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analysis Product List and Ranking from 383 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

analysis Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. ダイコーテクノ Hiroshima//others
  2. 中電シーティーアイ 本社 Aichi//Service Industry
  3. アイテス Shiga//Electronic Components and Semiconductors
  4. 4 環境シミュレーション Tokyo//software
  5. 5 同仁グローカル Kumamoto//others

analysis Product ranking

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. 水処理分野向け 流体解析サービス 中電シーティーアイ 本社
  2. Metabolome analysis 同仁グローカル
  3. FEM (Finite Element Method) Contract Analysis Service ベンカン機工
  4. 4 Hepasine™ liver-related health indicator analysis service for medical institutions. プロトセラ
  5. 5 AI-supported app for KY activities 'HACARUS KY' HACARUS

analysis Product List

526~540 item / All 1058 items

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Engineering services for collision and impact analysis of protective barriers / Contracted analysis

Would you like to outsource the analysis work to reduce the number of experiments for the protective fence, lower experimental costs, and shorten development lead time?

At Japan ESI, we conduct contracted analyses such as strength analysis and impact analysis using the structural analysis integrated solution, Virtual Performance Solution. Here, we will introduce our engineering services related to supports, vehicle stops, guard pipes, wall parapets, bridges, protective fences, guardrails, and wire ropes. By providing us with the 3D CAD model of the product you wish to evaluate through analysis, along with material property data and analysis conditions, it is possible to predict what you would like to evaluate through experiments. ■ Items to be prepared - Product 3D CAD - Material property values and constraint conditions of components - Load conditions and impact conditions ■ Items available from ESI - Passenger car model - Large vehicle model ■ Model creation considerations - We will create an analysis model based on your specified conditions. ■ Reporting of results - Impact force, load, deformation amount - Collision acceleration - Detachment position - Detachment angle - Detachment speed - Overcoming confirmation - Maximum intrusion amount

  • Structural Analysis
  • Contract Analysis

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Heat sink 'Thermal Design/Analysis Service' *User guide available now

With over 25 years of industry experience, Zaward becomes a partner in solving heat dissipation issues! Engineers appreciate the 'Thermal Design/Analysis Service' as it allows them to allocate resources to areas other than heat!

Zaward's "Thermal Design/Analysis Service" is a one-stop service that handles everything from consultations on thermal issues to thermal analysis and heat sink design. The downloadable data is a document that explains our "Thermal Design/Thermal Analysis Service." 【Main Content】 ◇Common Challenges Related to Heat Dissipation →Why do we struggle with heat dissipation? ◇Three Steps to Heat Sink Design →Check the pathway to solving heat dissipation problems ✓ ◇Preparation Before Thermal Analysis / Sample Report of Analysis Results →Confirm necessary information for heat sink selection with a checklist! →Get a preview of the outputs you can obtain from using our service. ◇Case Studies of Utilizing Thermal Analysis Services →Look at actual cases to get an idea! You can view it immediately from "PDF Download." Feel free to contact us with any inquiries. 【Our Features】 ■Over 25 years of experience and achievements in heat dissipation ■Ability to propose suitable heat sinks quickly from the perspectives of performance, manufacturing, and cost ■Long-standing relationships with overseas factories, enabling comprehensive support from consultation to delivery with strong negotiation power (including arrangements for customs clearance and accompanying factory audits).

  • Analysis Services

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High Frequency Noise Analysis "RF Noise Analysis"

Analysis of the effects of external high-frequency noise.

By adding a layer on top and creating something equivalent to an antenna, it is possible to simulate external high-frequency noise. Whether the noise resistance has improved after the substrate modification can be estimated without creating the substrate. 【Features】 ○ Total terminal voltage when 900MHz is radiated from the upper antenna ○ It is evident that the induced voltage has decreased in the modified substrate ○ An assessment of quality can be made once the artwork is completed For more details, please contact us or download the catalog.

  • Other analyses

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Switching Noise Analysis: Conducted Noise Analysis of the DC-DC Converter Section

Simulating switching characteristics using a MOSFET switch.

Examining the conducted noise of the DCDC converter during switching operation. Adding a 0.1uF capacitor at the power terminal reduces high-frequency noise, but it has been confirmed that noise increases around 6.7MHz. 【Features】 ○ Simulating switching characteristics using MOSFET switches ○ Nonlinear operation using SPICE models For more details, please contact us or download the catalog.

  • Other analyses

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Server room (data center) air conditioning analysis

Analyzing the effects of aisle capping in the server room!

In server rooms and data centers, there are many servers and IT equipment, and heat management is essential for their stable operation. As a countermeasure, the exhaust fans on the back of the server racks are positioned to face each other, creating a pathway (hereinafter referred to as the hot aisle) that primarily directs exhaust from the racks upward. Conversely, the intake sides at the front of the server racks are also positioned to face each other, creating a pathway (hereinafter referred to as the cold aisle) that primarily introduces cool air from the floor into the server racks. This arrangement allows for efficient exhaust. However, at the top of the server racks, there is a risk of drawing in high-temperature exhaust from the equipment (short-circuiting), so we considered countermeasures and conducted a comparison based on the presence or absence of a partition (hereinafter referred to as aisle capping) at the top of the cold aisle. For more details, please download the catalog.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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Entrance hall air conditioning analysis

During the basic design phase, an air conditioning analysis of the entrance hall was conducted.

The entrance hall targeted for analysis is a large space with a height of approximately 20 meters. During the basic design phase, it is crucial to verify whether there are any issues with the temperature distribution and airflow in the living area based on the position, number, wind speed, and temperature of the air conditioning air outlets. This is very important for considering comfort and energy efficiency. Additionally, it is necessary to take into account the variations in conditions due to the seasons. In this analysis, we detailed the internal space of the building, the arrangement of the air outlets and inlets, and the thermal load, conducting air conditioning analysis for summer, winter, and transitional periods. For more details, please download the catalog.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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Analysis of airflow around the cooling tower

Reproducing the thermal flow conditions around a cooling tower with unknown characteristics and behavior!

