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Computational heat transfer flow modeling is one of the great challenges in the classical sciences. As with most problems in engineering, the interest in the heat transfer augmentation is increasing due to its extreme importance in various industrial applications. This paper deals with the analysis of heat transfer for fluid flowing through the pipe with and without internal threads using CFD. Using CFD codes for modeling the heat and fluid flow is an efficient tool for predicting equipment performance. CFD offers a convenient means to study the detailed flows and heat exchange processes, which take place inside the tube. Simulations were carried out using commercial CFD software ANSYS Fluent version 14.5. Friction factor and Nusselt number for air flowing through the specified tube (internal diameter = 0.005 m, length = 0.1 m) were obtained first for the plain tube and then for the tube with internal threads with pitch 5mm in the Reynolds number range of 2000 to 5000. Finally results will be compared to available experimental and analytical calculations. The data obtained by simulation are matching with the literature value for a plain tube with the discrepancy of less than plus or minus 5% for Nusselt number and for the friction factor. Enhanced heat transfer for the tube with internal threads has been observed. Heat flux is more uniform all along the tube and decreases uniformly towards the center.
FLUID FLOW ANALYSIS IN AIR DUCT FLOW WITH AND WITHOUT INTERNAL THREADS USING ...
FLUID FLOW ANALYSIS IN AIR DUCT FLOW WITH AND WITHOUT INTERNAL THREADS USING ...
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Computational heat transfer flow modeling is one of the great challenges in the classical sciences. As with most problems in engineering, the interest in the heat transfer augmentation is increasing due to its extreme importance in various industrial applications. This paper deals with the analysis of heat transfer for fluid flowing through the pipe with and without internal threads using CFD. Using CFD codes for modeling the heat and fluid flow is an efficient tool for predicting equipment performance. CFD offers a convenient means to study the detailed flows and heat exchange processes, which take place inside the tube. Simulations were carried out using commercial CFD software ANSYS Fluent version 14.5. Friction factor and Nusselt number for air flowing through the specified tube (internal diameter = 0.005 m, length = 0.1 m) were obtained first for the plain tube and then for the tube with internal threads with pitch 5mm in the Reynolds number range of 2000 to 5000. Finally results will be compared to available experimental and analytical calculations. The data obtained by simulation are matching with the literature value for a plain tube with the discrepancy of less than plus or minus 5% for Nusselt number and for the friction factor. Enhanced heat transfer for the tube with internal threads has been observed. Heat flux is more uniform all along the tube and decreases uniformly towards the center.
FLUID FLOW ANALYSIS IN AIR DUCT FLOW WITH AND WITHOUT INTERNAL THREADS USING ...
FLUID FLOW ANALYSIS IN AIR DUCT FLOW WITH AND WITHOUT INTERNAL THREADS USING ...
IAEME Publication
Gate valves are used when a straight-line flow of fluid and minimum restriction is desired. Gate valves are so named because the part that either stops or allows flow of fluid through the valve acts somewhat like the opening or closing of a gate and is called, appropriately, the gate. This gate valve is widely used in various industries like refineries, petrochemical complexes, fertilizer plants, power generation plants (hydro - electric, thermal and nuclear) steel plants and allied industries etc. for a various process. The objective of this project is to perform a stress analysis and temperature distribution of valve body of the Gate Valve. The seat ring is welded with the valve body by using gas tungsten arc welding. A model of body and seat ring of Gate Valve is developed in SOLID WORKS 2014, and analyzed in ANSYS 15. Gate valve stress analysis and temperature distribution is done by Finite Element Method using ANSYS15. The main purpose is to create a model of the gate valve body and analysis the loaddeformation, stress concentration, temperature distribution and directional heat flowin the valve body at the place where the seat ring is welded.
