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Author(s): 

RAO A.R. | KUMAR B.

Issue Info: 
  • Year: 

    2006
  • Volume: 

    3
  • Issue: 

    4
  • Pages: 

    425-433
Measures: 
  • Citations: 

    0
  • Views: 

    424
  • Downloads: 

    160
Abstract: 

Surface aeration experiments were conducted in two types of Rectangular tanks of aspect ratios i.e., length to width ratio (L/W) of 1.5 and 2 and developed simulation equations to correlate the oxygen transfer coefficient, k and power number, P0 with a parameter governing theoretical power per unit volume X. The parameter X is defined as equal to F4/3R1/3, where F and R are impellers’ Froude and Reynolds numbers respectively). Results have shown that the P0 can not be simulated singularly with either Reynolds number, R or Froude number, F, which results in scale effects; there appears to be a need to incorporate the effects of both F and R. It was found that P0 is uniquely related to X for Rectangular aeration tanks of both aspect ratios, however, such relationships are different depending upon the aspect ratios. It has been demonstrated that energy can be saved substantially if the aeration tanks are run at relatively higher input powers. It is also demonstrated that smaller sized tanks are more energy conservative and economical when compared to big sized tanks, while aerating the same volume of water, and at the same time by maintaining a constant input power in all the tanks irrespective of their size.      

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Issue Info: 
  • Year: 

    2013
  • Volume: 

    15
  • Issue: 

    3-4
  • Pages: 

    183-193
Measures: 
  • Citations: 

    0
  • Views: 

    333
  • Downloads: 

    143
Abstract: 

In this study, the damping effect of the horizontal baffles inside a liquid storage tank is investigated. For this purpose, a numerical model based on the finite volume method is established. The numerical model is used to evaluate the accuracy of the analytical model developed to estimate the hydrodynamic damping caused by wall bounded baffles. For this purpose, several full-scale baffled tanks with different aspect ratios are numerically analyzed, and the validity of the analytical model is discussed with respect to the numerical results. Next, the reduction in sloshing wave height due to the presence of the baffles is considered for selected tanks subjected to seismic excitations. Finally, a simple procedure to seismically evaluate the reduction of sloshing amplitude due to the presence of baffles is proposed and validated using the time history numerical results.

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Issue Info: 
  • Year: 

    2016
  • Volume: 

    8
  • Issue: 

    2
  • Pages: 

    435-445
Measures: 
  • Citations: 

    0
  • Views: 

    597
  • Downloads: 

    806
Abstract: 

Many liquid storage tanks around the world have affected by earthquakes. This structure can store dangerous chemical liquids. Hence dynamic behavior of ground supported Rectangular storage tanks is very important due to their applications in industrial facilities. In current research, the seismic behavior of two water storage Rectangular concrete tanks is examined. For this purpose, these tanks are modeled in FEM software for analyzing. These tanks are analyzed under four type of analysis: static, modal, response-spectrum and time-history analysis. Time history analysis can take all the nonlinear factors into the analysis, so it is used to estimate the exact amount of structural response. In time history analysis, earthquake accelerograms of Tabas, Kobe and Cape Mendocino have been applied to tanks. Finally, it is resulted that Displacement, base shear and wave height obtained from time history analysis are more than those of response spectrum analysis, indicating insufficiency of response spectrum analysis. In time history analysis, the maximum displacement is achieved in highest part of the tanks. It is due to the wave height which created in earthquake. By increasing in dimension, the wave height is also increased.

