1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
Table Of Content
Orginizing Committee ... i Table Of Content... v
Keynote Speaker
1. Zinc-Air Battery – Powering Electric Vehicles to Smart Active Labels
Dr. Raihan Othman... 1
2. Enhancing Heat Transper Using Nanofluids(abstract)
Prof. Ahmad Faris Ismail ... 6
3. Rapid Prototyping and Evaluation for Green Manufacturing
RizaMuhida, Ph.D ... 7
4. Indonesia’s Challenge to Combat Climate Change Using Clean Energy
Rudi Irawan, Ph.D ... 12
5. Paraboloid-Ellipsoid Programming Problem
Prof.Dr. Ismail Bin Mohd ... 15
6. Model Development of Children Under Mortality Rate With Group Method of Data Handling
Dr. IingLukman ... 27
7. The Modified CW1 Algorithm For The Degree Restricted Minimum Spanning Tree Problem
Wamiliana, Ph.D ... 36
8. The Fibre Optic Sensor in Biomedical Engineering and Biophotonics
Prof. TjinSweeChuan ...
Speaker
1. Web-Based Service Optimization with JSON-RPC Platform in Java and PHP
WachyuHari Haji ... 1
2. Trouble Ticketing System Based Standard ISO10002: 2004 To Improve Handling of Complaints Responsibility
Ahmad Cucus, Marzuki, AgusSukoco, Maria ShusantiFebrianti, Huda Budi Pamungkas ... 6
3. Design of Warehouse Management Application Tool for Controlling The Supply Chain
Anita Ratnasari, Edi Kartawijaya ... 10
4. Development Of Decision Related Engine Using Integration Of Genetic Algorithm And Text Mining
EvianaTjaturPutri, Mardalena, Asmah ... 15
5. Implementing CBR on The College Rankings Based on Webometrics with EPSBED’s Data and Webometrics Knowledge
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
Marzuki , Maria Shusanti F, Ahmad Cucus , AgusSukoco...19
6. Paypal Analysis as e-Payment in The e-Business Development
Nomi Br Sinulingga ...24
7. Decision Support System for Determination of Employees Using Fuzzy Decision Tree
Sinawaty#1, YusniAmaliah ... 28
8. Analysis of Factors Influencing Consumer Behavior Bring Their Own Shopping Bag (Case Study KecamatanTembalang)
Aries Susanty, DyahIkaRinawati, FairuzZakiah... 33
9. The Use of Edge Coloring Concept for Solving The Time Schedule Problem at Senior High School (Case Study at SMAN 9 Bandarlampung)
RahmanIndraKesuma, Wamiliana, MachudorYusman ... 41
10. Analysis Of Web-Education Based on ISO / IEC 9126-4 For The Measurement Of Quality Of Use
Marzuki, AgusSukoco, Ahmad Cucus, Maria ShusantiFebrianti, Lisa Devilia ... 46
11. The Used of Video Tracking for Developing a Simple Virtual Boxing
David HabsaraHareva, Martin ... 55
12. M-Government as Solutions for E-Government problems in Indonesia
Ahmad Cucus, Marzuki, AgusSukoco, Maria ShusantiFebrianti ... 60
13. Open Source ERP for SME
Tristiyanto ... 65
14. Improvement in Performance of WLAN 802.11e Using Genetic Fuzzy Admission Control
SetiyoBudiyanto ... 70
15. Cloud Computing: Current and Future
TaqwanThamrin, Marzuki, Reni Nursyanti, Andala Rama Putra ... 75
16. Implementing Information Technology, Information System And Its Application In Making The Blue Print for The One Stop Permission Services
Sri AgustinaRumapea,HumuntalRumapea ... 80
17. Integration System Of Web Based And SMS Gateway For Information System Of Tracer Study
EndykNoviyantono, Aidil ... 86
18. Fuzzy Logic Applied To Intelligent Traffic Light
EndykNoviyantono, Muhammad ... 93
19. Solving and Modeling Ken-ken Puzzleby Using Hybrid Genetics Algorithm
Olivia Johanna, Samuel Lukas, Kie Van IvankySaputra ...98
20. GIS Habitat Based Models Spatial Analysis to Determine The Suitability Of Habitat For Elephants
AgusSukoco ... 103
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
21. The Course Management System Workflow-Oriented to Control Admission and Academic Process
Usman Rizal, YuthsiAprilinda ... 108
22. Fuzzy Graphs With Equal Fuzzy Domination And Independent Domination Numbers
