Download Ebooks: Basic Environmental Engineering

Environmental engineering is one of the most popular, complex and fast growing disciplines in engineering. The scope of environment includes issues from public health, aesthetics, and impact of all development activities, pollution control legislation, standards, regulations, guidelines and their enforcement. Traditionally the application of engineering principles for the protection and enhancement of the quality of environment and protection of public health was called as sanitary engineering or public health engineering. Around 1968 this was changed to environmental engineering.

For conceiving environmental engineering, one has to consider the definition of engineering itself. Engineering may be defined as the application, under limits of scientific principles for the planning, design, execution, operation and maintenance of structures, equipment and systems for the development and benefit of the society. Here the word benefit is more important than the development. The so-called development in some cases may not be in real benefit of the society.

The environmental engineer plans, designs, executes, operates and maintains the water, wastewater and solid waste management plants. Clean, bacteriologically safe, potable drinking water protects and enhances public health. Liquid and solid waste management is a necessary step for healthy living. They also deal with air pollution control. The resulting pure cleaner air is conducive to people’s good health and prevents the building and other materials from the harmful effects of air pollution. The environmental engineer cares for the energy requirements of the society and the ways and means to protect the environment against the various pollutions created through the production and consumption of various goods and comfort conditions. It is the duty of environment engineer to assess the environmental impacts of the various development and other activities. In general one has to work to have sustainable and holistic development. Of course there are always constraints of resources, knowledge, human nature, social and racial considerations that limit the achievement of these goals.

Therefore the environmental engineering is defined as the application of scientific and engineering principles, under limits, for the protection and enhancement of the environment that includes the biotic and abiotic both components.

The environment exists in dynamic equilibrium of its biotic (living) and abiotic (non-living) elements. The solar energy induced photosynthesis synthesizes the carbon as the plant tissue and we get matter in various forms from the trees. The carnivores, humans and animals consume the edible matter. They convert it into the energy required to sustain their lives. Their excreta comes near to the nature and the natural scavengers, bacteria and others convert it into inorganic matter like nutrients due to the biological decomposition. The roots of the plants, to form the edible matter again, extract these nutrients. Like this the nutrient cycle, material cycle, energy cycle and other cycles like hydrological cycle keep on existing until there is a great shock given by the human beings.

“Nature has enough for satisfying everybody’s need but not for anybody’s greed”. Human beings have lost their natural wisdom in want of power to overcome the nature. Since mid century the word has lost nearly one fifth of the topsoil from its cropland, a fifth of its tropical rainforests and animal species. Rapid industrialization and urbanization has increased carbon dioxide levels to the
point where global climate is being affected. The protective ozone shield is being depleted because of the chlorofluorocarbons. The forest, which is a complete ecosystem, is being converted into dead forests. The biodiversity is reducing everywhere in the world.

Biodiversity gives strength to the ecosystem against crisis. Only a well-diversified community can sustain against the extreme conditions. In quest of comfort conditions and well-secured life we have adopted a system, which is completely away from nature. We have made computers for paper less office work but the energy in making and running the computers is more than the savings made.

Of course there are other advantages of computers in computation, up keeping of data etc. But the materials used in making the computer and the disposal of the obsolete ones are drastically against the environment.

The quest of more and more comfort has fetched us far away from natural environment. The input of energy in building sector is increasing day by day. The requirements of both heating and cooling are becoming more and more energy exhaustive. At present the energy requirement in whole world is mainly met by fossil fuels. Nature has created the coal and petroleum in millions of years and we have exhausted them in hundreds of years. In the last 300 years we have consumed most of the coal and almost all of the petroleum products.

