FACULTY OF ENVIRONMENTAL ENGINEERING

SUBJECT CARD

Name in Polish : Systemy zaopatrzenia w wodę
Name in English : Water supply systems
Main field of study (if applicable): Environmental Engineering
Specialization (if applicable) : Environmental Quality Management
Level : II
Form: full-time
Kind of subject : obligatory
Subject code : ISS105028
   

 

Lecture

Classes

Laboratory

Project

Seminar

Number of hours of organized classes in University (ZZU)

15 15

Number of hours of total student workload (CNPS)

30 30

Form of crediting

Crediting with grade Crediting with grade
Group of courses

Number of ECTS points

1 1

including number of ECTS points for practical(P) classes

1

including number of ECTS points for direct teacher–student contact (BK) classes

0.5 NAN NAN 0.5 NAN
 
PREREQUISITES RELATING TO KNOWLEDGE, SKILLS AND OTHER COMPETENCES
1Has a basic knowledge of hydraulics
 
SUBJECT OBJECTIVES
C1Gaining knowledge in water supply systems design and modeling
C2Gaining knowledge concerning current materials and sanitary fittings used for water distribution systems construction
C3Acquiring skills of water supply systems computer models construction and practical application
 

SUBJECT EDUCATIONAL EFFECTS

relating to knowledge:
PEK W01Has knowledge of water distribution systems design and modeling
PEK W02Has knowledge of materials and sanitary fittings used for water distribution systems construction
relating to skills:
PEK U01Is able to design water distribution system
PEK U02Is able to develop a computer model of water distribution system
PEK U03Is able to simulate water flows for various water use scenarios
relating to social competences:
PEK K01Is aware of the dangers to the society resulting from water supply system malfunction
 

PROGRAMME CONTENT

Form of classes - lecture

Number of hours
Wy1Introduction to water supply systems lectures. Anatomy of contemporary water supply systems2
Wy2Guidelines concerning materials and sanitary fittings used for water distribution systems construction2
Wy3Estimation of current and future water demands. Peaking factors and time-varying demands2
Wy4Water distribution networks hydraulics2
Wy5Assembling a model of water supply system, description of typical model components2
Wy6Integrating GIS and hydraulic modeling. Using SCADA data for hydraulic modeling2
Wy7Identification and solving common water distribution system problems2
Wy8Pass writing1
Suma godzin 15
 

PROGRAMME CONTENT

Form of classes - project

Number of hours
Pr1Design project release and discussion2
Pr2Water distribution system layout planning2
Pr3Daily water demands, peaking factors and time-varying demands identification2
Pr4Hydraulic calculations and system sizing 2
Pr5Building computer model of water distribution system. Defining basic elements and network topology2
Pr6Steady-state and extended-period simulations of water flows for different scenarios2
Pr7Simulation results overview2
Pr8Verification of project correctness1
Suma godzin 15
 
TEACHING TOOLS USED
N1 Informational lecture
N2 Computer laboratory
N3 Consultations
 

EVALUATION OF SUBJECT EDUCATIONAL EFFECTS ACHIEVEMENT

  Evaluation (F - forming during semester), P - concluding (at semester end) Educational effect number Way of evaluating educational effect achievement
1 P1PEK_W01, PEK_W02, PEK_K01pass writing
2 P2PEK_U01, PEK_U02, PEK_U03, PEK_K01consultations and verification of project correctness
 
 

PRIMARY AND SECONDARY LITERATURE

Primary literature:
Primary literature:Haestad Methods, T.M. Walski, D.V. Chase, D.A. Savic, W. Grayman, S. Beckwith, E. Koelle, (2004) Advanced Water Distribution Modeling and Managment, Haestad Press
Primary literature:P. Lonsdale, D. Obradovic (1998), Public Water Supply: Models, Data and Operational Management, CRC Press
Primary literature:L. Mays (2000), Water Distribution System Handbook, McGraw-Hill Professional
Primary literature:Savic et al. (2011) Water distribution systems, ICE Publishing, Thomas Telford Ltd, London
Primary literature:Swamee and Sharma (2008) Design of water supply pipe networks, Wiley
Secondary literature:
Secondary literature:EN 805, Water supply. Requirements for systems and components outside buildings
Secondary literature:Computer Modeling of Water Distribution Systems - Manual of Water Supply Practices, M32 (3rd Edition). American Water Works Association (AWWA)
Secondary literature:White F. (2010) Fluid Mechanics, McGraw-Hill
Secondary literature:Crane (1986) Flow of fluids through valves, fittings and pipe, London
Secondary literature:Nalluri & Featherstone (2001) Civil Engineering Hydraulics 4th ed., Wiley-Blackwell.
Secondary literature:Bollrich (2013) Technische Hydromechanik 1 - Grundlagen. Beuth
 

Subject supervisor

Name and surname: Patryk Wójtowicz
E-mail: patryk.wojtowicz@pwr.edu.pl
 

Matrix of correlation between educational effects

Nr Subject educational effect Correlation between subject educational effect and educational effects defined for main field of study and specialization (if applicable)** Subject objectives*** Programme content*** Teaching tool number***
1PEK_W01K2IS_W09, S2EQM_W07C1Lec1, Lec3-Lec7N1
2PEK_W02K2IS_W09, S2EQM_W07C2Lec2N1
3PEK_U01K2IS_U06, S2EQM_U03C2Proj1-Proj4N2, N3
4PEK_U02K2IS_U02, K2IS_U05, S2EQM_U05C3Proj5N2, N3
5PEK_U03K2IS_U02, K2IS_U06, S2EQM_U05C3Proj6-Proj7N2, N3
6PEK_K01K2IS_K02C1, C3Lec1, Lec7, Proj6-Proj7N1, N2, N3