DESIGN AND ANALYSIS OF GATE VALVE BODY AND SEAT RING
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Rainfall and temperature are important parameters that determine the climatic condition of a region andis a growing concern in the current situation. Growing industrialization and increasing use of fossil fuels are putting pressure and effecting the regional and global temperatures that are subsequently influencing the overall precipitation levels. GCC and Arab countries are mostly dominated by dry climate and hot winds for most part of the year with little or no rainfall in most regions. In Middle east, specifically GCC countries economy depends on oil and gas production, processing, and exports, and these resources are used for electricity generation across all the six countries. This practice invariably is releasing more of greenhouse gases coupled with industrial emissions annually from industrialized zones. Among the six GCC nations, Oman has the second largest land area next to Saudi Arabia and has significant quantities of oil and gas resources and limited ground water resources. Scarcity of ground water poses serious problems for farming and potable water that cannot be supported by scanty or less rainfall annually. In absence of considerable data on rainfall pattern and temperature deviations, this paper is focused to highlight the rainfall scenario over temperature changes by studying the rainfall patterns over three designated regions for a certain duration. In Oman rainfall patterns and temperatures are stimulated by the weather changes and mostly by heavy industrialization in the recent past. Precipitation data and temperature profiles are two dependent parameters that are analyzed to achieve the objectives of the study. Regression analysis is performed to understand the trend in the rainfall pattern with changes in temperature in the three designated regions of Oman using the data of 14 years. The study revealed significant outcomes indicating distinct relationship between rainfall and temperature. Changing ambient temperatures in each region has shown to influence the rainfall pattern differently in Muscat region contrasting the Maseira and Sur region of the study area. The trend in rainfall pattern with one unit temperature variations are not uniform across all the three study regions that show apparent variations due the differently contributing factors such as topography, wind speed, direction, mountain ranges, relative humidity, and proximity to sea etc. that would govern the precipitation rates
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Destaque
Gate valves are used when a straight-line flow of fluid and minimum restriction is desired. Gate valves are so named because the part that either stops or allows flow of fluid through the valve acts somewhat like the opening or closing of a gate and is called, appropriately, the gate. This gate valve is widely used in various industries like refineries, petrochemical complexes, fertilizer plants, power generation plants (hydro - electric, thermal and nuclear) steel plants and allied industries etc. for a various process. The objective of this project is to perform a stress analysis and temperature distribution of valve body of the Gate Valve. The seat ring is welded with the valve body by using gas tungsten arc welding. A model of body and seat ring of Gate Valve is developed in SOLID WORKS 2014, and analyzed in ANSYS 15. Gate valve stress analysis and temperature distribution is done by Finite Element Method using ANSYS15. The main purpose is to create a model of the gate valve body and analysis the loaddeformation, stress concentration, temperature distribution and directional heat flowin the valve body at the place where the seat ring is welded.
DESIGN AND ANALYSIS OF GATE VALVE BODY AND SEAT RING
DESIGN AND ANALYSIS OF GATE VALVE BODY AND SEAT RING
IAEME Publication
Rainfall and temperature are important parameters that determine the climatic condition of a region andis a growing concern in the current situation. Growing industrialization and increasing use of fossil fuels are putting pressure and effecting the regional and global temperatures that are subsequently influencing the overall precipitation levels. GCC and Arab countries are mostly dominated by dry climate and hot winds for most part of the year with little or no rainfall in most regions. In Middle east, specifically GCC countries economy depends on oil and gas production, processing, and exports, and these resources are used for electricity generation across all the six countries. This practice invariably is releasing more of greenhouse gases coupled with industrial emissions annually from industrialized zones. Among the six GCC nations, Oman has the second largest land area next to Saudi Arabia and has significant quantities of oil and gas resources and limited ground water resources. Scarcity of ground water poses serious problems for farming and potable water that cannot be supported by scanty or less rainfall annually. In absence of considerable data on rainfall pattern and temperature deviations, this paper is focused to highlight the rainfall scenario over temperature changes by studying the rainfall patterns over three designated regions for a certain duration. In Oman rainfall patterns and temperatures are stimulated by the weather changes and mostly by heavy industrialization in the recent past. Precipitation data and temperature profiles are two dependent parameters that are analyzed to achieve the objectives of the study. Regression analysis is performed to understand the trend in the rainfall pattern with changes in temperature in the three designated regions of Oman using the data of 14 years. The study revealed significant outcomes indicating distinct relationship between rainfall and temperature. Changing ambient temperatures in each region has shown to influence the rainfall pattern differently in Muscat region contrasting the Maseira and Sur region of the study area. The trend in rainfall pattern with one unit temperature variations are not uniform across all the three study regions that show apparent variations due the differently contributing factors such as topography, wind speed, direction, mountain ranges, relative humidity, and proximity to sea etc. that would govern the precipitation rates
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Miksi pullotetusta vedestä maksetaan virvoitusjuomaveroa?
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DESIGN AND ANALYSIS OF GATE VALVE BODY AND SEAT RING
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