Out of the 1,30,000 MW installed capacity of electricity production in India about 66% is by fossil fuels (coal+ petroleum products), 24% by hydropower, 4% by nuclear means and only 6% by renewable energy resources like solar, wind, biomass including small hydropower plants. Still there is a very large potential of renewable energy resources unutilized but the present availability of fossil fuels and the present high cost of electricity production through R.E.S. has restrained their share to only 6%. With the advancement of technology and scarcity of fossil fuels the cost of RES will come down and there share shall increase, but is it the sustainable development? In modern context the idea of sustainable development immerged in the Earth Summit at Rio-De-Janeiro in June 1992 that let us plan a development in which the generations to come, may not become deprived of the resources which we are using today. To achieve this aim we have to control our present rate of consumption of the available resources like the fossil fuels, ground water and conserve the bio diversity and the natural cycles like the hydrological cycle.

While considering the production, consumption or utilization we have also to consider the other part that is pollution. Mixing of unwanted hazardous elements in anything is known as pollution, like mixing of sewage in fresh body of water, mixing of gases, like oxides of nitrogen, oxides of sulphur etc. in the air, increase of noise level etc. Actually the present trend of living is a serious cause of creating pollution in all spheres of life. Today the prosperity, wealth or living standard of a country is measured in terms of the per capita electricity consumption per year. That way India with its per capita consumption of 350 Kwh per year is considered far behind the U.S. which has around 20 times more than this. The advancement of a society is measured in terms of the measures of comfort like air conditioners, or conveyance like bigger and bigger expensive luxury cars. Taller buildings, more and more precious artificial fabric and so on. Production and maintenance of all these has created so much land, water and noise pollution that has overcome the advantages of all these so called advancements. Thus the challenging aspect of environmental engineering is to make balance between the rapid changes in the field of science, technology, health etc. and the very existence of life. Though environmentalism or the environmental consciousness is ancient the environmentalism became an organized force only in 1960s. It started with the publication of the book Silent Spring by Rachel Carson on the pesticide DDT in 1962. Actually the exponential growth of population and the worldwide consumerism imposed a great load on earth’s natural resources and waste management systems.

This text aims at the fundamental, primary knowledge for every one who has a concern about environment. The chapters have been designed to quench the thrust of knowledge of a person, let it be a scientist, an engineer or any one who is concerned about protection of environment and thus a well wisher of society.

This book has been written after gaining 10 years experience of working in the public health engineering department of Rajasthan and 20 years experience of teaching civil engineering students, subjects like environmental engineering, ecology and environmental dynamics, solid waste management etc. Recently environmental engineering has been introduced as a primary course common to first year students of all branches who opt for it. This text is on basic environmental engineering that covers the syllabus of first year semester scheme of the Rajasthan Technical University and other universities. Some portion of the martial presented in this book has bean derived from the work of others, their contribution is greatly ackoweldged. The recommendation of manual of water supply and treatment, manual on Sewerage and Sewage Treatment and manual on Solid Waste Management prepared by the Central public Health and Environmental Engineering organization, Government of India, Ministry of urban development have been closely followed.

I acknowledge my debts to my parents for their blessings, my wife Bharati for her constant support, my daughter Ruchira for her help on computer, my son Saurabh and daughter-in law Surabhi for encouragement. I express my deep sense of gratitude to my teacher Prof. Damodar Sharma, Vice chancellor Rajasthan Technical University, Kota for being a constant source of inspiration for me. I thank Prof. M. P. Poonia Principal Engineering College Bikaner for his valuable suggestions. I thank Dr. A. K. Mathur and other colleagues of my department for their help. I thank Mr. S. Gupta, Managing Director, New Age International Publishers, New Delhi for prompt publication.

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Saving our Beloved Cars and the Automotive Industry

And the US automotive industry is in dire straits. It did not learn from the 1973 energy crisis. It did not learn from the Chrysler experience. It did not learn from Toyota. It continued to depend on old, worn out concepts and on CEO’s that are kept in their positions by nepotism and by boards that do not understand the automotive business.

In a joint effort the Big Three are asking the US government for a $25 billion loan. They argue that government demands for increased fuel efficiency are too expensive to implement and require huge amounts of capital for retooling.

