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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Next -Generation Management Software for Blade Environments

Hewlett-Packard (HP) designed the HP BladeSystem portfolio to address some of the key total cost of ownership (TCO) issues facing today’s datacenter, including server management costs, utilization, and power and cooling. Since the launch of the HP BladeSystem c-Class family in 2006, HP has risen to claim the number 1 spot in the blade server market. As part of the BladeSystem, HP features three fundamental technologies: HP Insight Software for infrastructure management HP Virtual Connect for virtual I/O networking HP Thermal Logic for power and cooling These technologies play a central role in reducing overall datacenter operating expenses. They also differentiate HP BladeSystem both from competitive blade offerings and from rack-optimized servers. Request Free!

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Next -Generation Management Software for Blade Environments

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Energy Efficient Cooling for Data Centers: A Close-Coupled Row Solution

The trend of increasing heat densities in data centers has held consistent with advances in computing technology for many years. As power density increased, it became evident that the degree of difficulty in cooling these higher power demand loads was also increasing. In recent years, traditional cooling system design has proven inadequate to remove concentrated heat loads (up to and greater than 20 kW per rack). This has driven an architectural shift in data center cooling. The advent of a newer cooling architecture that was designed for the higher densities has brought with it increased efficiencies for the data center. This white paper discusses the efficiency benefits of row-based cooling compared to two other common cooling architectures. Request Free!

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Energy Efficient Cooling for Data Centers: A Close-Coupled Row Solution

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Industrial WaterWorld

Industrial WaterWorld is written for management, operations, engineering and consulting professionals in the industrial process water and wastewater industry. The magazine reports the news and product/service information you need to successfully plan, design, operate and maintain industrial water systems. Topics include discussion of traditional and membrane filtration systems, ion exchange, disinfection, odor control, valves, pumps, corrosion control, zero liquid discharge, water reuse, boiler feedwater treatment and cooling water systems. Request Free!

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Industrial WaterWorld

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Automotive Systems and their Maintenance

Automobile is a vital object of your life and it is used for turning your life forward. To understand your car finer and make it intact you have to think your car as a absolute automatic system. And like all automotive systems it requires upkeep to make alive. Time we use cars or vehicles we rarely observance it as a absolute system. Just imagine how the things are structured and how this automotive system works. The variations introduced by vehicle manufacturers are nothing but making automotive systems finer and finer!

All the units in your car from keyless entry to power steering wheel, chrome alloy wheels to power windows, cooling system and engine adjustment all together form automotive systems. And upkeep of automotive systems is not an effortless thing. Today’s car is not a object of big machineries and parts; it is more or less like a computer; fine, fitted with smaller and brainy units. upkeep of it requires intelligence and knowledge. Without suitable knowledge and intent about the systems one cannot just cover the job of maintaining an engine perfectly. Hence it is very strategic for you to give an extra eye to upkeep of automotive systems.

Maintenance of your automotive systems must be done according to standards mentioned by manufacturers. Besides going for the proper upkeep of automotive systems, you can also cerebrate of certain enlistment in your car for improving automotive performance. Such enlistment and installation of parts in your automotive system will raise the performance of your vehicle and gain gas mileage. Given beneath are few accessories which can upgrade the performance of your car.

Reusable Air Filters: Reusable air filters are one of the good units you can buy for your car. It not only saves a favorable deal of money, but such filters have been found to amount acceleration of your vehicle. The use of reusable air filters have also a favorable outcome on environment. Such reusable air filter lasts longer for your car and keeps on keeping the performance uncastrated.

Performance Chips: Most brand new cars are operated by computer chips and those chips terminate the torque and h.p. to be displaced. Recalibrations or performance chips are highly in use these days to improve automotive performance. Installing performance chips will help you amount the torque and h.p. of your vehicle significantly.

Performance Exhaust Systems: This is another way to take care of automotive performance. The catalyst back exhaust system is a extraordinary way to free cornered force and loose the h.p.. This automotive system incorporates larger width exhaust pipe and low restriction muffler tips into your vehicle which lowers the exhaust back pressure. Another favorable gain of this system is a sound impression of your vehicle which is really awesome.

Cold Air Intake: This upgrade system is under the bonnet mod which is utilised to reduce the temperature of air entering the car to amount power of engine. This installation enhances your engine looks besides increasing its power. This object too makes the sound of engine appealing.

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Automotive Air Conditioning Repair – Car Conditioning System Parts

It’s always a pleasure to enjoy the fall of cool air on our body especially during hot summers. So you can attend marriage or any other personal functions or meetings with your face radiating beams of freshness. A powerful car air conditioner could greatly bring down the weariness caused by long drives especially automotive air conditioners in many cars which would be the dream cars of today’s youngsters.

However, automotive air conditioning is always not a standard addition provided in a car. Cars manufactured before 1940 lacked the feature as it was not invented by then. Gradually several enhancements were done to the system. The repair requires a trained professional’s help. People curious to get to know the bottom of things may attempt to do some repairs by themselves exercising caution.

In small air conditioned cars, there may be a slight drop in pick up of the vehicle but this will not be the case with big cars.

The Standard Parts of Automotive Air Conditioning

The automotive air conditioning system comprises seven major parts.

These parts are:

1) Compressor – As heart is to the human body, so is compressor to the AC system. It is basically a pump connected to the engine whose chief function is to compress the refrigerant from the evaporator coils and the compressor, or “the heart of the system,” is a pump that is attached to the engine. Its purpose is to compress and transfer refrigerant gas. The compressor has both an intake and a discharge side.

2) Condenser – It functions very much like the radiator and will most often have a similar appearance. The purpose of the condenser is to radiate or to give away heat, so whenever the AC is switched on condenser must have good supply of air for cooling purposes.

3) Evaporator – Its chief duty is to absorb heat. Besides getting rid of heat from inside your vehicle, it is also responsible for dehumidifying the car. In order to regulate the temperature of the evaporator, pressure introducing pressure regulating devices like orifice tube is necessary

4) The receiver is used in automotive air conditioning systems that employ thermal expansion valves as pressure regulating devices to ensure that this pressure regulating device receives the liquid refrigerant that it needs in order to function. In order to do so, it must separate gas and liquid.

5) The accumulator is used only on automotive air conditioning systems that have the orifice tube as the pressure regulating device, and its main function is to store surplus liquid refrigerant. In doing so, it prevents any liquid from entering the compressor, which could be detrimental to the system.

In spite of the modern advancements that have been made in the automotive field since the introduction of automotive air conditioning, it is still possible to maintain your own system even if it is an olden day style.

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