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Load sediments quantification in Algerian North-West basins by ANN (Artificial Neurons Network) method

Abstract

Due to the complexity of basins morphometric parameters and the hydroclimatic irregularity of the semi-arid regions of North Africa, solid transport has been still far from being clearly assessed. This study attempts to shed light on this problem; in order to conceive a global model for the suspended sediment load quantification, taking into account all stream waters of the North-West area of Algerian. The calculation is based on the use of the ANN artificial neurons network method, which has proven its success and its reliability in several fields of research. The collected data are measured in hydrometric stations of several basins, such as Cheliff, Tafna, Macta, and Oran’s basins. The results obtained using the ANN method are sufficiently reliable, the best correlations were obtained for each studied stream water exceeding 97% (specific model to each station), and 90% in the case of a global model characterizing for all studied stations, which allows the extracted model to give better estimation of the suspended solid flow rates for any measured liquid flow rate of the north-west Algerian basins.

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Load sediments quantification in Algerian North-West basins by ANN (Artificial Neurons Network) method

Author: Hafied, Yacine
Publisher: Vysoká škola báňská - Technická univerzita Ostrava
Year: 2019
DOI: 10.35180/gse-2019-0013
Source: https://dspace.vsb.cz/bitstreams/4f10b38c-7f72-4daf-857b-12c9aef0c987/download
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GeoScience Enginee ing Volume LXV (2019), No. 3
h p://gse. sb.cz p. 1 – 17, ISSN 1802-5420
DOI 10.35180/gse-2019-0013
LOAD SEDIMENTS QUANTIFICATION IN ALGERIAN NORTH-
WEST BASINS BY ARTIFICIAL NEURONS NETWORK METHOD
Yacine HAFIED 1, Nadi MAROUF 2, Mohamed Tew ik BOUZIANE 1,
Boualem REMINI 3, Shiynka uk LUBOMIR 4
1Labo a o y o Hyd aulic, Bisk a Uni e si y, Bisk a 7000, Alge ia,
2Labo a o y o Hyd aulic, Oum El Bouaghi Uni e si y, Alge ia
3Depa men o Wa e Science, Facul y o Technology, Blida 1 Uni e si y, Blida 9000, Alge ia,
4Na ional Uni e si y o Wa e Supply and En i onmen al Managemen , Uk aine
E-mail:ha ied.yacin[email p o ec ed]
ABSTRACT
Due o he complexi y o basins mo phome ic pa ame e s and he hyd oclima ic i egula i y o he
semi-a id egions o No h A ica, solid anspo has been s ill a om being clea ly assessed. This s udy
a emp s o shed ligh on his p oblem; in o de o concei e a global model o he suspended sedimen load
quan i ica ion, aking in o accoun all s eam wa e s o he No h-Wes a ea o Alge ian. The calcula ion is
based on he use o he ANN a i icial neu ons ne wo k me hod, which has p o en i s success and i s
eliabili y in se e al ields o esea ch. The collec ed da a a e measu ed in hyd ome ic s a ions o se e al
basins, such as Cheli , Ta na, Mac a, and O an’s basins. The esul s ob ained using he ANN me hod a e
su icien ly eliable, he bes co ela ions we e ob ained o each s udied s eam wa e exceeding 97%
(speci ic model o each s a ion), and 90% in he case o a global model cha ac e izing o all s udied s a ions,
which allows he ex ac ed model o gi e be e es ima ion o he suspended solid low a es o any
measu ed liquid low a e o he no h-wes Alge ian basins.
Keywo ds: Solid anspo , ANN me hod, Wa e sheds, No h-Wes Alge ia, Sil a ion dam
1 INTRODUCTION
Wa e esou ces de elopmen in he no h o Alge ia equi es wa e ese oi s cons uc ion o a ious
pu poses; howe e , he design and success ul exploi a ion o wa e ese oi s can only be made h ough an accu a e
and p ope sedimen a y olume p edic ion. This olume es ima ion will ha e a big economic impac , knowing ha
an unde es ima ion o o e es ima ion dec eases o inc eases he dead- olume. Unde es ima ion can a ec dam’s
li e ime by con as , o e es ima ion can lead o a huge inc ease in dam’s cos .
Because o i s semi-a id clima e, elie i egula i ies and p ecipi a ions olume, he no hwes side o
Alge ia is one o he mos ulne able egions in soil e osion. The phenomenon o sedimen s eaching he dams
e e y yea has p omp ed many esea che s who ha e ied o sol e his p oblem wi h se e al me hods. In his
