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Experimental parametric study and design of Piano Key Weirs by O. MACHIELS, M. PIROTTON, A. PIERRE, B. DEWALS and S. ERPICUM, J. Hydraulic Res. 52(3), 2014, 326-335
, Article Journal of Hydraulic Research ; Volume 53, Issue 4 , 2015 , Pages 543-545 ; 00221686 (ISSN) ; Parvaneh, A ; Kabiri Samani, A ; Sharif University of Technology
Taylor and Francis Ltd
2015
Discharge coefficient of oblique labyrinth side weir
, Article 4th European Congress of the International Association of Hydroenvironment engineering and Research, 27 July 2016 through 29 July 2016 ; 2016 , Pages 665-670 ; 9781138029774 (ISBN) ; Parvaneh, A ; Nekooie, M. A ; Sharif University of Technology
CRC Press/Balkema
2016
Abstract
Labyrinth side weir is one type of weirs, which can be used when the length of opening is limited. One of the advantages of labyrinth side weir is to increase the effective length of weir perpendicular to the flow and, therefore, diverting more discharge with the same flow depth and weir geometry (opening and height). Discharge coefficient should be determined to investigate the weir performance and estimate the discharge passing over the weir. In this paper, hydraulic performance of labyrinth side weir with asymmetric geometry has been experimentally studied. The change to the geometry of ordinary labyrinth side weirs causes an increase in the effectiveness of the length of weir as being...
Determination of discharge coefficient of triangular labyrinth side weirs with one and two cycles using the nonlinear PLS method
, Article Sustainable Hydraulics in the Era of Global Change - Proceedings of the 4th European Congress of the International Association of Hydroenvironment engineering and Research, IAHR 2016, 27 July 2016 through 29 July 2016 ; 2016 , Pages 653-657 ; 9781138029774 (ISBN) ; Parvaneh, A ; Kabiri Samani, A ; Sharif University of Technology
CRC Press/Balkema
2016
Abstract
Side weirs are hydraulic control structures widely used in irrigation, drainage networks and waste water treatment plants. These structures can be used for adjusting and diverting of flow with minimum energy loss. In spite of many studies were carried out on rectangular side weirs, the studies on oblique and labyrinth side weirs are scarce. In this study, based on the experimental data from more than 210 laboratory tests and through using the multivariable nonlinear partial least square (PLS) method, two nonlinear equations are presented for discharge coefficient CM of triangular labyrinth side weirs with one and two cycles. The obtained empirical equations relating CM with the relevant...
Effects of anti-vortex plates on air entrainment by free vortex
, Article Scientia Iranica ; Volume 20, Issue 2 , 2013 , Pages 251-258 ; 10263098 (ISSN) ; Borghei, S. M ; Sharif University of Technology
2013
Abstract
Free surface vortex and air entrainment are not favorable experiences in hydropower and pumping projects. While complete omission of vortex and air entrainment is not always cost effective, partially weakened free-surface vortex flow is more economical and practical. Hence, in this study, a comprehensive set of experiments were conducted to partially reduce vortex strength and air entrainment at vertical pipe intakes, using rectangular anti-vortex plates. This phenomenon results in increasing water discharge compared with a corresponding free-surface vortex for the same water depth, i.e. in cases of shaft spillway. The plates were used as singles and in pairs and placed symmetrically and...
Pressure loss in a horizontal two-phase slug flow
, Article Journal of Fluids Engineering, Transactions of the ASME ; Volume 132, Issue 7 , 2010 , Pages 0713041-0713048 ; 00982202 (ISSN) ; Borghei, S. M ; Sharif University of Technology
2010
Abstract
The study of air-water, two-phase flows in hydraulic structures such as pressurized flow tunnels, culverts, sewer pipes, junctions, and similar conduits is of great importance for design purposes. Air can be provided by vortices at water intakes, pumping stations, aerators, steep channels, etc. Under certain conditions, air may also be introduced into pressurized intake systems, which may form large bubbles in portions of the pipe. The bubbles may, in turn, cause an unstable slug flow, or other flow patterns, that leads to sever periodic transient pressure. In this paper, an experimental model (a circular and transparent pipeline, 90 mm in ID and 10 m in length) is used to predict pressure...
