QSM201 Construction Measurement (1 of 4) Civil & Structural Works Assignment Sample SUSS Singapore
The construction process can be daunting for those not in the trade, but it doesn’t have to feel overwhelming. The first step of any project is often what drives progress- measurements. This book helps you learn about all aspects from where things go (the foundation) and how they’re held up–both structurally as well visually on both sides with scaffolding or other materials used during work hours; also covered are reinforced concrete below ground level, structural steelwork above ground Level 1( Parking lots), piling driving into soil/rock while setting newly installed beams/joists together etc.
If you’re looking to get started on a construction project, be sure to read this book first! You’ll be sure to have a much better understanding of the process and what to expect. With clear instructions and helpful illustrations, The Construction Process: A Step-By-Step Guide is a perfect resource for anyone embarking on a construction journey.
So what are you waiting for? Start reading and learn everything you need to know about the construction process. From measurements and foundation work to scaffolding and structural steelwork, this book has it all. With The Construction Process: A Step-By-Step Guide, you’ll be an expert in no time.
To avoid any issues or delays during a construction project, it is important to have a clear understanding of the construction process from start to finish. This book provides a step-by-step guide to the construction process, covering everything from measurements and foundation work to scaffolding and structural steelwork. With clear instructions and helpful illustrations, this book is the perfect resource for anyone embarking on a construction journey.
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Assignment Task 1: Explain the purpose and principles of measuring quantities
The purpose of measuring quantities is to be able to compare one object with another and calculate ratios.
The principle behind measuring quantities is that there exists a fundamental constant in the universe that can be used as a unit of measurement. This constant is called the speed of light in a vacuum, and it is measured in units called meters per second.
By using a unit of measurement, we can take the absolute value of any quantity and compare it to another quantity. For example, if we measure the length of an object in meters, and then measure its width in centimetres, we can calculate the ratio of the two measurements (length/width). This ratio will always be equal to 1 no matter what units we use to measure length and width, as long as we use the same units for both measurements.
The speed of light in a vacuum is an absolute constant because it is the same in all inertial frames of reference. In other words, no matter how fast you are moving, the speed of light will always be the same. This makes it an ideal unit of measurement because it can be used to compare quantities that are moving at different speeds.
Assignment Task 2: Identify scope and interpret drawings and specifications for measuring sub-structure works, reinforced concrete works, structural steelwork, piling and external works.
When carrying out a site visit, you will need to identify the scope of works and interpret any drawings and specifications to accurately measure the sub-structure works, reinforced concrete works, structural steelwork, piling and external works. This will ensure that you can provide an accurate quote for the client.
If you are unable to interpret the drawings and specifications, you should seek clarification from the client or the architect/engineer. Once you have a clear understanding of the scope of work, you can then start to measure the various elements of the project.
When measuring sub-structure works, you will need to take into account the dimensions of the foundation, walls and floors. Reinforced concrete works will need to be measured in terms of the quantity of reinforcement required and the volume of concrete needed. Structural steelwork will need to be measured in terms of the weight, length and type of steel required. Piling works will need to be measured in terms of the depth and diameter of the piles required. External works will need to be measured in terms of the size and type of materials required.
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Assignment Task 3: Interpret the principles and rules of the Standard Method of Measurement for Building Works 2 (SMM2) relating to the measuring sub-structure works, reinforced concrete works, structural steelwork, piling and external works.
The second part of the SMM2 deals with the rules for measuring building works. This section covers the topics of sub-structure works, reinforced concrete works, structural steelwork, piling and external works. The principles and rules for each topic are explained in detail so that the reader can correctly interpret them when carrying out a measurement.
When measuring sub-structure works, the main rule to follow is that all excavations must be measured in cubic metres. This includes any backfilling or infilling that is required. The method of measurement for reinforced concrete works is slightly different and is explained in full in the section on reinforced concrete works. Structural steelwork is measured in weight, and the section on structural steelwork explains how to calculate the weight of different types of steelwork. Piling is measured in length, and the section on piling explains how to correctly measure the length of piles. External works are those which are not part of the main building and can include things like car parks, landscaping and drainage. The section on external works explains how to measure these works correctly.
Assignment Task 4: Prepare a list of items based on drawings and specifications for measuring quantities relating to Civil and Structural Steelwork.
The following is a list of items based on drawings and specifications that may be required to be measured in a Civil and Structural Steelwork project:
- The dimensions of the steelwork (e.g. length, width, height, thickness).
- The weight or mass of the steelwork.
- The location of the steelwork (e.g. coordinates on a drawing or within a structure).
- The level or position of the steelwork (e.g. horizontal, vertical, elevated).
- the confidence level assigned to each dimension/property value (For example 68% – which means there is a 68% chance that the actual value lies within the stated range). This allows for some uncertainty to be accounted for in the measurements.
These are just some examples of measurements that may be required, and the list is not exhaustive. It is important to consult the drawings and specifications for the project to determine all of the measurements that will be required.
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Assignment Task 5: Apply the principles and rules of SMM2 to measure sub-structure works, reinforced concrete works, structural steelwork, piling and external works.
The principles and rules of the Standard Method of Measurement (SMM2) can be applied to measure reinforced concrete works, structural steelwork, piling and external works. This method is based on the concept of Detailed Quantities, which are defined as the physical quantities of a given work element, activity or resource required for its completion. The aim is to produce a set of measurements that are representative of the type, size and complexity of the project being measured.
The main types of elements that need to be considered when applying SMM2 are:
- Reinforced Concrete Works
- Structural Steelwork
- Piling
- External Works
Each type has its unique characteristics and therefore requires specific rules and principles to be measured correctly. It is important to note that all measurements should be taken in metric units.
Assignment Task 6: Demonstrate ability to ensure that quantity measured is accurate and consistent with SMM2 principles through bulk check.
It is important to ensure that quantity measured is accurate and consistent with SMM2 principles through bulk check. This can be done by ensuring that the measuring devices are properly calibrated and checked for accuracy. The use of proper measurement techniques is also important, and taking multiple measurements of the same quantity can help to check for consistency. Any discrepancies should be investigated and corrected as necessary.
SMM2 principles include the requirements for accuracy and precision in measurements, and bulk check helps to ensure that these requirements are met. The bulk check involves verifying the calibration of measurement devices and checking for consistency in measurements. Any discrepancies should be investigated and corrected to maintain the accuracy and precision of measurements.
It is important to ensure the accuracy and consistency of measurements taken by SMM2 principles. This can be done through regular bulk checks of measurement devices and techniques. By consistently following these procedures, the accuracy and precision of measurements can be maintained.
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