A.Nagoorgani, P. Vijayalakshmi ... 115
23. Solving Pixel Puzzle Using Rule-Based Techniques and Best First Search
Dina Stefani, Arnold Aribowo, Kie Van IvankySaputra, Samuel Lukas ... 118
24. Capacity Needs for Public Safety Communication Use 700 MHz as Common Frequencyin Greater Jakarta Area
SetiyoBudiyanto ... 125
25. Impact of Implementation Information Technology on Accounting
Sarjito Surya ... 132
26. Document Management System Based on Paperless
WiwinSusanty, TaqwanThamrin, Erlangga, Ahmad Cucus ... 135
27. Traceability Part For Meter A14C5 In PT Mecoindo Of The Measurement Of Quality Of Use
Suratman, WahyuHadiKristanto, AsepSuprianto, MuhamadFatchan, DendyPramudito ... 139
28. Designing and Planning Tourism Park with Environment and Quality Vision and Information Technology-Based(Case Study: Natural Tourism Park Raman Dam)
Fritz A. Nuzir, AgusSukoco, Alex T ... 149
29. Smart House Development Based On Microcontroller AVR-ATMEGA328
Haryansyah, Fitriansyah Ahmad, Hadriansa ... 157
30. Analyze The Characteristic of Rainfall and Intensity Duration Frequency (IDF) Curve at Lampung Province
Susilowati ... 161
31. The Research of Four Sugarcane Variety (Saccharum officinarum ) as The Raw Materials of Bioethanol Production in Negara Bumi Ilir Lampung
M.C.Tri Atmodjo, Agus Eko T, Sigit Setiadi, Nurul Rusdi, Ngatinem JP, Rina, Melina, Agus
Himawan... 174
32. Design an Inverter for Residential Wind Generator
Riza Muhida, Afzeri Tamsir, Rudi Irawan, Ahmad Firdaus A. Zaidi ... 177
33. The Research of Two Sugarcane Variety (Saccharum officinarum ) as The Raw Materials of Bioethanol Production in Negara Bumi Ilir - Lampung
M.C. Tri Atmodjo, Agus Eko T., Sigit Setiadi, Nurul Rusdi, Ngatinem JP, Rina, Melina, Agus H.
... 182
34. Design of Plate Cutting Machine For Cane Cutter (Saccharum Oficinarum) Use Asetilin Gas
M,C, Tri Atmodjo , Tumpal O.R, Sigit D.Puspito ... 186
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
35. Behaviour of Sandwiched Concrete Beam under Flexural Loading
Firdaus, Rosidawani ...191
36. Diesel Particulate Matter Distribution of DI Diesel Engine Using Tire Disposal Fuel
Agung Sudrajad ...196
37. Microstructure Alterations of Ti-6Al-4V ELI during Turning by Using Tungsten Carbide Inserts under Dry Cutting Condition
Ibrahim, G.A.Arinal, H, Zulhanif, Haron, C.H.C ...200 38. Validation Study of Simplified Soil Mechanics Method Design with Kentledge Pile
Loading Test of Bored Pile
Lilies Widojoko ...204 39. Performance Assessment Tool for Transportation Infrastructure and Urban Development
for Tourism
Diana Lisa ...211 40. Earthquake Resistant House Building Structure
Ardiansyah ...221
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
161
Analyze The Characteristic of Rainfall and Intensity Duration Frequency (IDF) Curve at Lampung Province
Susilowati #1)
#1Department of Engineering ,Bandar lampung University (UBL) [email protected], [email protected]
Abstract— This research was done to analyze the characteristic of rainfall based the short term duration of rainfall data at BMG Maritim Lampung station, BMG Raden Inten II Bandar Lampung station, Masgar Tegineneng Climatology station and Kotabumi Geophysical station. From the results of the research intensity duration frequency (IDF) curve will be made based on: (1) Analysis of rain distribution frequency of short term rainfall data from each statios. (2) Analysis of rainfall intensity for every rain duration in particular measurement uses Van breen intensity method and Hasper der weduwen intensity method then least square (kuadrat kecil) is used to calculate rainfall intensity approach by Talbot, Sherman and Ishiguro formula’s, the purpose is to determine the equality of rainfall intensity to targeted region.