Let’s assume for the moment that the argument has some merit. But how can companies with worldwide manufacturing facilities fail to notice the steady increase in fuel prices and not see the warning signs hoisted by governments across the world that want to limit greenhouse gas emissions and fossil fuel consumption. This neglect is inexcusable. Efforts of US and European governments to limit fuel consumption are misdirected, counterproductive, and coercive. A comprehensive analysis quickly reveals that we must indeed limit and eventually halt greenhouse gas emissions.

OPEC countries will continue their unstoppable increases of petroleum prices. Electric cars, CNG powered cars, and hydrogen powered cars cannot stop carbon dioxide emissions perceptibly and will not make our country independent of OPEC imports. Automotive companies are critically dependent on the fickle and changing preferences of national and international markets.

Industrial companies that follow political hype will be punished sooner or later. Governments are incapable of designing automobiles for the market place. The world is relegated to using automobiles, trucks, trains, ships, and airplanes for the next century and will have to power most of them with liquid transportation fuels. We may be able to use less of them, we will be able to reduce energy consumption, we can use other forms of energy for some transportation, and we can produce petroleum substitutes from biomass. We can even produce biomass without competing with critically important food crops.

In order to minimize fuel consumption quickly, the auto industry is forced to deal with performance features. American drivers cannot avoid covering much longer distances than European or Japanese drivers. American drivers have less access to public transportation, have larger families, and drive on different types of roads. Automotive companies must listen to their customers.

Toyota and Honda have been listening most successfully. American and foreign car companies have developed a wide range of comfortable cars with a wide variety of utilitarian and luxury features. Sportive cars and SUV’s are attracting large numbers of buyers. All cars offer a wide selection of comfort and entertainment features. One major car component has received only peripheral attention; it is the much maligned internal combustion engine.

Many modern internal combustion engines are marvels of engineering. Materials, manufacturing processes, and especially peripheral components have progressed to unprecedented levels of performance and longevity. There is a last frontier that has escaped deserved attention. This is the highly energy efficient combustion engine. This is the type of engine that the automotive engine needs to develop, this is the engine that legislators should make mandatory.

This is the engine that we need to use for at least one more century. Long term the automotive industry has to develop an entirely new, advanced, internal combustion engine! Average energy efficiency of the worlds inventory of combustion engines is somewhere in the lower mid-twenties. Energy efficiency cannot grow indefinitely. When approaching the 50% efficiency mark, it will be difficult and very expensive to increase efficiency by a single percent. Advanced automotive engines are operating in the mid-thirties.

Large stationary engines are breaking the 45% mark. Large engines on trains and ships are getting above 40%. Looking at the total world inventory, we may still have a chance to nearly double energy efficiency and to cut energy consumption of present inventory in half. We cannot reach this goal by legislating fuel consumption of cars only. We can achieve optimum energy efficiency only by reengineering the processes taking place within and around the internal combustion space.

We know that higher compression ratios will increase energy efficiency, we know how to produce high octane fuel, we know why Diesel engines are more efficient, we know how to minimize formation of pollutants. The automotive industry has developed a huge selection of sophisticated electronic components for single cylinder fuel injection, for precise controls of valve motion and ignition timing, and for reclaiming waste energy at the exhaust.

No company seems to have found the nerve to get a jump on the competition and develop the successor to the two more than century old engine concepts; the Otto and the Diesel engines. If the US government decides to extend a $25 billion loan to the automotive industry, it should attach a few conditions. The loan needs to be secured and must take precedent over shareholder equity. The loan should stipulate that the salaries of top management are tethered to salaries of other top CEO’s like that of the US President.

The obscene bonuses of yesterday should be paid only after a waiting period of at least five years; in which previously agreed upon management objectives must have been met or exceeded. We must stop the prevalent looting of cash from US manufacturing companies by unscrupulous investors. These investors do not contribute anything of lasting value. They are excessively rewarded for ruining once healthy companies. We cannot continue to let a selected few impoverish the many and ruin our country irreparably.

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Lexus Ls 460 Named 2007 Best Engineered Vehicle

In the United States auto market, the highest selling luxury brand is the Lexus. The brand is a division of the Japanese car company Toyota Motor Corporation. Its popularity among luxury car buyer is evident on the increasing acceptance of the Japanese brand in the United States auto scene.

