Buildings, towers, bridges, dams, and other large engineering structur terjemahan - Buildings, towers, bridges, dams, and other large engineering structur Bahasa Indonesia Bagaimana mengatakan

Buildings, towers, bridges, dams, a

Buildings, towers, bridges, dams, and other large engineering structures are subject to
external loading that causes deformation. Any abnormal behaviour may indicate a threat
to the safety of the structure as well as that of its users and the general public. Careful
monitoring of the loads acting on a structure, and its response to those loads, can aid in
identifying the deformational behaviour of that structure.
Deformations and their observations will vary according to the structure. Differences in
construction materials is one of the larger influences on how a structure deforms. For
example, deformation is mainly elastic, dependent on reservoir water pressure and
temperature variations for concrete dams (cf. earthen dams). Such deformations can be
measured by configuring to observe movement trends over long periods of time.
Similarly, deformation in flexible steel-framed structures (tall buildings and suspension
bridges) are elastic and relative movements between short time intervals may occur due
to abrupt seismic loading, wind loading or traffic loading. In that case, fast deformation
of such structures can be determined from high frequency measurements.
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Hasil (Bahasa Indonesia) 1: [Salinan]
Disalin!
Buildings, towers, bridges, dams, and other large engineering structures are subject to
external loading that causes deformation. Any abnormal behaviour may indicate a threat
to the safety of the structure as well as that of its users and the general public. Careful
monitoring of the loads acting on a structure, and its response to those loads, can aid in
identifying the deformational behaviour of that structure.
Deformations and their observations will vary according to the structure. Differences in
construction materials is one of the larger influences on how a structure deforms. For
example, deformation is mainly elastic, dependent on reservoir water pressure and
temperature variations for concrete dams (cf. earthen dams). Such deformations can be
measured by configuring to observe movement trends over long periods of time.
Similarly, deformation in flexible steel-framed structures (tall buildings and suspension
bridges) are elastic and relative movements between short time intervals may occur due
to abrupt seismic loading, wind loading or traffic loading. In that case, fast deformation
of such structures can be determined from high frequency measurements.
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Hasil (Bahasa Indonesia) 2:[Salinan]
Disalin!
Bangunan, menara, jembatan, bendungan, dan struktur rekayasa besar lainnya dikenakan
beban eksternal yang menyebabkan deformasi. Setiap perilaku abnormal dapat mengindikasikan ancaman
terhadap keamanan struktur serta yang dari penggunanya dan masyarakat umum. Hati-hati
pemantauan beban yang bekerja pada struktur, dan responnya terhadap orang banyak, dapat membantu dalam
mengidentifikasi perilaku deformasi dari struktur.
Deformasi dan pengamatan mereka akan bervariasi sesuai dengan struktur. Perbedaan
bahan bangunan merupakan salah satu pengaruh yang lebih besar tentang bagaimana struktur deformasi. Sebagai
contoh, deformasi terutama elastis, tergantung pada tekanan air waduk dan
variasi suhu untuk bendungan beton (lih bendungan tanah). Deformasi tersebut dapat
diukur dengan mengkonfigurasi untuk mengamati tren pergerakan selama jangka waktu yang lama.
Demikian pula, deformasi dalam struktur baja berbingkai fleksibel (gedung-gedung tinggi dan suspensi
jembatan) adalah gerakan elastis dan relatif antara interval waktu singkat mungkin terjadi karena
pembebanan gempa tiba-tiba, beban angin atau beban lalu lintas. Dalam hal ini, deformasi cepat
dari struktur tersebut dapat ditentukan dari pengukuran frekuensi tinggi.
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