From the result of the research, it could be summarized as follows
;(1) The data of rainfall used is short term rainfall data (5, 10, 15, 30, 45, 60, 120 minutes, 3 hours, 6 hours and 12 hours) and as annual maximum series, (2) Type of distribution that appropriate with all observation station is Log Pearson Type III Distribution, (3) The rainfall intensity of Van Breen method used Talbot equality, it is used as reference to form IDF curve. The intensity equality was valid only to data of rain in all observation year at every station. (4) The IDF Curve showed that high rainfall intensity happen in short duration (5) the IDF curve can be used to determine planning flood by using rational method.
Keywords — Rainfall, intensity, duration and frequency
I. INTRODUCTION
Earth’s globally changing climate conditions due to the greenhouse effect has an impact on weather conditions / Indonesian regional and local climate extreme. The real impact of climate aberration (extreme climate) is the increased intensity of rainfall, flash floods and tide flood (rob), local hurricane / tornado, increased urban temperatures, droughts and landslides.
For the first time in 23 years Bandar Lampung city was attacked by flash flood. The floods caused by 4 hours rain since Thursday evening (12.18.8). In addition to threatening floods, landslides also threaten some region such as West Lampung, Tanggamus, and Way Kanan.
These climate change conditions have the potentiality to affect the engineering design standards in the future. In planning the flood control building (drainage channels, levees, etc) the data of rainfall input is needed. Experts in civil engineering (water), geomorphology, and land and water conservation are
more interested in analyzing the frequency of extreme climatic events on rainfall intensity and different duration by using IDF curve.
This research is aimed to analyze the rainfall characteristics in Lampung province. The result is IDF curves that can be used to calculate the flood discharge plan which is used for planning flood control building.
Hydrological system is affected by extreme events like floods and droughts. Magnitude of extreme events is inversely to the frequency of the occurrence, remarkable extreme events are very rare. The purpose of frequency analysis related to the extreme events which relate to frequency of occurrence through the application of probability distribution. Frequency analysis based on statistical properties of the past events data was done to obtain the rainfall probability in the future with the assumption that the statistical properties of the future rainfall are still equal to the statistical properties of rainfall in the past.
In statistic, there are four frequency distributions that are widely used in hydrology, they are: normal distribution, log- normal, Gumbel and Log Pearson III. Each distribution has distinctive properties, so that the rainfall data must fit tested with the statistical properties of each distribution. The selection of an incorrect distribution can lead to significant estimation errors, either overestimated of underestimated (Sri Harto 1993).
In the diversion process of rain into streams, there are some traits that are important to be considered, they are: rain intensity (l), rain duration (t), the depth of rain (d), frequency (f), and the influence area of rain (Soemarto, 1987). High intensity of rain means rain or water depth per unit time. In other words, rainfall intensity states the amount of rainfall in the short term that describes rain per hour. To obtain the value of rain intensity in a particular place, the measuring instrument used should be able to record the amount of rainfall volume and duration until the rain had stopped. In this case the measuring instrument used is automated rain measuring instrument. (Asdak, C, 1995).
To change rainfall into rain intensity can be used various methods including:
1. Van Breen Method
Van Breen formula is based on the assumption that the rainfall duration in java is concentrated for 4 hours with an effective rate of 90% from total rain in 24 hours. The formula is:
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
169
I =
4
R
% 90
24………(1)
Note, I = Rain intensity (mm/hour) R24 = Maximum rainfall (mm/24 hour)
Based on Van Breen curve pattern in Jakarta, the amount of rainfall intensity can be approximated by the equation:
IT =
T c
2 T T
R 31 , 0 t
R 007 , 0 R 54
…….(2)
Note,
IT = Rain intensity (mm/hour) when concentration tc tc = Concentration time (minute) RT = Maximum daily rainfall (mm/24 hour)
2. Hasper Der Weduwen
This method is the result of investigation conducted in Indonesia by Hasper and Der Weduwen. The formula is obtained based on the daily rainfall tendency which are grouped on the basis of the assumption that the rain has symmentrical distribution of the rainfall duration (t) is less than 1 hour and rainfall duration are from 1 – 24 hours.