One of the most notable models from the brand is the LS 460. The model is the ultra-luxury model of the brand. It made its debut at the 2006 New York International Auto Show (NYIAS) and since then has received positive reviews and feedbacks from consumers. Recently, the vehicle is named as the 2007 Best Engineered Vehicle by the Automotive Engineering International Magazine.

The Lexus LS 460 received the distinction after it received the most votes from AEI’s subscribers. Kevin Jost, the Editor-In-Chief of the magazine, has this to say about the award: “The voters had good reason for choosing the Lexus LS 460. ‘The LS 460 brings consumers at least nine world-firsts, including safety breakthroughs such as an advanced obstacle-detection system, emergency-steering assist and rear pre-crash systems. For driving pleasure, there’s also an eight-speed automatic transmission.” Indeed, the LS 460 is packed with a variety of features never before seen in a luxury vehicle.

One of the cutting edge features employed by the Lexus LS 460, as stated by Jost, is the eight-speed automatic transmission. This technology allows the vehicle to accelerate quickly since it provides smooth gear changes in with a wide variety of gear ratios. The smooth transmission also reduces the amount of power wasted thus increasing fuel efficiency.

The pre-crash safety systems are also a first for an automobile and the LS 460 provides such. This means that the vehicle not only provides a good performance but also protects its occupants. The obstacle-detection system provides drivers with sufficient warning to avoid possible accidents. The driver-monitoring system is also a feature of the Lexus LS 460. With this technology, safety can be checked basing on the driver’s capacity to properly drive the vehicle.

Safety features also include the emergency-steering assist which checks oversteer and understeer. With the use of sensors and advanced electronic programs, this vehicle can provide valuable steering assistance to avoid or minimize the risk of accidents.

Aside from the said features, the Lexus LS 460 also employs an intelligent powertrain control system. This system adapts to the engine’s need for power and other variables to provide good performance and respectable fuel efficiency. Rear collisions are also one of the most dangerous accidents a motorist can encounter.

To reduce the risk of severe injury caused by rear end collisions, the Lexus LS 460 features a rear pre-crash safety system. Its roof climate diffusers are also one of the advanced features that the LS 460 boasts of. Another advanced feature that made the LS 460 the top choice for most luxury car owners is the VVT-IE electrically actuated camshaft phasers. These features fused with Lexus performance parts truly make this one of the most advanced cars in the world today.

Winning the coveted title is made even sweeter by the fact that it outclassed some of the most famous vehicles. The Lexus LS 460 took the first spot with the Chevy Silverado/GMC Sierra taking the second spot. The Silverado and the Sierra are acknowledged for their remarkable fuel efficiency.

These General Motors vehicles are known to squeeze 20 miles for every gallon. This is despite the fact that the Sierra and the Silverado are both full-size pickup trucks equipped with humongous V8 engines. Taking the third spot is the sports car from German car manufacturer Porsche, the Porsche 911 Turbo. The sports car made is acknowledged as one of the best engineered vehicles due to its advanced materials and aerodynamic engineering.

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Make Your Career in Automobile Engineering

Automobile Engineering, a branch of vehicle engineering, deals with different elements of electrical, electronic, software and safety engineering. In this stream, a student learns how to design, develop, manufacture, test and repair and service automobiles. Today the demand of automobile engineer is growing day by day because India has emerged as the global hub of automobile and autocomponents manufacturer.

An automotive engineer is involved in almost every aspect of cars and trucks designing from the initial concepts to manufacturing them. We can divide this engineering into three main streams for e.g. product engineering, development engineering and manufacturing engineering. Production engineers are commonly known as design engineers that focus on the design components and systems of a car. As a Development engineer, one may involve in various attributes of a car with performance, durability and speed. On the other hand, the manufacturer engineer is involved with how to make and construct various vehicles.