Free water surface oscillations in a closed rectangular basin with internal barriers
, Article Scientia Iranica ; Volume 15, Issue 3 , Volume 15, Issue 3 , 2008 , Pages 315-322 ; 10263098 (ISSN) ; Ataie Ashtiani, B ; Sharif University of Technology
Sharif University of Technology
2008
Abstract
Thee enclosed basin has certain natural frequencies of seiche, depending on the geometry of the water boundaries and the bathymetry of water depths. Therefore, the variation in the water surface at a point becomes irregular, as caused by the combination of several natural frequencies, which may be considered as the superposition of sinusoidal frequency components of different amplitude. This paper is mainly concerned with the motion of an incompressible irrotational fluid in a closed rectangular basin with internal impervious barriers. An analytical solution is presented for predicting the characteristic of generated waves in these types of basin. The equations of free water surface...
Discharge coefficient of a rectangular labyrinth weir
, Article Proceedings of the Institution of Civil Engineers: Water Management ; Volume 166, Issue 8 , September , 2013 , Pages 443-451 ; 17417589 (ISSN) ; Javaheri, A ; Borghei, S. M ; Sharif University of Technology
2013
Abstract
A rectangular labyrinth weir has a very good flood release capacity as well as strong economical and structural advantages. In this study, combined analytical and experimental investigations were undertaken for a rectangular labyrinth weir. The analytical model is based on the synthesis of general weir equations and spatially varied flow dynamic equations. A comprehensive set of experiments led to characterisation of the flow behaviour for low and high heads over the weir and indicated the influences of weir geometry on the release capacity. The results show that this type of weir represents an effective weir alternative and could be five times more efficient than a corresponding traditional...
Hydraulic behaviour of flow over an oblique weir
, Article Journal of Hydraulic Research ; Volume 48, Issue 5 , 2010 , Pages 669-673 ; 00221686 (ISSN) ; Ansari, A ; Borghei, S. M ; Sharif University of Technology
2010
Abstract
A comprehensive set of experiments was performed on weirs placed obliquely in a rectangular open channel. The main objectives were to investigate the effect of the weir angle relative to the approach flow direction on the behaviour and the hydraulic flow characteristics and to examine methods such as using upstream guide vanes and inclined aprons to increase the effective oblique weir length. Results indicate that by increasing the oblique angle, the effective length of the oblique weir increases significantly. Relationships are provided for the threshold submergence and the effective length of the oblique weir. Design recommendations are also presented for the use of guide vanes and...
Water hammer in a horizontal rectangular conduit containing air-water two-phase slug flow
, Article Journal of Hydraulic Engineering ; Volume 142, Issue 3 , 2016 ; 07339429 (ISSN) ; Borghei, S. M ; Kabiri Samani, A ; Sharif University of Technology
American Society of Civil Engineers (ASCE)
2016
Abstract
The study of water hammer in air-water, two-phase flows in hydraulic structures such as pressurized pipelines and tunnels, siphons, culverts, and junctions is of great importance for design purposes. Water hammer if combined with a periodic slug flow would lead to severe periodic transient pressure fluctuations inside the conduit. Laboratory experiments have been conducted to investigate waterhammer pressure inside a horizontal rectangular conduit carrying a two-phase, air-water slug flow. Tests were performed in an experimental apparatus comprising a 6.8-m-long transparent pipeline 0.06 m wide and 0.1 m high. By rapidly closing a control gate at the end of the conduit, propagating pressure...
Techno-economic and environmental analysis of sustainable drinking water supply methods in deprived areas (case study of Sistan and Baluchestan)
, Article Urban Water Journal ; Volume 20, Issue 3 , 2023 , Pages 405-421 ; 1573062X (ISSN) ; Meratizaman, M ; Abbasi Godarzi, A ; Mirbabashahisaraei, M ; Sharif University of Technology
Taylor and Francis Ltd
2023
Abstract
Increasing the level of comfort and development and locating in an dry and desert areas has led to decrease in renewable sources of drinking water in eastern Iran Specially in Sistan and Balochestan. Access to drinking water in this area is difficult and its price is high (4 US$ per cubic meter). In this article, two scenarios have been investigated in order to supply sustainable drinking water. (1) Usage of available brackish water resources through brackish water Reverse Osmosis desalination system and (2) Usage of Oman Sea water resources through Sea water Reverse Osmosis desalination system and fresh water transfer by pipeline. Results show that the average prime cost of drinking water...