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Issue Info: 
  • Year: 

    2011
  • Volume: 

    1
  • Issue: 

    1
  • Pages: 

    89-95
Measures: 
  • Citations: 

    0
  • Views: 

    996
  • Downloads: 

    0
Abstract: 

Free surface sloshing of liquid in a Rectangular tank induced by lateral excitation has been studied numerically and experimentally in this paper.The numerical simulation is carried out based on the volume of fluid (VOF) method that provides free surface extraction in such problem.A tank with transparent walls is used to free surface tracking in experimental study while the movement amplitude and frequency of periodic motion is controlled by a reciprocating designed mechanical system. This mechanical device provides a pure lateral periodic motion for liquid tank exciting. Free surface of sloshing liquid in Rectangular tankobtained by image processing. Also a test with a vertical plate in the middle of the tank is carried out to study of the solid baffle effects on sloshing mode shapes and especially on maximum and minimum ofliquidfree surface displacement.Comparison of numerical results and similar experimental tests shows good agreement for low amplitude and low frequency of tank excitations in maximum and minimumof free surface displacement. The average of relative errors estimated less than 10% while they increase by increasing amplitude and frequency excitations due to nonlinear behavior of liquid free surface.

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Issue Info: 
  • Year: 

    2016
  • Volume: 

    18
  • Issue: 

    1
  • Pages: 

    23-32
Measures: 
  • Citations: 

    0
  • Views: 

    248
  • Downloads: 

    90
Abstract: 

Sloshing Wave Impact Force (SWIF) caused by liquid motion during seismic excitations is investigated in this paper. When the freeboard is insufficient, the liquid waves collide to the tank roof on which uplift forces are produced. Due to the complication of sloshing impaction, there is no comprehensive investigation that can clarify the various aspect of this phenomenon. Therefore, most of standards don’t recommend any method to evaluate SWIF. Alternatively, the main approach of related codes and standards is to suggest a required freeboard in order to prevent collision of sloshing wave to the tank roof instead of evaluating the SWIF. However, suggested freeboard is too high to meet economic considerations in some cases.Therefore, the impact forces should be reasonably evaluated based on the experimental measurements and analytical solutions. An experimental investigation has been implemented to clarify the influence of various geometrical parameters on the impact roof pressure and force values of a Rectangular tank. A series of shaking table tests are conducted for a partially filled Rectangular tank under harmonic and different earthquake excitations. The experimental measurements for SWIF are compared with those recommended by code provisions and the effects of various parameters on SWIF are discussed.

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Issue Info: 
  • End Date: 

    اسفند 1388
Measures: 
  • Citations: 

    0
  • Views: 

    281
  • Downloads: 

    0
Keywords: 
Abstract: 

دستگاه های استاندارد پیمایش نفت باید از دقت و درجه اطمینان بالایی برخوردار باشند لذا در مسیر ساخت دستگاه tank prover جهت کالیبره نمودن دستگاه های اندازه گیری پایانه های نفتی، کالیبراسیون آنها مهم ترین بخش طرح ساخت این دستگاه است. در این طرح استانداردهای مختلف کالیبراسیون دستگاه tank prover جمع آوری گردید و پس از بررسی دقیق طرح تمامی استانداردهای مورد نیاز ترجمه و آماده استفاده در طرح ساخت و کالیبراسیون tank prover شده اند. مراحل انجام کالیبراسیون، نحوه انجام هر کدام از مراحل، دستگاه ها و پیمانه های مورد نیاز از جمله موارد بیان شده در این طرح بوده است.

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Journal: 

Scientia Iranica

Issue Info: 
  • Year: 

    2010
  • Volume: 

    17
  • Issue: 

    4 (TRANSACTION B: MECHANICAL ENGINEERING)
  • Pages: 

    241-252
Measures: 
  • Citations: 

    0
  • Views: 

    545
  • Downloads: 

    470
Abstract: 

In primary sedimentation tanks, short-circuiting enlargement of dead zones and high flow mixing problems are caused by circulation regions (dead zones), which can reduce the optimal sedimentation of particles. For proper design of such tanks, the formation of recirculation zones should be avoided. The provision of a baffle as a geometrical medication of a tank may influence the flow field for better sedimentation. Thus, in this study, velocity measurements were performed by a three-dimensional Acoustic Doppler Velocimeter (ADV) to investigate baffle effects on the velocity distribution in a primary Rectangular sedimentation tank, quantitatively. Effects of baffle positioning were also determined. Mean flow analysis shows how a baffle can alter the hydrodynamics of the flow field. It was quantitatively found that the intermediate baffle not only influences the flow field in its downstream, but also affects the flow pattern in its upstream. It was found that the baffle setting and its position relative to the inlet and outlet influences the flow field and the development of flow. Baffled flow may provide better conditions for sedimentation by influencing velocity profiles. However, further detailed experimental study is necessary to fully capture the baffle effect and obtain further insight into the complex flow field in a sedimentation tank.

