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Abstract

Global warming and climate change are some of the most widely discussed topics in today's society, and they are of considerable importance to agriculture globally. Climate change directly affects agricultural production. On the other hand, the agricultural sector is inherently sensitive to climate conditions, and this has made the agricultural sector one of the most vulnerable sectors to the effects of global climate change. Rising CO2 levels in the atmosphere, increased temperature, and altering precipitation patterns all substantially influence agricultural insect pests and agricultural productivity. Climate change has a number of implications for insect pests. They can lead to a decreased biological control effectiveness, particularly natural enemies, increased incidence of insect-transmitted plant diseases, increased risk of migratory pest invasion, altered interspecific interaction, altered synchrony between plants and pests, increase in the number of generations, increased overwintering survival, and increase in geographic distribution. As a consequence, agricultural economic losses are a real possibility, as is a threat to human food and nutrition security. Global warming will necessitate sustainable management techniques to cope with the altering state of pests, as it is a primary driver of pest population dynamics. Future studies on the impacts of climate change on agricultural insect pests might be prioritized in several ways. Enhanced integrated pest control strategies, the use of modelling prediction tools, and climate and pest population monitoring are only a few examples.
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Authors and Affiliations

Alim Al Ayub Ahmed
1
ORCID: ORCID
Marziah Zahar
2
ORCID: ORCID
Vera Gribkova
3
ORCID: ORCID
Natalia Nikolaeva
3
Ngakan Ketut Acwin Dwijendra
4
ORCID: ORCID
Wanich Suksatan
5
ORCID: ORCID
Karrar Kamil Atiyah
6
ORCID: ORCID
Abduladheem Turki Jalil
7
ORCID: ORCID
Surendar Aravindhan
8
ORCID: ORCID

  1. Jiujiang University, School of Accounting, 551 Qianjin Donglu, Jiujiang, Jiangxi, China
  2. Universiti Utara Malaysia, School of Business Management, Sintok, Kedah, Malaysia
  3. Moscow State University of Technology and Management named after K.G. Razumovsky (The First Cossack University), Department of Biology, Moscow, Russia
  4. Udayana University, Faculty of Engineering, Denpasar, Bali, Indonesia
  5. HRH Princess Chulabhorn College of Medical Science, Chulabhorn Royal Academy, Faculty of Nursing, Bangkok, Thailand
  6. Al-Ayen University, Faculty of Health, Dhi-Qar, Iraq
  7. Al-Mustaqbal University College, Medical Laboratories Techniques Department, Babylon, Hilla, Iraq
  8. Saveetha Institute of Medical and Technical Sciences, Department of Pharmacology, Chennai, India
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Abstract

The growing population and the development of industries in all countries of the world have created a very important and complex issue for water supply to cities. Today, many parts of the world are facing the problem of water shortage and this problem cannot be easily solved. In addition to the proper use of water resources and preventing the loss of natural water, the establishment of regional water supply networks is effective in meeting the future needs of the people. A water distribution network (water supply network) is a set of interconnected pipelines used to transport and distribute water in a complex. In designing the water distribution network, factors such as the type of water distribution network, water pressure, water velocity, design flow, minimum pipe diameter, pipe material and many other factors should be considered. In this study, we have tried to design the water supply network of a part of Balikpapan city in Indonesia. The design method led to the determination of pressure values in the connection nodes, pipe diameters, flow rate and velocity in the pipes. All the existing criteria are considered in the design of the water supply network. Although this study has been implemented for a specific study area, it can be of great help to designers in designing the water supply network.
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Authors and Affiliations

Dinh T.N. Huy
1 2
ORCID: ORCID
Ngakan K.A. Dwijendra
3
ORCID: ORCID
Andrey Poltarykhin
4
Wanich Suksatan
5
ORCID: ORCID
Nooraldeen S. Nahi
6
ORCID: ORCID
Trias Mahmudiono
7
ORCID: ORCID
Nguyen T. Hai
8
ORCID: ORCID
Mustafa M. Kadhim
9
ORCID: ORCID
Krishanveer Singh
10
ORCID: ORCID
Alim A.A. Ahmed
11
ORCID: ORCID

  1. International University of Japan, School of Finance and Banking, Minamiuonuma, Japan
  2. Banking University of HCMC, Ho Chi Minh City, Vietnam
  3. Udayana University, Faculty of Engineering, Department of Architecture, Kampus Bukit, Jl. Raya Kampus Unud Jimbaran, Kec. Kuta Sel., Kabupaten Badung, Bali, 80361, Indonesia
  4. Plekhanov Russian University of Economics, Moscow, Russian Federation
  5. Chulabhorn Royal Academy, HRH Princess Chulabhorn College of Medical Science, Faculty of Nursing, Bangkok, Thailand
  6. Al-Ayen University, College of Health and Medical Technology, Department of Optics, Dhi-Qar, Iraq
  7. Airlangga University, Faculty of Health, Surabaya, Indonesia
  8. Thuongmai University, Faculty of Engineering, Hanoi, Vietnam
  9. Al-Farahidi University, Medical Laboratory Techniques Department, Baghdad, Iraq
  10. GLA University, Department of Business Management, Mathura, India
  11. Jiujiang University, School of Accounting, Jiujiang, China

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