After completing Automobile Engineering from the top institute, a student has excellent job prospects. If an individual has some knowledge in IT, then he can work in designing, CAD, CAM, ERP, testing etc. And as well as if he has MBA degree, he can work as senior manager materials, SCM, CRM, Operations, production, planning and control, tester, consultant and many more. The career options for automobile engineer are Safety engineering, Emissions Research or Controller, performance engineer, Systems engineer, Operations Research, Vehicle Manufacturing Engineer etc.

Sharda University (SGI), the NCR’s largest educational group, also offers B.Tech (automobile engineering) program. This engineering college provides various excellent facilities to the students for e.g. superior quality labs and workshop facilities, world class infrastructure, distinguished faculty members, excellent placement support, soft skills and career skill training, project work, seminars, guest lectures etc. The SGI Institute envisions an ambience of excellence, inspiring value based education, research and development. It also provides excellent support in the placement of students in the top companies of India and abroad. This institute delivers basic education with Application based learning by utilizing Modern Practices.

In short, Automobile Engineering brings ample job opportunities for the students. In this branch of engineering, a student can expertise in providing help to build and test the vehicles and he also learns how to repair and maintain with the appropriate tools and instruments.

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Engineering Scholarships

Engineering is a complex and growing field. There are many types of engineers including: aerospace engineering, agricultural engineering, architectural engineering, civil engineering, electrical engineering, environmental engineering, industrial engineering, manufacturing engineering, mechanical engineering and more. Studying to be an engineer can be costly, but fortunately there are a lot of scholarship and grant opportunities for interested students.

Here are just a few to choose from:

1. BMW/SAE Engineering Scholarship – This annual scholarship is provided by BMW AG in recognition of its commitment to excellence in engineering. BMW is world famous for designing and building luxury, high-performance passenger cars and motorcycles. This scholarship is in support of the SAE Foundation to ensure an adequate supply of well-trained engineers for the future. One $6,000 scholarship will be awarded at $1,500 per year for four years. A 3.0 grade point average must be maintained to renew the scholarship.

2. Edward D. Hendrickson/SAE Engineering Scholarship – Hendrickson International, a Boler Company, established an endowment to underwrite the scholarship in memory of the late Edward D. Hendrickson. One $4,000 scholarship will be awarded at $1,000 per year for four years. A 3.0 grade point average and continued engineering enrollment must be maintained to renew the scholarship.

3. SAE/Ford Partnership for Advanced Studies Scholarship – The Ford Partnership for Advanced Studies (Ford PAS) Scholarship was developed by the Ford Motor Company Fund. This annual scholarship is provided by Ford Motor Company to high school seniors who are a past or present student of a Ford PAS program at their high school or in a Ford PAS after-school/weekend/summer/college program. This scholarship is in support of the SAE Foundation to ensure an adequate supply of well-trained engineers for the future. One $5,000 scholarship will be awarded in the freshman year only.

4. SAE Women Engineers Committee Scholarship – The SAE Women Engineers Committee established this scholarship to encourage young women graduating from high school to enter the field of engineering. They are committed to increasing the diversity of SAE membership, especially by promoting the participation and leadership of women. Applicants must be female, have a 3.0 grade point average and be accepted into an ABET accredited engineering program. One $2,000 scholarship will be awarded for the freshman year only.

5. Tau Beta Pi/SAE Engineering Scholarship – The Tau Beta Pi Association, the engineering honor society, is the world’s largest engineering society. Founding in 1885 in Bethlehem, Pennsylvania, Tau Beta Pi has initiated more than 492,000 members in 122 years.

Six scholarships valued at $1,000 each will be awarded for the freshman year only.

6. TMC/SAE Donald D. Dawson Technical Scholarship – SAE and The Maintenance Council of American Trucking Association have established this technical education scholarship to honor the leadership of Donald D. Dawson. One scholarship will be awarded each year. The student will receive $1,500 a year for up to four years as long as a 3.0 grade point average and continuing engineering enrollment is maintained.

