An installation of the construction lift has a few limitations by many constrains and these have influences on labor productivity, that can be changed by vertical-transportation management. In the super-tall building construction, a management of construction lift operation is one of the most important factor, but existing methodologies depend on skilled practitioners' experiences. And it is true that the expertise resulted by the experiences does not transfer to the next generation. This study is a part of lifting-management simulation development which aims at the optimal construction lift management. A proposed algorithm is focus on lifting time calculation considering an acceleration capability. This research evaluates the result accuracy using comparative analysis on simulation result and field measuring time.
Hoisting planning for systematic and efficient vertical transportation is one of the key factors for successful completion in high-rise building construction. However, despite this importance, minimal research has been carried out for predicting hoist time, which is a key player in hoisting planning. Therefore, this study proposed a prediction model for vertical hoisting time using a luffing-type crane. From the results, validation of the model showed the potentiality to apply the actual prediction of hoisting time of a luffing-type crane after additional research.
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