent major disasters during earthquakes. Structural engineering services also provide for buildings to support incredible winds, weather related events and different architectural engineering.

Transportation engineering ensures the safety of people and goods as they are transported via roadways, waterways, rail systems and through the air too. This includes things we take for granted such as stop lights and the way they are timed out. Engineering services provide for us to enjoy traveling safely without too much congestion and without running into one another. They also provide railway safety and air safety to allow for safe travel and design programs to allow for tracking.

Environmental engineering applies to improving, maintaining and protection of the environment we are building in and around. The services they provide are designed around the ecosystem. They apply sanitary engineering, hydraulic engineering and municipal engineering. Working together these engineering services help protect our surroundings and allow the environment and society to design a co-habitat for all the living and non living resources in it.

Civil engineering services are just one of the many that allow our society to function as it does. Engineers design, implement, maintain and provide the analysis to keep us safe and moving forward. Engineering services allow for the function of everyday life and provides solutions for the hiccups that arise.


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Monday, September 4, 2017

Dangers of Dust in the Workplace


Dust extraction safety codes are strictly enforced in every industry. Work area dust extraction systems remove macro and micro sized particles from the air keeping workers safe from work area hazards. Workplace safety is a high priority and a workplace that does not meet health and safety regulations can receive a heavy fine. An effective air cleaning system is an important component of any fabricating or manufacturing plant.

Dust must first be confined before it can be removed and disposed. The vacuum unit draws material towards the intake in the capture hood which is designed for particle containment. The particles are prevented from entering the workspace atmosphere and the particles collect in the removal system disposal unit for safe disposal. The system air flow must be maintained at a constant velocity in order to keep the machine from clogging with dirt.

Dust extraction machines capture, convey, and collect particulate from the air for safe disposal. The particulate is trapped by a capture hood and then conveyed through a series of ducts. The soot is then collected through a pass through filter or the fume extraction arms.

Dust related illness is a major concern because dirty air can lead to such devastating illnesses such as mesothelioma, silicosis, and asbestos lung cancer. Dirty air in the work place can lead to poor skin conditions, eye and nose damage, emphysema, and asthma, if the air is not constantly filtered. Employers are now required to make the workplace a healthy area for their employees meaning that employers must install proper air cleaning devices. Business owners will receive code violation fines if their work place does not have a proper air safety system in place.

Employers must install an exhaust ventilator to clean dirty air from the site the dirt is generated along with a dilution ventilator. Employees working in high dirt areas are required to wear dirt masks with respirators which are more effective than so called nuisance dirt masks. In order to protect skin from constant contact with soot employees must wear protective clothing.

Employees are required to have regular medical checkups in order to identify and signs of soot related illness. An employee that can show that his respiratory or skin illness is a result of employer negligence can file a work compensation claim and receive damages. The safety codes are strictly enforced in order to keep workers healthy and to limit work compensation claims.

Many people do not realize that soot can be explosive depending on the elements in the soot. Soot in a flour plant can gather in the air and become combustible. If a flame is introduced into the cloud of flour soot an explosion can occur which is another reason why soot extractors are so vital in the workplace.

Employers are required to install dust extraction systems in their workplace in order to keep workers free from soot related illnesses. Particulate can enter the airways and cause a number of health disorders such as asthma, emphysema, and even lung cancer. The dangers associated with soot, fumes, and other particulate must be taken seriously which is why companies that do not meet safety code requirements can expect heavy fines. This is why it is important to have the proper dust extraction equipment.


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Friday, September 1, 2017

Fike Presents FAAST



Fike's FAAST Detector featuring the latest in fire alarm air aspiration sensing technology, provides very early warning fire detection.