The formula used is:
1 < t ≤ 24 , so
R =
100
R 12 , 3 t
t 11300 t
…...…(3)
0 < t ≤ 1 , so R =
100
R 12 , 3 t
11300 t
…….(4) and
Rt = Xt
t 1272 )
t 1 ( X
54 t 1218
t
...(5)
Note,
t = Rain duration (minute)
R, Rt = rainfall according to Hasper-Der Weduwen
Xt = Selected maximum daily rainfall, (mm/ 24 hour)
To determine the intensity according to Hasper-Der Weduwen used the following formula:
I =
t R
t………..(6) Note,
I = Rain intensity ( mm/hour) Rt = Rainfall (mm),
t = time (hour)
Analysis on the relationship of two important parameters in the form of intensity and duration can be associated statistically with a frequency of occurrence. The graphical presentation of this relationship is a curve of intensity- duration-frequency (IDF) (Loebis, 1992). This curve can be used for the runoff calculation and for peak discharge calculation when using rational formula by selecting the rainfall intensity proportional to the time of rainfall runoff from the top to the observed point in the downstream of the drainage area (waktu tiba = arrival time). This curve also shows the magnitude probability of rainfall intensity for the duration of rainfall at random.
In the planning of waterworks, it is necessary to plan the amount of water discharge to be channeled through the waterworks. For the water discharge volume to be channeled, we can determine the specific flood discharge which is large enough. When rainfall data is available, then the flood estimation can be done with rational equation, which is expressed in the following formula (Chow, 1964):
Qp = 0,278 C I A ……...(7) Note,
Qp : Top discharge (m3/second) C : Coefficient run off, based on
Watershead characteristic
I : Rainfall intensity, for rain duration equals concentration duration (tc) (mm/hour) A : Area of Watershead a (Km2)
II. RESEARCH METHOD
R
ainfall data used in this research were taken from automated rain measuring instrument Hellman type in station: Lampung Maritime BMG Station (observed 2000 – 2001;
2003 – 2008)
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
170
Raden Inten II BMKG Station Bandar Lampung (observed 2001 – 2008)
Masgar Climatology Class II Station Tegineneng (observed 2004 – 2008)
Geophysics Station Kotabumi (observed 1998 – 2005, 2007 – 2008)
To get the IDF curve at each observation station, analysis procedure was performed as follows:
1. Determine the maximum daily rainfall for each year data
2. Determine the statistical parameters of data that has been sorted from smallest to largest, are: mean, standard deviation (S), coefficient of variation (Cv), coefficient of skewness (Cs), coefficient of kurtosis (Ck).
3. Determine the appropriate type of distribution that is based on statistical parameters.
4. Tested with Chi-Square and Smirnov Kolmogorov to determine whether the selected type of distribution is appropriate.
5. Calculate the amount of rainfall design for a specific time based on selected type of distribution, expressed by a simple formula as follows (Haan, 1979):
XT = X + KT. S ……….. (8) Note :
XT = rain design with time T year X= average magnitude
S = standard deviation
KT = frequency factor for time T year
6. Calculate rainfall planning to be rainfall intensity using Van Der Breen and Hasper-Der Weduwen for the duration of each rain.
7. Calculate rainfall intensity approach using least squares method that are Talbot formula, Sherman and Ishiguro.
This method was used with the intention of determining the intensity of rain which is closest to regional planning / planning area.
8. Depiction of the daily rainfall intensity curve with a certain time.
III. DISCUSSION
Rainfall data used in this research is a maximum daily rainfall data derived from automated rain measurement instrument type Hellman at some stations as follows:
TABLE 3.1
RAINFALL DATA AT MARITIME LAMPUNG BMG STATION
Source: Maritime Lampung BMG Station
TABLE 3.2
RAINFALL DATA RADIN INTEN II BMKG STATION BANDAR LAMPUNG
Source: Radin Inten II BMKG Station, Bandar Lampung
TABLE 3.3
RAINFALL DATA AT MASGAR CLIMATOLOGY CLASS II STATION TEGINENENG
Source: Masgar Climatology Class II Station, Tegineneng
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
171
TABLE 3.4
RAINFALL DATA GEOPHYSICS KOTABUMI BMG STATION
Source: GeophysicsStation, Kotabumi
The result of frequency analysis in this research is the type of distribution which is in accordance with statistical parameter at all observation stations are Log Pearson Distribution Type III and has been
tested with Chi_Square Test and Smirnov Kolmogorov test.
