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Heat transfer is associated with the process of transmission of energy from one region to another as a result of temperature difference between them.The process of free convection as a mode of heat transfer has wide applications in the fields of Chemical Engineering, Aeronautical and Nuclear power generation. Radiative flow plays a vital role in many industrial and environmental process, example, heating and cooling chambers, fossil fuel combustion energy process, evaporation from large open water reservoirs, astro physical flows and solar power technology etc. Heat transfer in porous thermal insulation within vertical cylindrical annular enable engineers to use insulation more effectively. In view of these applications this book is useful for engineers of different fields,researchers etc.
Over the past several years, power demand is immensely increasing in isolated mode or grid connected mode of applications continuously due to the growth in demand of various classes of consumers like domestic, industrial, agricultural, and etc. To meet this, various conventional power plants are operating by using fossil fuels as major resource. But in future, these resources may evaporate, and need to look for the availability of alternative energy sources, and hence renewable energy based hybrid power system is designed. Combining several different types of power sources will forms a system, which is known as "Hybrid Power System . This book gives an overview of different architectures of HPS and also energy, load forecasting, and maintenance scheduling of the plant by using Artificial Neural Networks (ANN).
India's energy sector is still depended on imports and only 5% of total population using energy currently. IEA estimates that India's economy will grow at higher rate and it will be same as US economy in 2040. The distance from major fossil fuel reach countries to Indian borders are not more than 1000 to 2000 km either by sea or land route. The best possible mode for importing natural gas is trans-national pipelines from Turkmenistan, Myanmar or Iran. Turkmenistan, Afghanistan, Pakistan and India Pipeline - "TAPI Pipeline" is 1735 km long land pipeline travel through these countries. This pipeline will have annual discharge capacity of 33BCM play crucial role in domestic demand - supply. The research objective of this is to analyze different actors in risk, their role in the risks and their possible long term impacts. This risk categorized as security, price, geopolitics, environment, legal, economical, production and demand supply. The study develops some scenarios on the basis of changing circumstances and some pertinent issues with pipeline's technical feasibility.
Power extension of grid to isolated regions is associated with technical and economic issues. It has encouraged exploration and exploitation of decentralized power generation using renewable energy sources. Renewable energy sources-based power generation involves uncertain availability of power source round the clock. This problem has been overcome to certain extent by installing appropriate integrated energy storage unit. This Book presents technical review of hybrid wind and photovoltaic generation in standalone mode. Associated components like converters, storage unit, controllers, and optimization techniques affect overall generation. Wind and photovoltaic energy are readily available, omnipresent, and expected to contribute major future energy market. It can serve to overcome global warming problem arising due to emissions in fossil fuel based thermal generation units. This book includes the study of progressive development of standalone renewable generation units based on wind and PV microgrids.
Mixed systems occur in several forms. For example, pastoral systems have experience in the management of mixed herds and of livestock with feed resources. One form of mixing occurs where livestock is kept on grazing lands distant from cropland in the EXPAGR mode where land is abundant. Mixed systems can also occur as a combination of specialized farms that exchange resources among them, particularly in HEIA.This report focuses on the kind of mixing that is found in integrated crop-livestock systems. Diversified systems are a combination of specialized subsystems that aim to reduce risk in conditions of variable but relatively abundant resources. Strong integration is associated with LEIA and NCA conditions where use of resources such as fertilizer and fossil fuel is restricted because of problems with pollution. This gives clues to development workers and policy-makers: cheap resources lead to specialization, restricted use of resources leads to mixing. An important aspect in promoting mixed farming is that the yield of the total enterprise is more important than the yield and/or efficiency of the parts. This is elaborated in the next chapter in which the technologies are presented
Fossil fuels are getting exhausted very fast and their replenishment is limited. So the search for alternate energy is of prime importance to the world in general and oil deficient developing countries in particular. Biomass based renewable crop residues like cotton stalk is one such option. Cotton stalk can be gasified in a downdraft gasifier. The producer gas from the gasifier can be used for thermal applications or the gas after cleaning in a gas conditioning unit can be used to run a diesel engine-alternator assembly to produce electricity. Diesel replacement of the order of 61% is attainable. The cost of power generation from the cotton stalk in dual fuel mode is less than that in diesel alone mode at all brake loads except at very low load(20%). The maximum savings occur at 80% of the full load.
As future drilling and exploration moves towards ultra deeper-waters in search of fossil fuel, as a result of man's insatiable quest for cheap energy due to its teeming large population growth, thereby necessitating the need of durable and reliable offshore structures such as "Offshore Triceratops" amongst other offshore structure. This is due to its innovative characteristics, as it combines the major characteristics of Tension Leg Platforms (TLPs) and Spars for ultra deep water explorations. Offshore Triceratops is composed of a deck structure that seats on three (3) Buoyant Leg Structures (BLSs) linked together by ball joints which makes the structure stable and heave restrained, where pitch and roll motion is absent with minimal level of surge and sway during operation. In other words, the three (3) BLSs are anchored to the ground to ensure stability, but the ball joints are prone to the effects of corrosion, wear, barnacles etc. which in the long run hampers the performance of the ball joint and may result in the collapse of the entire structure. This book addresses the causes of ball joint failure in Offshore Triceratops using Failure Mode and Effect Analysis (FEA) approach.