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FRL074BLS2820NNN3S1R2A1NAAANNNNNN hydraulic pump

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FRL074BLS2820NNN3S1R2A1NAAANNNNNN hydraulic pump

SERIES : FRR/FRL
BRAND : Sauer Danfoss
Model Code : FR-L-074B-LS-28-20-NN-N-3-S1R2-A1N-AAA-NNN-NNN
Model No.ldent No. : 83003151
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    1. Product Details
    2. Applicable Scene

    The use of hydraulic pumps in largescale construction projects is fundamental for ensuring the effective and efficient transfer of fluids, which is crucial for various applications such as excavation, lifting, and material handling. This case study examines a significant construction project – the development of a new urban infrastructure in a metropolitan area – and explores the role of hydraulic pumps in facilitating the various operations involved in this complex undertaking.
    FR-L-074B-LS-28-20-NN-N-3-S1R2-A1N-AAA-NNN-NNN
    FRL074BLS2820NNN3S1R2A1NAAANNNNNN
    The project involved constructing a multiuse commercial and residential complex, which required extensive site preparation, including excavation and grading. The management team recognized the necessity of integrating hydraulic pump systems to maintain productivity and safety throughout the phases of development.
    FRR090 hydraulic pump
    One of the primary considerations in the selection of hydraulic pumps was the project’s scale. Given the vast quantities of materials that needed to be moved and the deep excavations required, highcapacity hydraulic pumps were essential. The project relied on a combination of submersible pumps for dewatering tasks and displacement pumps for concrete placement. This multifaceted approach ensured that operations could proceed with minimal delay due to water accumulation or insufficient pumping capacity.
    83003151
    The hydraulic system implemented included multiple pump stations strategically located throughout the site. This design allowed for realtime monitoring and control, which proved invaluable in optimizing resource allocation and operational efficiency. Advanced sensing technology was integrated into the hydraulic systems to provide feedback on pressure levels, flow rates, and potential blockages. This smart technology enabled the construction team to address issues proactively, reducing downtime and avoiding costly delays

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