The Experts below are selected from a list of 9 Experts worldwide ranked by ideXlab platform

Zahid Hafeez - One of the best experts on this subject based on the ideXlab platform.

  • recherche in pipeline with side Cross Tee
    2013
    Co-Authors: I Khokhar, Zahid Hafeez
    Abstract:

    In the name of GOD, Water: having no shape; with hot and cold green eating to red blood membraned/separately flowing from yellow waste through same channel pipe converting to white gush flow; is multiplying the life on earth. The container/ body is giving shape to make shape and move away, sway, turn around or think to stop and dither to become ice. Teeming with figures; side injection of hot water flow into pipeline cold water flow perpendicularly making one single Cross Tee at a time comprising; survey, design, construction, manufacturing, installation, commissioning, modification, experiments, CFD modeling, validation, simulations, line plots,contour studies, Cross-sectional views, measurements of heat transfer occurance at downward pipe length; students may find this book an interesting, handy, fancy, eclectic razzmatazz quarry debut slob to put findings to reshape, recalculate, recognize and restore. Diameter of Cross Tee is also changed. This modelling work may also be applied to control oblique flow in blood veins, jet flow, combustion flame burn, marshy flow, waste water dilution in rivers and stack plumes. To be continued...

I Khokhar - One of the best experts on this subject based on the ideXlab platform.

  • recherche in pipeline with side Cross Tee
    2013
    Co-Authors: I Khokhar, Zahid Hafeez
    Abstract:

    In the name of GOD, Water: having no shape; with hot and cold green eating to red blood membraned/separately flowing from yellow waste through same channel pipe converting to white gush flow; is multiplying the life on earth. The container/ body is giving shape to make shape and move away, sway, turn around or think to stop and dither to become ice. Teeming with figures; side injection of hot water flow into pipeline cold water flow perpendicularly making one single Cross Tee at a time comprising; survey, design, construction, manufacturing, installation, commissioning, modification, experiments, CFD modeling, validation, simulations, line plots,contour studies, Cross-sectional views, measurements of heat transfer occurance at downward pipe length; students may find this book an interesting, handy, fancy, eclectic razzmatazz quarry debut slob to put findings to reshape, recalculate, recognize and restore. Diameter of Cross Tee is also changed. This modelling work may also be applied to control oblique flow in blood veins, jet flow, combustion flame burn, marshy flow, waste water dilution in rivers and stack plumes. To be continued...

R G Austin - One of the best experts on this subject based on the ideXlab platform.

  • development of a comprehensive solute mixing model azred for double Tee Cross and wye junctions
    Water Distribution Systems Analysis 2008, 2009
    Co-Authors: C Y Choi, Jerry Y Shen, R G Austin
    Abstract:

    Municipal water distribution networks consist of numerous Cross-, Tee-, and wye- junction connectors. In recent years, a series of experimental and numerical studies have sought to understand solute mixing at a Cross junction. To address solute mixing phenomena at Cross junctions, a fully functional computer program (AZRED v.1.0.0) was developed based on experimental results. The code was validated using a set of network-level experimental data. In the present study, comprehensive solute mixing patterns are investigated for various combinations of Cross, double-Tee, and wye junction connectors with different flow directions. Mixing patterns for various junction configurations are also visualized by means of dye injections at different flow ratios. These findings are integrated into a water quality solver (AZRED v.1.1.0) suitable for large-scale network simulations. Improved water quality models will be crucial in identifying optimal locations for water quality sensors, assessing models for early warning systems, and generating the exposure information needed for quantitative risk assessment.

C Y Choi - One of the best experts on this subject based on the ideXlab platform.

  • development of a comprehensive solute mixing model azred for double Tee Cross and wye junctions
    Water Distribution Systems Analysis 2008, 2009
    Co-Authors: C Y Choi, Jerry Y Shen, R G Austin
    Abstract:

    Municipal water distribution networks consist of numerous Cross-, Tee-, and wye- junction connectors. In recent years, a series of experimental and numerical studies have sought to understand solute mixing at a Cross junction. To address solute mixing phenomena at Cross junctions, a fully functional computer program (AZRED v.1.0.0) was developed based on experimental results. The code was validated using a set of network-level experimental data. In the present study, comprehensive solute mixing patterns are investigated for various combinations of Cross, double-Tee, and wye junction connectors with different flow directions. Mixing patterns for various junction configurations are also visualized by means of dye injections at different flow ratios. These findings are integrated into a water quality solver (AZRED v.1.1.0) suitable for large-scale network simulations. Improved water quality models will be crucial in identifying optimal locations for water quality sensors, assessing models for early warning systems, and generating the exposure information needed for quantitative risk assessment.

Jerry Y Shen - One of the best experts on this subject based on the ideXlab platform.

  • development of a comprehensive solute mixing model azred for double Tee Cross and wye junctions
    Water Distribution Systems Analysis 2008, 2009
    Co-Authors: C Y Choi, Jerry Y Shen, R G Austin
    Abstract:

    Municipal water distribution networks consist of numerous Cross-, Tee-, and wye- junction connectors. In recent years, a series of experimental and numerical studies have sought to understand solute mixing at a Cross junction. To address solute mixing phenomena at Cross junctions, a fully functional computer program (AZRED v.1.0.0) was developed based on experimental results. The code was validated using a set of network-level experimental data. In the present study, comprehensive solute mixing patterns are investigated for various combinations of Cross, double-Tee, and wye junction connectors with different flow directions. Mixing patterns for various junction configurations are also visualized by means of dye injections at different flow ratios. These findings are integrated into a water quality solver (AZRED v.1.1.0) suitable for large-scale network simulations. Improved water quality models will be crucial in identifying optimal locations for water quality sensors, assessing models for early warning systems, and generating the exposure information needed for quantitative risk assessment.