Rainfall intensity values for all four observation stations shown in table 3.5 to table 3.8
TABLE 3.5
RAINFALL INTENSITY, DURATION & FREQUENCY AT MARITIME LAMPUNG BMG STATION
Source: Calculation Result
TABLE 3.6
RAINFALL INTENSITY, DURATION, AND FREQUENCY AT RADIN INTEN II BMKG STATION BANDAR LAMPUNG
Source: Calculation Result
TABLE 3.7
RAINFALL INTENSITY, DURATION, AND FREQUENCY AT MASGAR CLIMATOLOGY STATION
Source: Calculation Result
TABLE 3.8
RAINFALL INTENSITY, DURATION, AND FREQUENCY AT GEOPHYSICS STATION KOTABUMI
Source: Calculation Result
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
172 Results of rainfall analysis in this research were as follows:
1. Based on the observation on all stations showed that rainfall intensity in Van Breen method using Talbot equation was used as a reference to create IDF curve, because it has the smallest different value. The intensity equation is valid only for the rain data in the year of observations at each station.
2. From the rainfall intensity tables, it can be seen that the smaller rainfall duration the bigger rainfall intensity value.
From this research, four IDF curve are obtained (Frequency Duration Intensity Curve) for each return period (2, 5, 10, 25, 50, and 100 years) from each observation station, as shown in Fig. 1 to 4.
Fig. 1. IDF Curve BMG Maritime Lampung Station
Fig. 2. IDF Curve BMG Radin Inten II Station Lampung Station
Fig. 3. IDF Curve Masgar Climatology Station
1st International Conference on Engineering and Technology Development ISSN 2301-6590 (ICETD 2012)
Universitas Bandar Lampung
Faculty od Engineering and Faculty of Computer Science
173 Fig. 4. IDF Curve Geophysics Station Kotabumi
As an example of IDF curves application towards rational method, used to calculate the discharge estimation for design planning Way Tulungmas river sub DPS Bendung Bumi Agung with the following data:
The area of flow (A) = 88.100 Km2
The length of flow (L)= 49.55 Km
Different height (DH) = 175.00 m
The slope of the average flow (l) = 0.003532
Rainfall data used from Geophysics Station Kotabumi with variety of time and time concentration (tc) equals to rain observation duration = 12 hours (table 3.8, column t=720 minutes). Table 3.9 showed the discharge design calculation result for Way Tulungmas river sub DPS Bendung Bumi Agung using rainfall intensity data from Sta IDF curve. Geophysics Kotabumi with the discharge design using the data “Final Report, SID Way Abung Flood Control, and Way Sabuk North Lampung District”. Public Works Department, 2007.
TABEL 3.9
DISCHARGE ESTIMATION PLAN (Q)-
IV. CONCLUSSION
From the discussion and the results of the research, it can be concluded as follows:
1. Rainfall used are short term rainfall data (5, 10, 15, 30, 45, 60, 120 minutes, 3 hours, 6 hours, and 12 hours) and an annual maximum data (annual maximum series).
2. Type of distribution which is in accordance with all observation stations is Log Pearson Type III distribution.
3. Rainfall intensity in Van Breen method using Talbot is used as a reference to create the IDF curve.
4. From the IDF curve showed that high intensity rainfall happened in a short duration.
5. IDF curve can be used to determine the flood plan by using rational method.
REFFERENCES
[1] Asdak, C. “Hidrologi dan Pengelolaan Daerah Aliran Sungai”. Gadjah Mada University Press. 1995.
[2] Chow, V.T. 1964. “Handbook of Applied Hydrology”.
McGraw-Hill Book Company. New York.
[3] Haan, C.T. 1979. “Statistical Methods in Hydrology”.
The Iowa State University Press/Ames.
[4] Jayadi, Rahmat. “Hidrology I”. Departement of Engineering. Gadjah Mada University. 2000.
[5] Santoso, Budi., “Karakteristik Hujan Kota Semarang:
Pembangunan Kurva Intensitas-Durasi-Frekuensi (IDF), Civil Engineering Journal , Vol III/1. 2006 [6] Soemarto, CD.. “Hidrologi Teknik”. 1987.
[7] Sosrodarsono, S., and Takeda. “Hidrology For Irrigation”.1999
[8] Sri Harto Br.. “Analyzis Hidrology”. PT Gramedia.
Jakarta. 1993
[9] Suroso.”Analisa Curah Hujan untuk Membuat Kurva Intensity-Duration-Frequency (IDF) di Kawasan Rawan Banjir Kabupaten Banyumas”, Civil Engineering Journal , Vol.3/1. 2006
[10] Yohanna, Andy Hendri and Hadie Suherly. .
“Pemilihan Metode Intensitas Hujan yang Sesuai dengan Karakteristik Stasiun Pekanbaru”, Civil Engineering Journal, Vol 8/1,2007,