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Author(s): 

GOLPOUR M. | GHASEMIAN M.

Issue Info: 
  • Year: 

    2007
  • Volume: 

    17
  • Issue: 

    58
  • Pages: 

    140-144
Measures: 
  • Citations: 

    0
  • Views: 

    1268
  • Downloads: 

    0
Abstract: 

Fish tank or swimming granuloma caused by Mycobacterium marinum is an opportunist pathogen commonly found in aquatic environments. We present a 16 year-old boy with frequent exposure to aquarium water who had several nodules (sprotrichoid forms) on his right hand.Pervious studies showed that fish tank granuloma is a rare skin infection (0.27 per 100,000 population in one year). However, taking proper history and considering the patient’s signs and symptoms could be helpful in diagnosis and treatment.

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Issue Info: 
  • Year: 

    2024
  • Volume: 

    13
  • Issue: 

    25
  • Pages: 

    3-32
Measures: 
  • Citations: 

    0
  • Views: 

    15
  • Downloads: 

    0
Abstract: 

In this research, in order to investigate the effect of the piezoelectric patch which is used as a sensor or actuator in rotating flexible structures such as a helicopter blade, the free vibrations of the rotating Rectangular sheet with and without the piezoelectric patch have been presented. First-order shear deformation theory is considered for plate displacement and piezoelectric field. Considering the effect of Coriolis acceleration, centrifugal acceleration and centrifugal in-plane forces, the equations of motion are derived from Hamilton's principle and the electromechanical couple equation is obtained from Maxwell's equation. For piezoelectric, two electrical conditions, open circuit and closed circuit, which are used in sensors and actuators, respectively, have been considered. The equations are discretized with the help of the numerical method of generalized differential squares and the matrices of inertia mass, eccentricity, Coriolis and stiffness matrix are obtained. Natural frequency values for beam and rotating plate have been compared in Abaqus software. Also, the values obtained from the numerical solution in MATLAB have been verified with articles and ABAQUS, which have high accuracy. The effect of parameters such as hub radius, rotation speed, sheet thickness, aspect ratio, piezoelectric patch thickness and applied voltage on the natural frequency of the system has also been investigated.

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Author(s): 

Shamsoddini R.

Issue Info: 
  • Year: 

    2019
  • Volume: 

    8
  • Issue: 

    2
  • Pages: 

    177-187
Measures: 
  • Citations: 

    0
  • Views: 

    103
  • Downloads: 

    58
Abstract: 

Liquid sloshing is a common phenomenon in transporting liquid tanks. Liquid waves lead to fluctuating forces on the tank wall. If the fluctuations are not predicted or controlled, they can lead to large forces and momentum. Baffles can control liquid sloshing fluctuations. One numerical method, widely used to model the liquid sloshing phenomena, is Smoothed Particle Hydrodynamics (SPH). Because of its Lagrangian nature, SPH is suitable for simulating free surface flow. In the present study, a relatively accurate Incompressible SPH (ISPH) method is improved by kernel gradient correction tensors, particle shifting algorithms, turbulence viscosity calculations, and free surface particle detectors is applied for the free surface flow modeling. In comparison to the other SPH simulations and experimental data, the results show that the present algorithm is effective for simulating free surface problems. The present algorithm is applied to simulate liquid sloshing phenomena, while the aim of this study is the investigation of vertical and horizontal baffle effects on the control and damping of liquid sloshing. Results show that, baffle size has a major role in sloshing fluctuation damping for vertical baffles. For horizontal baffles, also including size, the baffle base position has a significant role in liquid sloshing fluctuation damping. When horizontal baffle is near the free surface, sloshing fluctuation-damping increases.

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