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Number of items: 23.

Anbazhagan, P and Smitha, C and Kumar, Abhishek and Chandran, Deepu (2013) Estimation of design basis earthquake using region-specific M-max, for the NPP site at Kalpakkam, Tamil Nadu, India. In: Nuclear Engineering and Design, 259 . pp. 41-64.

Senve, Vinay and Narasimham, GSVL (2011) Effective thermal conductivity of a heat generating rod bundle dissipating heat by natural convection and radiation. In: Nuclear Engineering and Design, 241 (10). pp. 4331-4340.

Iyengar, Sundara Raja KT and Raghu Prasad, BK and Nagaraj, TS and Patel, Bharti (1996) Parametric sensitivity of fracture behaviour of concrete. In: Nuclear Engineering and Design, 163 (3). pp. 397-403.

Singh, Ripudaman and Ramamurthy, TS and Rao, AK (1992) Non-uniqueness of thermoelastic contact in load bearing pin joints. In: Nuclear Engineering and Design, 135 (3). pp. 315-320.

Singh, Ripudaman and Ramamurthy, TS and Rao, AK (1992) Thermomechanical generalisation in joints: on-axis pin bearing load. In: Nuclear Engineering and Design, 135 (3). pp. 307-314.

Stevenson, JD and Eibl, J and Curbach, M and Johnson, TE and Daye, MA and Riera, JD and Krutzik, NJ and Nemet, J and Iyengar, KTS (1992) Advances in the analysis and design of concrete structures, metal containments and liner plate for extreme loads. In: Nuclear Engineering and Design, 134 (1). pp. 87-107.

Raj, Sundar N and Dattaguru, B and Krishnamurthy, T and Ramamurthy, TS (1987) Analysis of flange joints with elastic bolt. In: Nuclear Engineering and Design, 100 (1). pp. 41-48.

Mangalgiri, PD and Dattagurua, B and Rao, AK (1984) Finite element analysis of moving contact in mechanically fastened joints. In: Nuclear Engineering and Design, 78 (3). pp. 303-311.

Mangalgiri, PD and Dattagurua, B and Rao, AK (1984) Finite element analysis of moving contact in mechanically fastened joints. In: Nuclear Engineering and Design, 78 (3). pp. 303-311.

Karki, KC and Arakeri, VH (1982) Analysis of EXCOBULLE two-phase expansion tests. In: Nuclear Engineering and Design, 72 (2). p. 271.

Ramu, S Anantha and Iyengar, KJ (1979) Plastic response of orthotropic spherical shells under blast loading. In: Nuclear Engineering and Design, 55 (3). pp. 363-373.

Anantha Ramu, S and Iyengar, KJ (1979) Plastic response of orthotropic spherical shells under blast loading. In: Nuclear Engineering and Design, 55 (3). pp. 363-373.

Jayaraman, J and Rao, KP (1978) Thermal stresses in a spherical shell with a conical nozzle. In: Nuclear Engineering and Design, 48 (2-3). 367-375 .

Rao, AK (1974) Review of continuum, finite element and hybrid techniques in the analysis of stress concentrations in structures. In: Nuclear Engineering and Design, 31 (3). pp. 427-433.

Prakash, P and Rao, KP (1974) Thermal stresses around circular holes in spherical shells. In: Nuclear Engineering and Design, 30 (1). pp. 83-87.

Sundara Raja Iyengar, KT and Sebastian, VK (1972) Comparison of elasticity and shell-theory solutions for finite circular cylindrical shells. In: Nuclear Engineering and Design, 21 (1). pp. 137-157.

Venkateswara, Rao G and Krishna, Murty AV (1971) An alternate form of the ramberg-osgood formula for matrix displacement analysis. In: Nuclear Engineering and Design, 17 (3). pp. 297-308.

Nagendra, HR and Tirunarayanan, MA and Ramachandran, A (1971) Free convection heat transfer from vertical cylinders part I: Power law surface temperature variation. In: Nuclear Engineering and Design, 16 (2). pp. 153-162.

Nagendra, HR and Tirunarayanan, MA and Ramachandran, A (1971) Free convection heat transfer from vertical cylinders part II: Exponential surface temperature variation. In: Nuclear Engineering and Design, 16 (2). pp. 163-168.

Nagendra, HR and Tirunarayanan, MA (1971) Free convection heat transfer between vertical parallel plates. In: Nuclear Engineering and Design, 15 . pp. 17-28.

Yogananda, CV (1967) Interface stresses in a composite cylindrical shell under ring loading. In: Nuclear Engineering and Design, 6 (5). pp. 421-430.

Iyengar, KT Sundara Raja and Chandrashekhara, K (1966) Thermal stresses in a finite hollow cylinder due to an axisymmetric temperature field at the end surface. In: Nuclear Engineering and Design, 3 (3). pp. 382-393.

Iyengar, KT Sundara Raja and Chandrashekhara, K (1966) Thermal stresses in a finite solid cylinder due to an axisymmetric temperature field at the end surface. In: Nuclear Engineering and Design, 3 (1). pp. 21-31.

This list was generated on Fri Apr 26 14:26:20 2024 IST.