About: Power System Engineering is an academic journal. The journal publishes majorly in the area(s): Boiler (power generation) & Combustion. Over the lifetime, 1090 publications have been published receiving 1563 citations.
TL;DR: In this paper, the three main factors affecting net coal consumption rate in fossil power plant are generator load, environment temperature and fired coal characteristics, which are discussed for the kinds of generator unit varying from 125 MW ultra-high-pressure units to 1000MW ultra-supercritical units.
Abstract: The three main factors affecting net coal consumption rate in fossil power plant are generator load, environment temperature and fired coal characteristics. The affects of generator load on coal consumption rate are discussed for the kinds of generator unit varying from 125 MW ultra-high-pressure units to 1000MW ultra-supercritical units, the curves of coal consumption rate with generator load are offered, which are mostly depended on turbine efficiency and electric power consumed by the unit, the power unit time load profiles also work on coal consumption rate.
TL;DR: In this article, the aerodynamic performance of three-dimensional small-size axial fan (SSAF) with the different depth of bellmouth was analyzed, and the static pressure coefficients analyzed by LES predict a little bit larger than measurements except stall region regardless of the installation depth between SSAF and bellmouth.
Abstract: The unsteady-state, incompressible and three-dimensional large eddy simulation(LES) was carried out to analyze the aerodynamic performance of three-dimensional small-size axial fan(SSAF) with the different depth of bellmouth. The static pressure coefficients analyzed by LES predict a little bit larger than measurements except stall region regardless of the installation depth between SSAF and bellmouth. Moreover, static pressure efficiencies analyzed by LES show about maximum 30% at the actual operating point ranges, but measurements do not. Therefore, if the blades of conventional SSAF have some more rigidity and complete dynamic balance, the aerodynamic performance of SSAF will be some more improved. In consequence, LES shows the best prediction performance in comparison with any other Reynolds averaged Navier-Stokes(RANS) method.
TL;DR: In this article, the power performance and emission characteristics of the high speed direct injection diesel engine (2.9 litter displacements) driven by soybean oil asknown a bio diesel fuel.
Abstract: This paper describes the power performance and emission characteristics of the high speed direct injection diesel engine (2.9 litter displacements) driven by soybean oil asknown a bio diesel fuel. The results were compared to diesel fuel with blending bio diesel fuels. The soybean bio diesel fuel was added in the diesel fuel in concentration varying from 25% to 75% volume rates. We measured the emissions according to ECE 13 mode and full load, fixedengine speed. When the 25% bio diesel fuel was used, NOx emission at the ECE 13 mode test slightly decreased compared with diesel base engine. Over engine speed of 2000 rpm, the level of unburned hydrocarbon(HC) and carbon monoxide(CO) were the same to the diesel engine. Smoke emission decreased asthe blending bio diesel fuel rate increased.
TL;DR: A stereo camerabased distance measurement system for automatic berthing control using a stereo camera mounted on a rotation control device, and a radial pattern target and validated the distance error for target incline due to the relative position and attitude between a camera and a target in miniature scale.
Abstract: In this paper, we propose a distance measurement system for automatic berthing control using a stereo camera mounted on a rotation control device, and a radial pattern target. Automatically controlling the position and attitude of a ship aims to prevent maritime accidents due to human error. Our goal is to measure the relative distance between a ship and an onshore or offshore target for berthing. Therefore, the distance should be continuously measured while tracking a fixed point on a target. To this end, we developed a stereo camerabased distance measurement system that satisfied these requirements. This paper describes the structure and principle of the measurement system. We validate the distance error for target incline due to the relative position and attitude between a camera and a target in miniature scale. In addition, the findings of an experiment in an outdoor environment demonstrate that the proposed measurement system has accuracy within 1 m at a range of 20-100 m which is the acceptable accuracy for automatic berthing.
TL;DR: In this paper, a direct analogy between the pipe flow network and the electric circuit network has been utilized to set up a mathematical model for oil supply system, and the total amount of the oil flow rate drawn into the shaft has been measured and compared reasonably well with the prediction of the numerical simulation.
Abstract: For a reciprocating compressor of household refrigerators, a direct analogy between the pipe flow network and the electric circuit network has been utilized to set up a mathematical model for oil supply system. Individual lubrication elements of the oil supply system, such as propeller- installed oil cap, oil galleries, radial oil feeding holes, spiral oil grooves, and various sliding surfaces have been analogized by equivalent electric elements, and these have been combined together to form an electric circuit corresponding to the whole oil supply system. By solving the closed network equations of the model, oil flow rates at various lubrication elements could be obtained. Total amount of the oil flow rate drawn into the shaft has been measured and compared reasonably well with the prediction of the numerical simulation.