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    Gaighata Government Polytechnic

    3论文总数
    22引用总数

    Gaighata Government Polytechnic , (also known as Chandpara Polytechnic College), established in 2017, is a government polytechnic located in Chandpara, West Bengal. This polytechnic is affiliated to the West Bengal State Council of Technical Education, and recognised by AICTE, New Delhi. This polytechnic offers diploma courses in Mechanical Engineering, Electrical Engineering and Civil Engineering..

    论文量&引用量时间轴

    机构学者

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    Partha Sarathi Goswami
    Partha Sarathi Goswami
    Dept Chem Engn, Indian Inst Technol
    论文:2引用:0H-index:0
    Abir Chattopadhyay
    Abir Chattopadhyay
    Dept ECE, Univ Engn & Management
    论文:2引用:0H-index:0
    Tamal Chakraborty
    Tamal Chakraborty
    Mrinalini Datta Mahavidyapith
    论文:2引用:0H-index:0
    Bijan Kumar Mandal
    Bijan Kumar Mandal
    Indian Institute of Engineering Science and Technology, Shibpur
    论文:1引用:0H-index:0
    Pijush Kanti Mondal
    Pijush Kanti Mondal
    Dept Mech Engn, Nazml Centenary Polytech
    论文:1引用:0H-index:0

    论文(3)

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    1Optimization of Water-Emulsified Diesel Preparation and Comparison of Mechanical Homogenization and Ultrasonic Dispersion Methods to Study CI Engine Performances
    Pijush Kanti Mondal,Bijan Kumar Mandal

    In this study, the stability of water-emulsified diesel (WED) prepared by different methods have been analyzed. In first phase, the optimum condition of Hydrophilic-Lipophilic Balance (HLB) value of the surfactant used for the preparation of emulsified diesel with respect to its stability has been determined. Different resultant HLB values have been obtained by mixing two surfactants in different proportion. The highest emulsion stability (ES) is found for WED prepared with the surfactant mixture of HLB value 8 which is obtained by mixing 65.5% Span 80 and 34.5% Tween 80. In second phase, WEDs containing 10% water and 2% surfactant mixture with resultant HLB value 8 have been prepared using mechanical homogenization as well as ultrasonication methods. In third phase, the emulsions are prepared adding 10, 20, and 30% water and 2% surfactant mixture with resultant HLB value 8 using ultrasonication process. The emulsion mixture has been kept in a cooled water bath to minimize hot spot effect during ultrasonication process. The polydispersity index (PDI), water particle size and auto correlation factor (ACF) of all four prepared WEDs have been measured by nano particle analyzer which works on dynamic light scattering (DLS) technique. These properties of the WEDs have been analyzed to investigate their stability behavior of the emulsion. Experimental investigations have also been carried out on performance and emission characteristics of a single cylinder, four-stroke diesel engine using WED prepared by both methods containing 10% water. At full load, the brake thermal efficiency is found to be marginally higher using emulsified diesel prepared using ultrasonicator compared to base diesel. The NOx and smoke emissions have been found to be lower for both types of emulsified diesel than pure diesel. The experimental results show more favorable emulsification, performance and emission characteristics for the emulsified diesel prepared by ultrasonic machine than that prepared by mechanical homogenizer. The density, viscosity, and calorific value of the emulsions prepared by the two methods have also been measured and compared with that of neat diesel.

    2023ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS(2023)引用:21
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    2A Secured Quantum Key Exchange Algorithm Using Fermat Numbers and DNA Encoding
    Partha Sarathi Goswami,Tamal Chakraborty,Abir Chattopadhyay

    To address the concerns posed by certain security attacks on communication protocol, this paper proposes a Quantum Key Exchange algorithm coupled with an encoding scheme based on Fermat Numbers and DNA sequences. The concept of Watson-Crick’s transformation of DNA sequences and random property of the Fermat Numbers is applied for protection of the communication system by means of dual encryption. The key generation procedure is governed by a quantum bit rotation mechanism. The total process is illustrated with an example. Also, security analysis of the encryption and decryption process is also discussed.

    20212021 Fourth International Conference on Electrical, Computer and Communication Technologies (ICECCT)(2021)引用:2
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    3Knapsack Encoding for Secured Quantum Key Distribution Protocol
    Partha Sarathi Goswami,Tamal Chakraborty,Abir Chattopadhyay

    Quantum cryptography has of late opened up the possibilities of exploiting the characteristics of quantum mechanics in the realm of network security. An interesting problem in cryptography is the distribution of the encryption key between the two parties involved in communication. This paper proposes a secure quantum key distribution protocol using the properties of super increasing knapsack sequences. The mapping from the knapsack sequences to the quantum states is achieved by rotating a three-bit quantum tuple.

    2020MODERN PHYSICS LETTERS A(2020)引用:2
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    合作机构(1)

    Mrinalini Dutta Mahavidyapith合作论文 2

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