7. Fred M. Young Sr./SAE Engineering Scholarship – The Young Radiator Company established this scholarship in memory of the company’s founder, Fred M. Young, Sr. Mr. Young started the company in 1927 and saw it grow to become a major force in the field of Heat Transfer. One $4,000 scholarship will be awarded at $1,000 per year for four years. A 3.0 grade point average and continued engineering enrollment must be maintained to renew the scholarship.

8. Detroit Section SAE Technical Scholarship – Established in 2001, this scholarship is sponsored by the SAE Detroit Section to encourage children and grandchildren of current Detroit Section members to pursue careers in engineering or the sciences. The Section recognizes that there is a need for more student candidates in these fields, as a shortage of qualified graduates is expected in future years.

Two $3,500 renewable freshman scholarship will be awarded. Student must maintain a 2.5 grade point average and remain in good standing at the college or university in order to qualify for scholarship renewal. A student having completed a two-year program may continue for an additional consecutive two years at a second school offering a complete engineering or science baccalaureate degree program.

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An Auto Engine Overhaul Keep It Clean Under The Hood

Removing an auto engine can be one of the most difficult if not troublesome as well as potentially dangerous phases or parts of the whole process of rebuilding your vehicles automotive motor.

The degree of difficulty becomes compounded when it comes the reverse procedure – when it comes to the time period when it comes to install that auto’s motor back under the hood of the vehicle. You must well remember how everything goes back together under the hood or bonnet of your means of transport otherwise you will not be able to start up that car, truck, van or SUV to drive down those streets, roads, highways and byways. Hence it is essential that you develop and maintain a careful as well as orderly set of procedures in regards to the removal process to help the whole rebuilding or upgrade process go easily and smoothly without hitch.

There are a number of preliminary steps that should be taken before the automotive engine can be removed and the work started on the vehicle.

First of all locating a place to do the work is extremely important. Adequate work space along with storage space for that vehicle or even set of vehicles, if you are providing for parts cars, is needed. If a shop or garage is not available, then at the very least then a flat, level, clean work surface made of concrete or cement is required. If it turns out in your searches and travels that the only surface available is asphalt, then be sure to remember that most jack stands will tend to sink into your asphalt when it comes time to support an extreme amount of weight especially when it comes time to support heavier sets and types of vehicles – be it SUV’s, older well made heavier vintage cars and of course trucks and busses.

Cleaning the power plant compartment and the engine before beginning the whole removal process and procedure will help to keep your tools and tool chest clean and even well and better organized. Often automotive professionals themselves and those in the trade will suggest and recommend to novice mechanics that the best method and methods for cleaning both the engine and engine compartments is to have them steam cleaned themselves by a professional automobile “detail” shop. As an alternate method most often used by home mechanics is to have the engine itself degreased. You can easily purchase a can of engine degreaser - say at your local Canadian tire store or other big box automotive parts outlet. If the motor and other power train components have an extraordinary amount of dirt, grime and grease you might want to consider purchasing two cans. Why have to drive back to the parts store unnecessarily? There are more than one brand or type of engine cleaner and degreaser to choose from , the best advice here by experienced mechanics and car industry professionals is to be sure that the label of the cleaning product specifically designates the product as an “engine degreaser” not a brake or other type of cleanser.

Before the vehicle is dissembled itself, you can drive the vehicle over to a self service car wash or alternate where you can find high pressure cleaning equipment as well as proper drainage for the dirty water left over from engine compartment degreasing. Make sure that the trip over to the car wash has allowed the engine to heat up to normal operating temperatures to allow the degreaser solution to do its work in softening up and removing the long baked on dirt , grease and engine compartment grime. You can use a few old rags as well as plastic bags to cover areas that you do not want to get wet – for example electrical components as well as distributors and electric coils in older vintage cars and vehicles. Of course this will help the engine to start, and you drive away easily and without fuss after the whole cleaning process are over.

It’s always easiest to work on a clean engine both before, during an engine overhaul as well as the whole process of putting the motor and its automotive components back to the condition where it can be simply driven away – back to automotive owner or car lot where it came from.

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