con ex , we men ion he wo ks o Tixe on [1], Capolini [2], Gho bel and Claude [3], Heusch [4], Milliman and
Meade [5], Sog eah [6], Demmak [7], Colombani [8], Walling [9], P obs and Suche [10], Lahlou [11], Rais and
Abidi [12], Albe gel [13], Snoussi e al. [14], Me zouki [15], Moukhchane e al. [16], Meddi [17], Bou aba [18],
Remini and A ena d [19], Remini [20], Te ous e al. [21], Ghenim e al. [22] Megnouni e al. [23], Bouanani
[24], Dechemi e al. [25], Achi e and Touaibia [26], Touaibia e al. [27], Ma ou and Remini [28], Ma ou [29],who
ha e s udied some Alge ian, Tunisian, and Mo occan basins. In eali y, he p oblem is e y di icul , complex and
a om being sol ed wi h he cu en heo e ical o mulas. A conside able gap be ween he empi ical o mulas
used, he sil a ion quan i ies in dam’s measu ed by ba hyme ic su eys and he es ima ion du ing he design.
Consequen ly, we we e obliged o choose ANN me hod o sol e his p oblem in a conc e e way. The me hod has
been known o i s powe , e iciency and also p o es i s success in se e al a eas o esea ch [30, 31].
This s udy is based on his o ical da a "liquid low a es-solid low a es" o he No h-Wes Alge ian basins
namely Cheli , Ta na, Mac a, and O an, in o de o p o ide he mos app op ia e global sedimen a y load
es ima ion model.
2 PRESENTATION OF THE STUDY AREAS
The s udy ocuses on he basins loca ed in he no h-wes o Alge ia, i.e. Cheli , Ta na, Mac a, and O an
basins (Figu e 1). Se en (07) measu emen s a ions we e selec ed in his a ea, on he la ge amoun o da a s o ed,
o ha e eliable and conc e e models o he suspended sedimen load quan i ica ion. The choice o hese
hyd ome ic s a ions is a oused by he a ailabili y and ichness o his o ic measu emen da a, in ou case, liquid
low a es, solid low a es. The da a we e p o ided by Na ional Agency o Wa e Resou ces ‘Agence Na ionale
des Ressou ces Hyd iques’ (ANRH) in 2016 [32] - see Table 1.
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Figu e 1. Rep esen a ion o he s udied basins [32]
Table 1: Cha ac e is ics o he s udied hyd ome ic s a ions [32]
Basin
S eam wa e s
S a ion
Code
Pe iod
Measu emen
da a Numbe
Cheli
Djidiouia
Djidiouia RN4
01-27-01
1974-2000
4 995
Cheli
Cheli
Sidi Bela e
01-36-02
1969-2001
432
Ta na
Mouilah
Mouilah RN7
16-02-02
1973-2001
5 943
Ta na
Ta na
Pie e du cha
16-08-01
1971-2005
537
Mac a
Meke a
El Hacaiba
11-01-01
1989-2003
1905
Mac a
F oha
G iss
11-14-12
1976-2003
652
O an’s
Mellah
Tu go No d
04-02-20
1978-2003
5083
2.1 BASINS CHARACTERISTICS
The cha ac e is ics o he s udied wa e sheds a e gi en in Table 2.
Table 2: Cha ac e is ics o he s udied wa e sheds [32]
Basin
S eam
wa e s
Su ace
a ea
(km2)
Pe ime e (km)
CI
Compac ness
index
Equi alen
leng h(Km)
Talweg
leng h
(Km)
Hmin
(m)
Hmax
(m)
Chéli
Djidiouia
835
135
1.31
51.20
51
70
925
Cheli
43700
1383
1.85
619
759
20
1983
Ta na
Mouilah
1 820
187
1.23
65.90
124
410
1824
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Ta na
6 900
350
1.18
115
160.00
50
1824
Mac a
Meke a
955
127
1.15
39
54
925
1440
F oha
132
56
1.36
22
/
499
1201
O an’s
Mellah
697
135
1.43
/
60
36
824
CHELIFF BASIN
I is loca ed in he No h-Wes egion o Alge ia, bo de ed a No h by Algie s coas al basin; Sou h by
Saha a basin, Wes by O an cos al basin, Mac a and O an highlands and Eas by Cho -Melghi , Zah ez, Cho -
Hodna and Isse . The main wa e cou se in his Basin is Chéli -s eam wa e .
Figu e 2. Djidiouia s eam wa e wa e shed [32]
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Figu e 3. Cheli s eam wa e wa e shed [32]
 Djidiouia s eam wa e is a s eam loca ed eas o he wilaya o Relizane, no h-wes e n Alge ia which
lows om he Rahouia Moun ains and uns in o Cheli s eam wa e (Figu e 2).
 Cheli s eam wa e is a i e o 725 km long, loca ed in he no h-wes o Alge ia which is ed om
he Tellian A las, mo e p ecisely in he Djebel AMOUR and lows in o he Medi e anean Sea. The
Cheli is cha ac e ized by a e y e ile alley and i is he mos impo an i e in Alge ia (Figu e 3).
TAFNA BASIN
The Ta na Basin is loca ed in he ex eme no h-wes o Alge ia while a pa o i is imme sed in Mo occo,
bo de ed o he no h by he O an Basin Coas al, eas by Mac a Basin, and wes by Mo occan bo de s. I s main
wa e cou se is he Ta na Ri e .
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Figu e 4. Ta na s eam wa e wa e shed [32]
Figu e 5. Mouilah s eam wa e wa e shed [32]

