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  • World Scientific Pub Co Pte Ltd  (4)
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  • World Scientific Pub Co Pte Ltd  (4)
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  • 1
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2020
    In:  International Journal of Structural Stability and Dynamics Vol. 20, No. 06 ( 2020-06), p. 2040007-
    In: International Journal of Structural Stability and Dynamics, World Scientific Pub Co Pte Ltd, Vol. 20, No. 06 ( 2020-06), p. 2040007-
    Abstract: An innovative composite vertical connecting structure (CVC) with capacity carrying and energy-dissipating ability is proposed in this study, which could be used in prefabricated composite shear wall structural systems to enhance the resilience and seismic performance of structural system. The CVC structure is mainly composed of three parts, including the connecting zone, the capacity bearing zone characterized by high strength and elastic deforming ability, and the energy-dissipating zone assembled by replaceable metal dampers. The low-yield strength steel and high-strength steel are used, respectively, for the metal dampers in the energy-dissipating zone and the concrete-filled high-strength steel tubes in the bearing capacity zone to enhance the energy dissipation and self-centering abilities of CVC structures. The working mechanism is analyzed and validated through finite element models built in ABAQUS. The hysteretic behavior is simulated to evaluate their performance. First, the metal dampers are designed. The theoretical and finite elemental parametric analysis are carried out. According to the simulation results, the “Z-shaped” metal dampers exhibit better energy-dissipating ability than the rectangular shape, in which the “Z-shaped” metal dampers with 45 ∘ show the best performance. Simultaneously, the results of the models calculated by the finite element method and theoretical analysis work very well with each other. Furthermore, seven FE models of shear walls with CVC structures are designed. Monotonic and cyclic loading simulations are conducted. The failure modes and comprehensive mechanical performance are investigated and evaluated according to their calculated force–displacement curves, skeleton curves, and ductility coefficients. The results indicate that the CVC structure delivered preferable lateral-bearing capacity and displacement ductility. Finally, according to available design standards, the lateral stiffness of CVC structures could be conventionally controlled and some practical design recommendations are discussed.
    Type of Medium: Online Resource
    ISSN: 0219-4554 , 1793-6764
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2020
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  • 2
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2018
    In:  International Journal of Modern Physics E Vol. 27, No. 04 ( 2018-04), p. 1850031-
    In: International Journal of Modern Physics E, World Scientific Pub Co Pte Ltd, Vol. 27, No. 04 ( 2018-04), p. 1850031-
    Abstract: A compact accelerator-driven neutron source (CANS) has been proposed and designed by the Peking University (PKU) RFQ group. The source is based on a compact deuteron RF accelerator that delivers an average current of a few mA of deuterons at 11[Formula: see text]MeV to the target. The accelerator consists of a short radio frequency quadrupole (RFQ) followed by efficient interdigital H-mode drift tube linac (IH-DTL) structure. The total length of the whole accelerator structure is 4.96[Formula: see text] m, including 1.76[Formula: see text]m for the 4-vane RFQ and 2.70[Formula: see text] m for the IH-DTL. The dynamic simulation results show that the beam has excellent quality, with transmission efficiency higher than 99%. The transverse and longitudinal normalized rms emittance at the DTL exit is 0.29[Formula: see text] mm⋅mrad and 0.12 MeV⋅deg, respectively. Details of the beam dynamics of the RFQ and IH-DTL are presented in this paper.
    Type of Medium: Online Resource
    ISSN: 0218-3013 , 1793-6608
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2018
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  • 3
    In: International Journal of Modern Physics E, World Scientific Pub Co Pte Ltd, Vol. 29, No. 02 ( 2020-02), p. 1950111-
    Abstract: As high-intensity beams are required for various applications, high-power, high-current, continuous-wave (CW) radio-frequency quadrupole (RFQ) accelerators have become a research focus in recent years and also a direction for development in the future. To master and accumulate the advanced technology in design, fabrication and operation of high-current CW RFQs, the RFQ group at Peking University has built a window-type CW RFQ, operating at 162.5[Formula: see text]MHz, to accelerate a 50-mA deuteron beam from 50[Formula: see text] keV to 1[Formula: see text]MeV. It is the first relatively high-frequency window-type CW RFQ in the world. A [Formula: see text] ion beam extracted from an electron cyclotron resonance (ECR) ion source was used for the beam commissioning because deuteron beam acceleration will produce a serious radiation risk. We compared and analyzed the measurement results obtained during the beam commissioning with simulations. The data show good consistency in many respects. For the discrepancies, we explain the issues in detail. We achieved stable and robust acceleration of about 1.5[Formula: see text]mA CW [Formula: see text] for 1[Formula: see text]h. Finally, we discuss the differences between [Formula: see text] ion beam acceleration and deuteron beam acceleration.
    Type of Medium: Online Resource
    ISSN: 0218-3013 , 1793-6608
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2020
    Location Call Number Limitation Availability
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  • 4
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2020
    In:  Journal of Circuits, Systems and Computers Vol. 29, No. 03 ( 2020-03-15), p. 2030004-
    In: Journal of Circuits, Systems and Computers, World Scientific Pub Co Pte Ltd, Vol. 29, No. 03 ( 2020-03-15), p. 2030004-
    Abstract: Recent decades have seen significant progresses in the field of power amplifiers (PAs). In order to present the evolution of the field, this paper shows the development trends of the PA research based on the statistical analysis from 1970 to 2017. The brief history of radio frequency (RF)/microwave PAs and a comprehensive review on the evolution of RF/microwave PAs are presented. The state-of-the-art PAs thus far based on the statistical analysis in terms of the figure of merit (FoM) of RF/microwave PAs have been discussed in this paper. A quantitative relationship of trade-off of PA performance metrics is proposed, and the potential room for improvement of the performance of the PAs is also revealed.
    Type of Medium: Online Resource
    ISSN: 0218-1266 , 1793-6454
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2020
    Location Call Number Limitation Availability
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