Thermal fluid equipment related to building facilities often has many unknown characteristics and behaviors. Cooling towers are one such example, but by precisely setting the structure, flow conditions, and thermal conditions of each cell in the cooling tower, it is possible to reproduce the thermal fluid state quite accurately. In this analysis, we conducted a cooling tower thermal fluid analysis considering external winds to examine the impact of the airflow state around high-rise buildings and the arrangement of multiple cooling towers with different specifications on the temperature distribution of the heat released from each cell to the outside air. For more details, please download the catalog.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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Rotary door ventilation analysis

We analyzed the ventilation characteristics of revolving doors, which are movable boundaries.

What are the ventilation characteristics of revolving doors? In revolving doors, where the opening area changes significantly over time, it is important to capture the temporal variation of the ventilation airflow. This analysis treats the revolving section as a moving object, aiming to gain insights into the circulation of air inside and outside. For more details, please download the catalog.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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Analysis of airflow in the subway station when the train enters.

I analyzed the airflow in the subway station using the moving boundary problem.

It is known that there are significant speed and pressure fluctuations at the front and rear of vehicles running in narrow spaces such as tunnels and subway stations. In this analysis, we conducted simulations regarding the impact on the area around the platform (airflow, pressure) when a train passes, using the moving boundary problem. For more details, please download the catalog.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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Air Conditioning Analysis in an Electrical Components Factory

We conducted an air conditioning analysis using an electrical components factory with a clean room as an example.

The air conditioning analysis within an electrical components factory was conducted using a factory that has a clean room as an example. Unlike general architecture, where aesthetics (design) are emphasized, in facilities such as factories, functionality such as air conditioning performance and ventilation efficiency takes precedence over design. Even when achieving the same ventilation and air conditioning performance, there is often significant potential for cost reduction regarding the arrangement of ducts and outlets. For more details, please download the catalog.

  • simulator
  • Contract Analysis
  • Structural Analysis

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Inclined apartment-style environmental analysis

Examining the difficult issues of a condominium built on a slope due to changes in the wind environment.

The purpose of wind environment analysis in sloped terrain is to examine some of the challenging issues that exist within wind environment analysis. Analyzing areas that include sloped and undulating terrain is one of these issues. The reason for this is that the differences in elevation between buildings and their foundations make it difficult to create analysis models. Another reason is the question of how to set the conditions for approaching wind on sloped terrain. As with analyses on flat land, a power-law distribution is generally used as the basis, but it is preferable to establish a distribution along the slope of the terrain. Furthermore, there is a need to set the height of the sky plane higher than in standard analyses. For more details, please download the catalog.

  • Contract Analysis
  • Structural Analysis

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Moving Boundary: Analysis of Wind Pressure Acting on a Running Train

We analyzed the aerodynamic pressure acting on a moving train.

Moving Boundary: The analysis of wind pressure acting on a moving train was conducted using numerical simulations that take into account the moving boundary. There are concerns that strong winds, such as those caused by typhoons, can overturn moving trains. Therefore, understanding the wind pressure acting on a moving train is crucial. For more details, please download the catalog.

  • simulator
  • Contract Analysis
  • Structural Analysis

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Analysis of the wind environment around the apartment complex.

An analysis of the summer and winter results was conducted for the apartment building located in the urban area.

The wind environment analysis around the condominium was conducted for condominium buildings located in urban areas, with results for summer (southwest wind) and winter (north wind). When constructing or expanding buildings in urban areas, the wind conditions within the site or surrounding area can change significantly. This is known as the wind environment (building wind) issue. Generally, an investigation is conducted on the changes in wind speed distribution caused by the presence of the planned building for all wind directions (8 or 16 directions), comparing it to the conditions before construction. For a simplified evaluation, analysis is conducted only for the prevailing winds of each season. For more details, please download the catalog.

  • simulator
  • Contract Analysis
  • Structural Analysis

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Analysis of Wind Environment Around High-Rise Buildings

Investigating the changes in wind environment when high-rise buildings are constructed in areas with relatively open surroundings.

The analysis of the wind environment around high-rise buildings aims to investigate the degree of impact on the surrounding area, which inevitably increases. In urban areas, it is not uncommon for buildings over 100 meters in height to be constructed; however, in such cases, the impact on the wind environment (building wind) differs significantly compared to situations where relatively low-rise apartments are built in residential areas. For buildings exceeding 100 meters, the recirculation zones that appear on the approach (upwind) side and the wakes (downstream vortices) that occur behind them are naturally very large, resulting in a correspondingly significant impact on the surroundings. This analysis examined the changes in the wind environment when high-rise buildings are constructed in areas where the surrounding space is relatively open. For more details, please download the catalog.

  • Contract Analysis
  • Structural Analysis

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Thermal flow analysis in thermal storage tanks

Reproduction of ducts and structures within the thermal storage tank, thermal flow analysis regarding liquid flow velocity and temperature stratification.

The thermal flow analysis within the thermal storage tank reproduces the ducts and structures inside the tank and conducts thermal flow analysis regarding the flow velocity and temperature stratification of the liquid within the tank. When predicting the performance of the thermal storage tank, it is crucial to understand the temperature distribution changes of the fluid inside the tank. This characteristic is greatly influenced by the shape and flow velocity within the tank, which in turn affects the temperature stratification of the liquid in the thermal storage tank. For more details, please download the catalog.

  • Other analyses

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