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 Ta na s eam wa e is a s eam o 170 km long, s e ching in he wilaya o Tlemcen (Figu e 4) and a e
ha ing c ossed sinuous go ges, en e s he wilaya o Ain Témouchen , c osses he ancien ci y o Siga,
and lows in o he Medi e anean Sea. The Ta na wa e shed is ed om moun ains o Djebel Me chiche
nea Sebdouand ex ending pa ially o Mo occo.
 Mouillah s eam wa e is loca ed in he le bank ibu a y o Ta na s eam wa e ha s a s in he
egion o El Abed in Alge ia a 550 m al i ude, hen en e s Mo occo and akes he name o S eam
wa e Isly, and ollows in in e mi en low (Figu e 5). I becomes a pe manen downs eam o he ci y
o Oujda (Mo occo) o 490 m o al i ude o ake he name o he S eam wa e Bounaîm and en e s in
Alge ia nea Maghnia, unde he name o Mouillah s eam wa e . I si s down on i s igh bank, he
E ou i s ibu a ies, Abbas, Aounia and Méhaguène s eam wa e s.
MACTA BASIN
I is loca ed in he no h-wes e n egion o Alge ia, bo de ed o he no h by he O an's coas al basin. One
pa o i ex ends o he Medi e anean Sea; sou h is bounded by he O an’s Highlands Basin; eas by he Cheli
basin and wes by he Ta na Basin. I is d ained by wo main wa e cou ses, he Meb ouh s eam wa e o he wes
and El-Hammam s eam wa e o he eas .
Figu e 6. Meke a s eam wa e wa e shed [32]
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Figu e 7. F oha s eam wa e wa e shed [32]
 Meke a s eam wa e is a wa e cou se o igina ing in he moun ains o Djebel El-Ma houm in he sou h
o he wilaya o Sidi-Bel-Abbes. I di ides he ci y cen e in wo pa s, and hen i uns in o he Med ouh
s eam wa e (Figu e 6).
 F oha s eam wa e is a wa e cou se ha o igina es in he moun ains o Djebel Bezi a in he sou h-eas
o he wilaya o Masca a and lows in o he Ain-Fekan s eam wa e (Figu e 7).
ORAN’S BASIN
I is loca ed in he no h-wes o Alge ia, bounded in he no h by he Medi e anean Sea; eas by he Algie s
coas al basin; sou h by he h ee Basins: Chéli , Mac a and Ta na; wes by Mo occan bo de s. Among he main
s eams o his Basin, we can men ion El-Mellah s eam wa e .
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Figu e 8. Mellah s eam wa e wa e shed [32]
 Mellah s eam wa e is a wa e cou se ha begins in he sou h o Hammam-Bouhadja and lows in o
he Medi e anean Sea (Figu e 8).
3 RESULTS AND DISCUSSIONS
3.1 Dis ibu ion o Solid low a e depending on liquid low a e.
The ep esen a ion o he measu ed solid low a es in ela ion wi h he measu ed liquid low a e o each
s udied hyd ome ic s a ion is illus a ed in he g aphs men ioned in Figu e 9.
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Figu e 9. Rela ionship be ween solid-liquid low a e in each hyd ome ic s a ion
Qs = 241,7Ql - 696,9
R² = 0,908
0
20000
40000
60000
80000
100000
120000
0 100 200 300 400
Qs (Kg/s)
Ql (m3/s)
Djidiouia RN4 s a ion
y = 43,68x - 306,7
R² = 0,834
0
10000
20000
30000
40000
50000
60000
70000
80000
90000
0 500 1000 1500 2000
Qs(Kg/s)
Ql(m3/s)
Sidi Bela e s a ion
y = 18,70x - 10,30
R² = 0,800
0
2000
4000
6000
8000
10000
12000
14000
16000
0 100 200 300 400 500 600 700 800
Qs (Kg/s)
Ql(m3/s)
Muillah RN7 s a ion
y = 12,95x - 107,2
R² = 0,728
0
1000
2000
3000
4000
5000
6000
7000
0 50 100 150 200 250 300 350
Qs (Kg/s)
Ql (m3/s)
Pie e du cha s a ion
y = 20,243x - 21,575
R² = 0,9497
0
500
1000
1500
2000
2500
3000
3500
4000
4500
5000
0 50 100 150 200 250
Qs(kg/s)
Ql(m3/s)
El Hacaiba s a ion
y = 29,102x - 16,157
R² = 0,9229
0
200
400
600
800
1000
1200
1400
1600
1800
2000
0 10 20 30 40 50 60
Qs (kg/s)
Ql(m3/s)
G iss s a ion
y = 89,105x - 157,27
R² = 0,9007
0
10000
20000
30000
40000
50000
60000
70000
0 100 200 300 400 500 600
Qs(kg/s)
Ql (m3/s)
Tu go No d s a ion
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