Discharge capacity of conventional side weirs in supercritical conditions
, Article 4th European Congress of the International Association of Hydroenvironment engineering and Research, IAHR 2016, 27 July 2016 through 29 July 2016 ; 2016 , Pages 658-664 ; 9781138029774 (ISBN) ; Jalili Ghazizadeh, M. R ; Kabiri Samani, A ; Nekooie, M. A ; Sharif University of Technology
CRC Press/Balkema
2016
Abstract
Side weirs are widely used for level control and flow regulation in hydraulic engineering applications such as irrigation, land drainage, and sewer systems. These hydraulic structures allow a part of the flow to spill laterally when the surface of the flow in the main channel rises above the weir crest. The supercritical flow over a side-weir is a typical case of spatially varied flow with decreasing discharge. This study is aimed at investigating the variations of specific energy along the side-weir using experimental results. Some diagrams have been presented in terms of dimensionless ratio of diverted discharge to total discharge. These diagrams which can be used in the design of side...
Numerical analysis of energy piles under different boundary conditions and thermal loading cycles
, Article 3rd European Conference on Unsaturated Soils, 2 September 2016 through 14 September 2016 ; Volume 9 , 2016 ; 22671242 (ISSN) ; Moradshahi, A ; McCartney, J. S ; Kabiri, M. R ; Sharif University of Technology
EDP Sciences
2016
Abstract
The thermo-mechanical behavior of energy piles has been studied extensively in recent years. In the present study, a numerical model was adapted to study the effect of various parameters (e.g. heating/cooling temperature, head loading condition and soil stiffness) on the thermo-mechanical behavior of an energy pile installed in unsaturated sandstone. The results from the simulations were compared with measurements from a thermal response test on a prototype energy pile installed beneath a 1-story building at the US Air Force Academy (USAFA) in Colorado Springs, CO. A good agreement was achieved between the results obtained from the prototype and the numerical models. A parametric evaluation...
Entrapped air in long water tunnels during transition from a pressurized to free-surface flow regime
, Article Scientia Iranica ; Volume 13, Issue 2 , 2006 , Pages 174-186 ; 10263098 (ISSN) ; Borghei, S. M ; Saidi, M. H ; Sharif University of Technology
Sharif University of Technology
2006
Abstract
Air-water two-phase flow usually occurs during a sudden rise in water level at a tunnel or during the falling of the water level at an upstream reservoir while entering the conduit. When this happens, different flow patterns are generated, due to the hydraulics of flow and fluid properties. An analytical/numerical model, based on the assumption of a rigid incompressible water column and a compressible air bubble, is derived, to simulate pressure fluctuation, void fraction, air/water flow rate and water velocity in a closed conduit, including water depth at the upper reservoir, due to air bubbles becoming trapped in the water, for the highest possible number of flow patterns. It is a...
Fluctuation of air-water two-phase flow in horizontal and inclined water pipelines
, Article Journal of Fluids Engineering, Transactions of the ASME ; Volume 129, Issue 1 , 2007 , Pages 1-14 ; 00982202 (ISSN) ; Borghei, S. M ; Saidi, M. H ; Sharif University of Technology
2007
Abstract
Air in water flow is a frequent phenomenon in hydraulic structures. The main reason for air entrainment is vortices at water intakes, pumping stations, tunnel inlets, and so on. The accumulated air, in a conduit, can evolve to a different flow pattern, from stratified to pressurized. Among different patterns, slug is most complex with extreme pressure variations. Due to lack of firm relations between pressure and influential parameters, study of slug flow is very important. Based on an experimental model, pressure fluctuations inside a circular, horizontal, and inclined pipe (90 mm inside diameter and 10 m long) carrying tow-phase air-water slug flow has been studied. Pressure fluctuations...
Transactive-based day-ahead electric vehicles charging scheduling
, Article IEEE Transactions on Transportation Electrification ; 2023 , Pages 1-1 ; 23327782 (ISSN) ; Arjomandi Nezhad, A ; Fotuhi Firuzabad, M ; Shahidehpour, M ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2023
Abstract
In this paper, a transactive-based scheduling approach is proposed to optimize EVs charging/discharging scheduling taking into account technical requirements of EVs with different State-Of-Charge (SOC) levels and EV owners’ preferences. In the proposed approach, EV aggregator (EVA) solves an optimization problem to determine the charging/discharging schedule of each individual EV in the EV Parking Lot (PL) in which the response curves of individual EVs are used to consider the EV owners’ charging/discharging preferences. Then, the EVAs provide their optimum day-ahead bids to the corresponding DSO based on calculated Distribution Locational Marginal Prices (DLMPs). The DSO’s transactive...
Structure, swelling and mechanical behavior of a cationic full-IPN hydrogel reinforced with modified nanoclay
, Article Iranian Polymer Journal (English Edition) ; Volume 24, Issue 5 , May , 2015 , Pages 379-388 ; 10261265 (ISSN) ; Bagheri, R ; Kabiri, K ; Sharif University of Technology
Springer-Verlag London Ltd
2015
Abstract
Despite various applications of hydrogels, they have poor gel strength and low resistance against crack propagation which lead to the limitation of their applications. For overcoming this inherent weakness, the current study has focused on the simultaneous utilization of interpenetrating polymer network (IPN) structure and nanocomposite hydrogels. It is known that IPN and nanocomposite gels can improve gel strength. The combination of IPN and nanocomposite structure was developed in hydrogels for improving gel strength. For this purpose, bentonite was successfully modified with a cationic surfactant, (3-methacrylamidopropyl) trimethyl ammonium chloride (MAPTAC), as intercalate, and...
Swelling and mechanical behavior of nanoclay reinforced hydrogel: single network vs. full interpenetrating polymer network
, Article Polymer Bulletin ; Volume 72, Issue 7 , March , 2015 , Pages 1663-1681 ; 01700839 (ISSN) ; Bagheri, R ; Kabiri, K ; Sharif University of Technology
Springer Verlag
2015
Abstract
Despite the various uses of hydrogels, one of their weaknesses is the poor gel strength. To overcome this restriction, the current study has focused on simultaneously employing an interpenetrating polymer network (IPN) structure and nanocomposite hydrogels. Through this approach, the influence of nanofiller in the single network and IPN hydrogel properties was also studied in detail. For this purpose, a novel full interpenetrating polymer network (IPN) hydrogel nanocomposite based on 2-acrylamido-2-methylpropane sulfonic acid (AMPS)/acrylic acid (AA)–sodium acrylate (AANa) was synthesized in two steps through a facile solution polymerization with incorporation of modified bentonite (MBE) as...
Application of neural networks in the estimation of two-dimensional target orientation
, Article Applied Computational Electromagnetics Society Journal ; Volume 18, Issue 2 , 2003 , Pages 121-127 ; 10544887 (ISSN) ; Sarshar, N ; Barkeshli, K ; Sharif University of Technology
2003
Abstract
A new method for the robust estimation of target orientation using measured radar cross section is proposed. The method is based on a Generalized Regression Neural Network (GRNN) scheme. The network is trained by the FFT modulus of bistatic radar cross section data sampled at the receiver positions. The target value to be trained is the angle between a defined target orientation and the incident wave. Results based on actual measurements are presented
Estimation of Target Orientation from Scattering Data Using Neural Networks
, Article 19th Annual Review of Progress in Applied Computational Electromagnetics, Monterey, CA, 24 March 2003 through 28 March 2003 ; 2003 , Pages 88-91 ; Sarshar, N ; Barkeshli, K ; Sharif University of Technology
2003
Abstract
We present a new method for the robust estimation of a two-dimensional conducting target orientation using measured radar cross-section data. The method is based on a Generalized Regression Neural Network (GRNN) scheme, which belongs to the family of radial basis neural networks
Improvement in mechanical performance of anionic hydrogels using full-interpenetrating polymer network reinforced with graphene oxide nanosheets
, Article Advances in Polymer Technology ; Volume 35, Issue 4 , 2016 , Pages 386-395 ; 07306679 (ISSN) ; Bagheri, R ; Kabiri, K ; Ossipov, D. A ; Jokar, E ; Asadian, E ; Sharif University of Technology
John Wiley and Sons Inc
2016
Abstract
Weak mechanical possession is one of the limiting factors in application of hydrogels. To modify this inherent disadvantage, different approaches have been studied including synthesizing interpenetrating polymer network (IPN) and nanocomposite hydrogels. So, this study has focused on preparation of a novel full-IPN structure based on anionic monomers of 2-acrylamido-2-methylpropane sulfonic acid/acrylic acid–sodium acrylate via facile solution polymerization technique in an aqueous media with incorporation of graphene oxide (GO) nanosheets. Mechanical performance of materials in the “as-prepared condition” and “swollen state” was characterized via tensile, compression, and rheology tests,...